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1.
–Adenosine 3′,5′-cyclic monophosphate (cyclic AMP) levels increase about 5-fold in the cerebral cortex and 2-fold in the cerebellum following electroconvulsive shock (ECS). The peak levels of cyclic AMP occur at 45 s after ECS in the cerebral cortex, and at 15 s in the cerebellum. In the cerebral cortex, ECS produces twice the cyclic AMP accumulation as does decapitation in a comparable time period; however, the relative effect of a number of neurotropic agents on the cyclic AMP accumulation is essentially the same, whether stimulated by decapitation or by ECS. In the cerebellum, the levels of guanosine 3′,5′-cyclic monophosphate (cyclic GMP) also increase following ECS. The cyclic GMP levels are greatest at 60 s after ECS during the postictal depression. An association between elevated cerebellar cyclic GMP and depression seems unlikely, since CNS depressants either lowered or had no effect on cyclic GMP levels. From these results, cyclic nucleotide profiles following treatments such as ECS or decapitation may be useful in elucidating the molecular events involved in seizures, brain injury and ischemia. 相似文献
2.
Salinas, G., Fernández, V., Fernández, C., and Selkirk, M. E. 1998.Echinococcus granulosus: Cloning of a thioredoxin peroxidase.Experimental Parasitology90, 298–301. 相似文献
3.
Enzyme Regulation in Crassulacean Acid Metabolism Photosynthesis : Studies on the Ferredoxin/Thioredoxin System of KalanchoE daigremontiana 下载免费PDF全文
Cell-free preparations of the Crassulacean acid metabolism (CAM) plant, Kalanchoë daigremontiana, were analyzed for thioredoxins and ferredoxin-thioredoxin reductase. Three distinct forms of thioredoxin were identified in Kalanchoë leaves, two of which specifically activated fructose 1,6-bisphosphatase (designated f1 and f2) and a third which activated NADP-malate dehydrogenase (thioredoxin m). The apparent molecular weight of both forms of thioredoxin f was 11,000 and that of thioredoxin m was 10,000. In parallel studies, ferredoxin and ferredoxin-thioredoxin reductase were purified from Kalanchoë leaf preparations. Kalanchoë ferredoxin-thioredoxin reductase was similar to that of C3 and C4 plants in molecular weight (31,000) and immunological cross-reactivity. Kalanchoë ferredoxin-thioredoxin reductase exhibited an affinity for ferredoxin as demonstrated by its binding to an immobilized ferredoxin affinity column. The purified components of the Kalanchoë ferredoxin-thioredoxin system could be recombined to function in the photoregulation of chloroplast enzymes. The data suggest that the ferredoxin/thioredoxin system plays a role in enzyme regulation of all higher plants irrespective of whether they show C3, C4, or CAM photosynthesis. 相似文献
4.
《Bioscience, biotechnology, and biochemistry》2013,77(6):1184-1187
Selenite (SeO3 2?) assimilation into a bacterial selenoprotein depends on thioredoxin (trx) reductase in Esherichia coli, but the molecular mechanism has not been elucidated. The mineral-oil overlay method made it possible to carry out anaerobic enzyme assay, which demonstrated an initial lag-phase followed by time-dependent steady NADPH consumption with a positive cooperativity toward selenite and trx. SDS-PAGE/autoradiography using 75Se-labeled selenite as substrate revealed the formation of trx-bound selenium in the reaction mixture. The protein-bound selenium has metabolic significance in being stabilized in the divalent state, and it also produced the selenopersulfide (-S-SeH) form by the catalysis of E. coli trx reductase (TrxB). 相似文献
5.
The effect of arsenate (As5+) on growth and chlorophyll a production in Chlorella vulgaris, its removal by C. vulgaris and the role of glutathione (GSH) and phytochelatins (PCs) were investigated. C. vulgaris was tolerant to As5+ at up to 200 mg/L and was capable of consistently removing around 70% of the As5+ present in growth media over a wide range of exposure concentrations. Spectral analysis revealed that PCs and their arsenic-combined complexes were absent, indicating that the high bioaccumulation and tolerance to arsenic observed was not due to intracellular chelation. In contrast, GSH was found in all samples ranging from 0.8 mg/L in the control to 6.5 mg/L in media containing 200 mg/L As5+ suggesting that GSH plays a more prominent role in the detoxification of As5+ in C. vulgaris than PC. At concentrations below 100 mg/L cell surface binding and other mechanisms may play the primary role in As5+ detoxification, whereas above this concentration As5+ begins to accumulate inside the algal cells and activates a number of intracellular cell defense mechanisms, such as increased production of GSH. The overall findings complement field studies which suggest C. vulgaris as an increasingly promising low cost As phytoremediation method for developing countries. 相似文献
6.
Sequence and conformation of 5 S RNA from Chlorella cytoplasmic ribosomes: comparison with other 5 S RNA molecules 总被引:12,自引:0,他引:12
The sequence of Chlorella cytoplasmic 5 S RNA has been determined by fingerprinting techniques. Partial digests were fractionated by a two-dimensional acrylamide gel electrophoretic technique, which indicates whether specific fragments are paired in the molecule. In this way, the four main base-paired regions of the molecule were located. The sequence of Chlorella cytoplasmic 5 S RNA is related to, but different from, that of other eukaryotic 5 S RNAs: it shows approximately 60% homology with vertebrate 5 S RNA and 40% homology with yeast 5 S RNA. In some respects the conformation of the molecule in solution is quite different from that of other sequenced 5 S RNAs: in particular, the highly accessible region found around position 40 in all other 5 S RNAs (prokaryotic and eukaryotic) does not exist in this molecule. 相似文献
7.
GROWTH INHIBITION OF MURINE TUMOR CELLS, IN VITRO, BY PUROMYCIN, [6N]O2''-DIBUTYRYL 3'',5''-ADENOSINE MONOPHOSPHATE, OR ADENOSINE : Evidence of Commitment for Cell Division 总被引:3,自引:0,他引:3 下载免费PDF全文
The cytostatic effects of puromycm, [6N]O2'-dibutyryl 3',5'-adenosine monophosphate, and adenosine on asynchronous and synchronous cultures of the murine mastocytoma, P815Y, have been studied. Cell growth was arrested after a minimum of one further division. A model is proposed for the inhibition of cell division in which the periods of inhibition and growth arrest are separated in time by one cell cycle. 相似文献
8.
The Hexose-Proton Cotransport System of Chlorella : pH-Dependent Change in Km Values and Translocation Constants of the Uptake System 总被引:12,自引:1,他引:12 下载免费PDF全文
The proton concentration in the medium affects the maximal velocity of sugar uptake with a Km of 0.3 mM (high affinity uptake). By decreasing the proton concentration a decrease in high affinity sugar uptake is observed, in parallel the activity of a low affinity uptake system (Km of 50 mM) rises. Both systems add up to 100%. The existence of the carrier in two conformational states (protonated and unprotonated) has been proposed therefore, the protonated form with high affinity to 6-deoxyglucose, the unprotonated form with low affinity. A plot of extrapolated Vmax values at low substrate concentration versus proton concentration results in a Km for protons of 0.14 µM, i.e. half-maximal protonation of the carrier is achieved at pH 6.85. The stoichiometry of protons cotransported per 6-deoxyglucose is close to 1 at pH 6.0–6.5. At higher pH values the stoichiometry continuously decreases; at pH 8.0 only one proton is cotransported per four molecules of sugar. Whereas the translocation of the protonated carrier is strictly dependent on sugar this coupling is less strict for the unprotonated form. Therefore at alkaline pH a considerable net efflux of accumulated sugar can occur. The dependence of sugar accumulation on pH has been measured. The decrease in accumulation with higher pH values can quantitatively be explained by the decrease in the amount of protonated carrier. The properties of the unprotonated carrier resemble strikingly the properties of carrier at the inner side of the membrane. The inside pH of Chlorella was measured with the weak acid 5,5-dimethyl-2, 4-oxazolidinedion (DMO). At an outside pH of 6.5 the internal pH was found to be 7.2. To explain the extent of sugar accumulation it has to be assumed that the membrane potential also contributes to active sugar transport in this alga. 相似文献
9.
Studies of Sulfate Utilization by Algae: 9. Fractionation of a Cell-free System from Chlorella into Two Activities Necessary for the Reduction of Adenosine 3'-Phosphate 5'-Phosphosulfate to Acid-Volatile Radioactivity 下载免费PDF全文
Further properties of the enzymatic system obtained from Chlorella pyrenoidosa (Emerson strain 3) which reduces adenosine 3′-phosphate 5′-phosphosulfate-35S to acid-volatile radioactivity, when fortified with Mg2+ and 2, 3-dimercaptopropan-1-ol as reductant, are described. Optimal concentrations of adenosine 3′-phosphate 5′-phosphosulfate-35S and Mg2+ and the pH optimum have been determined. 2,3-Dimercaptopropan-1-ol can be replaced by dithiothreitol, mercaptoethanol, reduced glutathione, cysteine, and cysteamine. Treatment of the crude extracts with ammonium sulfate and alumina C-gamma gel yields two fractions, designated “S” and “A,” which must be recombined to obtain acid-volatile radioactivity. Further fractionation of fraction S by ammonium sulfate gradient elution and diethylaminoethyl cellulose chromatography yields approximately a 50-fold increase in specific activity compared to that found in the crude extract. This material appears to contain an active component with a molecular weight estimated by agarose gel chromatography of about 330,000. 相似文献
10.
An enzyme from extracts of the green alga Chlorella pyrenoidosa that catalyzes the reversible epimerization of guanosine 5′-diphosphate d-mannose to guanosine 5′-diphosphate l-galactose was further purified. The substrate guanosine 5′-diphosphate l-galactose was made chemically by the morpholidate procedure. An improved method was developed for the synthesis of an intermediate in that process, β-l-galactopyranosyl phosphate, via an orthoester of l-galactose. Various characteristics of the enzyme and the reaction it catalyzes were studied. A new method using gas-liquid chromatography was introduced for following the course of the reaction with unlabeled substrates. 相似文献
11.
The purpose of this paper is to compare the result of testing a diverse group of chemicals in the CHO/HPRT and AS52/XPRT mutation assays. The AS52/XPRT system was as sensitive as the more widely used CHO/HPRT system in the case of the antitumor agents, and gave qualitatively similar results in all cases. On the basis of this and other experiments (Aaron et al., 1989) it appears that the AS52/XPRT system may be most useful in addressing mechanistic questions in mutagenesis. We recommend that the AS52/XPRT assay be used as the mammalian cell test system of choice in batteries used for identifying mutagens and genotoxic carcinogens. 相似文献
12.
目的 研究连接适配体的DNA-RNA分子作为杂交载体靶向肿瘤细胞并导入功能性RNA分子进入细胞的有效性,以及对肿瘤细胞的影响。方法 设计合成短的互补DNA、RNA分子,组装成DNA-RNA杂合链;连接AS1411适配体为靶向分子,再分别连接p21 saRNA和TIGIT siRNA作为药物分子,记为P21 saRNA和TIGIT siRNA,构成杂交载体,通用结构式为AS1411-DNA/RNA-sxRNA;检测AS1411-DNA/RNA-sxRNA能否靶向结合并进入肿瘤细胞及其对瘤细胞生存、迁移、侵袭和凋亡的影响。结果 将设计的杂交载体各部分等摩尔加入杂交缓冲体系并于特定温度条件下孵育,TBM聚丙烯酰胺凝胶电泳检测到AS1411-DNA/RNA-sxRNA成功组装;AS1411-DNA/RNA-sxRNA杂交载体在10%血清条件下也显示出良好的抗降解稳定性;荧光显微镜和激光共聚焦显微镜下观察,SKOV3细胞表面及胞内存在绿色大量荧光信号,杂交载体成功进入肿瘤细胞。杂交载体孵育后:在mRNA水平上,p21基因表达(2.14±0.25)是对照组(1.02±0.10)2倍以上,P<0.05;TIGIT基因表达(0.63±0.09)低于对照组(1.09±0.15),P<0.05;在蛋白质水平上,p21基因表达(1.57±0.16)是对照组(1.10±0.09)1.5倍以上,P<0.05;TIGIT基因表达(0.61±0.12)低于对照组(1.01±0.07),P<0.05。CCK-8实验显示,P21 saRNA(3.10±0.13)和TIGIT siRNA(2.91±0.13)杂交载体孵育组与空白对照组(3.67±0.15)相比,卵巢癌细胞增殖能力显著下降(P<0.05);划痕实验结果显示,P21 saRNA孵育组愈合率(42.53±2.90)%、TIGIT siRNA孵育组愈合率(36.23±3.43)%,明显低于空白对照组(76.47±3.64)%,P<0.05;Transwell检测迁移能力发现:P21 saRNA孵育组(128.25±5.36)、TIGIT siRNA孵育组(119.50±8.79)低于对照组(186.5±8.56);侵袭能力:P21 saRNA孵育组(145.5±9.45)、TIGIT siRNA孵育组(112.25±5.63)也显著低于对照组(202.50±10.12),P<0.05;细胞凋亡率:P21 saRNA孵育组(11.74%±2.47%)、TIGIT siRNA孵育组(17.12%±2.04%)明显高于对照组(5.66%±1.44%),P<0.05。结论 所制备的AS1411-DNA/RNA-sxRNA杂交载体能够有效靶向肿瘤细胞,携带功能性小RNA靶向导入肿瘤细胞并调控目的基因表达,使肿瘤细胞的增殖、侵袭和迁移能力受到抑制;该结果为利用DNA-RNA偶联AS1411适配体作为靶向工具的杂交载体,靶向杀伤表面表达NCL蛋白的肿瘤细胞提供了实验基础。 相似文献
13.
Joanna D. Holbrook Catherine H. Gill† Noureddine Zebda† Jon P. Spencer† Rebecca Leyland† Kim H. Rance Han Trinh Gemma Balmer Fiona M. Kelly Shahnaz P. Yusaf Nicola Courtenay Jane Luck rew Rhodes Sundip Modha Stephen E. Moore† Gareth J. Sanger† Martin J. Gunthorpe† 《Journal of neurochemistry》2009,108(2):384-396
The 5‐HT3 receptor is a member of the ‘Cys‐loop’ family of ligand‐gated ion channels that mediate fast excitatory and inhibitory transmission in the nervous system. Current evidence points towards native 5‐HT3 receptors originating from homomeric assemblies of 5‐HT3A or heteromeric assembly of 5‐HT3A and 5‐HT3B. Novel genes encoding 5‐HT3C, 5‐HT3D, and 5‐HT3E have recently been described but the functional importance of these proteins is unknown. In the present study, in silico analysis (confirmed by partial cloning) indicated that 5‐HT3C, 5‐HT3D, and 5‐HT3E are not human–specific as previously reported: they are conserved in multiple mammalian species but are absent in rodents. Expression profiles of the novel human genes indicated high levels in the gastrointestinal tract but also in the brain, Dorsal Root Ganglion (DRG) and other tissues. Following the demonstration that these subunits are expressed at the cell membrane, the functional properties of the recombinant human subunits were investigated using patch clamp electrophysiology. 5‐HT3C, 5‐HT3D, and 5‐HT3E were all non‐functional when expressed alone. Co‐transfection studies to determine potential novel heteromeric receptor interactions with 5‐HT3A demonstrated that the expression or function of the receptor was modified by 5‐HT3C and 5‐HT3E, but not 5‐HT3D. The lack of distinct effects on current rectification, kinetics or pharmacology of 5‐HT3A receptors does not however provide unequivocal evidence to support a direct contribution of 5‐HT3C or 5‐HT3E to the lining of the ion channel pore of novel heteromeric receptors. The functional and pharmacological contributions of these novel subunits to human biology and diseases such as irritable bowel syndrome for which 5‐HT3 receptor antagonists have major clinical usage, therefore remains to be fully determined. 相似文献
14.
A synthesis of adenosine-5′-d (4), and its p.m.r. spectral characteristics, are described. The presence of deuterium in 4 gives rise to a 2:1 mixture of R and S configurations at C-5, thereby permitting specific assignments for the resonances of the residual 5′-protons. From the observed spin-spin coupling between the latter and H-4′, and estimate has been made of the rotamer population of the exocyclic 5′-carbinol group. It is shown that the gauche-gauche rotamer is preponderant (≈70%) and the gauche-trans one of minor importance (≈20%) in aqueous solution, which contrasts markedly with the preference for the latter rotamer exhibited by adenosine in the solid state. 相似文献
15.
Kazuo Takahashi Stephanie B. Wall Hitoshi Suzuki Archer D. Smith IV Stacy Hall Knud Poulsen Mogens Kilian James A. Mobley Bruce A. Julian Jiri Mestecky Jan Novak Matthew B. Renfrow 《Molecular & cellular proteomics : MCP》2010,9(11):2545-2557
IgA nephropathy (IgAN) is the most common primary glomerulonephritis in the world. Aberrantly glycosylated IgA1, with galactose (Gal)-deficient hinge region (HR) O-glycans, plays a pivotal role in the pathogenesis of the disease. It is not known whether the glycosylation defect occurs randomly or preferentially at specific sites. We have described the utility of activated ion-electron capture dissociation (AI-ECD) mass spectrometric analysis of IgA1 O-glycosylation. However, locating and characterizing the entire range of O-glycan attachment sites are analytically challenging due to the clustered serine and threonine residues in the HR of IgA1 heavy chain. To address this problem, we analyzed all glycoforms of the HR glycopeptides of a Gal-deficient IgA1 myeloma protein, mimicking the aberrant IgA1 in patients with IgAN, by use of a combination of IgA-specific proteases + trypsin and AI-ECD Fourier transform ion cyclotron resonance (FT-ICR) tandem mass spectrometry (MS/MS). The IgA-specific proteases provided a variety of IgA1 HR fragments that allowed unambiguous localization of all O-glycosylation sites in the six most abundant glycoforms, including the sites deficient in Gal. Additionally, this protocol was adapted for on-line liquid chromatography (LC)-AI-ECD MS/MS and LC-electron transfer dissociation MS/MS analysis. Our results thus represent a new clinically relevant approach that requires ECD/electron transfer dissociation-type fragmentation to define the molecular events leading to pathogenesis of a chronic kidney disease. Furthermore, this work offers generally applicable principles for the analysis of clustered sites of O-glycosylation.Glycosylation is one of the most common post-translational modifications of proteins. It is estimated that over half of mammalian proteins are glycosylated. Patients with several autoimmune disorders, chronic inflammatory diseases, and some infectious diseases exhibit abnormal glycosylation of serum immunoglobulins and other glycoproteins (1–5). The biological functions of these modifications in health and disease have become a significant area of interest in biomedical research (6). A subset of these glycoproteins has clustered sites of O-glycosylation with serine- and threonine-rich stretches within the amino acid sequence. Mucins, such as membrane-associated MUC1, are perhaps the best known family of proteins that are heavily O-glycosylated. Their altered expression and aberrant glycosylation have made them potential targets as biomarkers for early detection of cancer (7). Immunoglobulin A1 (IgA1)1 contains both O- and N-glycans (Fig. 1). Aberrant O-glycosylation of IgA1 is involved in the pathogenesis of IgA nephropathy (IgAN) and the closely related Henoch-Schönlein purpura nephritis (1, 8). Interestingly, the aberrantly glycosylated molecules, IgA1 in IgAN and MUC1 in cancer, are recognized by the immune system as neoepitopes as evidenced by formation of specific antibodies (9–11). Mucin-like bacterial surface proteins exhibit similar properties: the molecules have clustered bacterial O-glycans that mediate cellular adhesion, and blocking antibodies target these glycan-containing epitopes (12).Open in a separate windowFig. 1.IgA1 structural elements. IgA1 has N-linked glycans (filled circles) and O-linked glycans (open circles). The O-glycosylated sites are in the HR between the first and second constant region domains of the heavy chains. The HR is a Pro-rich segment with nine possible sites of O-glycan attachment. Underlined serine and threonine residues are usually glycosylated (31). Arrows show cleavage sites of trypsin and IgA-specific proteases.An O-glycosylated protein from a single source contains a population of variably O-glycosylated isoforms that show a distinct distribution of microheterogeneity of the O-glycan chains in terms of number, sites of attachment, and composition. Characterizing these clustered sites and understanding how the distributions change under different biological conditions or disease states are an analytical challenge. Enzymatic or chemical release of O-glycans is not selective. The heterogeneity, composition, and quantitative aspects of different O-glycan chains can be assessed and quantified by gas chromatographic and/or mass spectrometric techniques. However, the site-specific information and context of location and composition of adjacent chains are lost. Carbohydrate-specific lectin analysis of O-glycoproteins can provide information on glycan composition and comparative differences between samples, such as those from healthy controls and patients with various disease states. We have successfully demonstrated this in the analysis of IgA1 O-glycans from patients with IgAN versus healthy controls and disease controls (13–15). This included proximal assessment of sites with galactose (Gal)-deficient O-glycans after digests with IgA-specific proteases (8). Several studies have demonstrated the value of mass spectrometry (MS) in identifying Gal-deficient IgA1 in patients with IgAN (16–21), including our work that demonstrated the first direct localization of native sites of O-glycan chains in the hinge region (HR) of IgA1 by use of electron capture dissociation (ECD) (20, 22). ECD and the more recently developed electron transfer dissociation (ETD) have been used to identify sites of O-glycosylation on a variety of proteins (23–26). This includes the analysis of sites of O-glycosylation by on-line LC-ECD/ETD MS/MS methods (23, 26, 27).IgAN is the most common primary glomerulonephritis worldwide (28) with about 20–40% of patients developing end stage renal failure. It is characterized by mesangial deposits of IgA1-containing immune complexes (28). The distinctive O-glycan chains of IgA1 molecules play a pivotal role in the pathogenesis of IgAN (1, 10, 14–16, 29, 30). IgA1 contains an HR between the first and second heavy chain constant region domains with a high content of Ser, Thr, and Pro. This segment usually has three to five O-glycan chains per HR (31) (see Fig. 1). Aberrantly glycosylated IgA1, deficient in Gal in some of the O-glycans in the HR, in serum is rare in healthy individuals but is present at elevated levels in IgAN patients (13, 15). This distinctive IgA1 is in circulating immune complexes (8, 10, 15) and in the glomerular deposits of IgAN patients (16, 29). The absence of Gal apparently leads to the exposure of neoepitopes, including terminal and sialylated N-acetylgalactosamine (GalNAc) residues (9, 10). These epitopes are recognized by naturally occurring anti-glycan IgG or IgA1 antibodies and, consequently, circulating immune complexes are formed (9, 10, 15) that can deposit in the glomerular mesangia. To identify the pathogenic forms of IgA1, a thorough analysis of O-glycan microheterogeneity, including identification of the attachment sites, will be required.In this work, we demonstrate the complete analysis of O-glycoform microheterogeneity and site localization of the glycoforms in a naturally Gal-deficient IgA1 (Ale) myeloma protein that mimics the nephritogenic IgA1 in patients with IgAN (8, 9). Reversed phase (RP) LC FT-ICR MS successfully identified 10 distinct IgA1 HR fragments representing >99% of total IgA1. AI-ECD of the six most abundant IgA1 HR glycoforms (>95% of total IgA1) was accomplished with three distinct IgA-specific protease + trypsin digestions, identifying sites of Gal deficiency across four distinct IgA1 O-glycoforms. Based on the success of the ECD fragmentation of these IgA1 HR fragments, we adapted the analysis for on-line LC-MS/MS methods for both ECD and ETD. The variety of IgA1 HR proteolytic fragments provides a practical set of guidelines for the ECD/ETD analysis of clustered sites of O-glycosylation on this and other proteins. These results also provide insight into the order of attachment of the O-glycans in the IgA1 HR. 相似文献
16.
Axonal Transport of the Ca2+ -Dependent Protein Modulator of 3'':5''-Cyclic-AMP Phosphodiesterase in the Rabbit Visual System 总被引:2,自引:0,他引:2
Paul F. Erickson Kenneth B. Seamon Blake W. Moore Robert S. Lasher Lee N. Minier 《Journal of neurochemistry》1980,35(1):242-248
Water-soluble proteins were extracted from individual retinas, optic nerves, combined optic tracts and lateral geniculate bodies, and superior colliculi of rabbits at 1, 3, and 18 days after injection of [3H]leucine into the right eye. The Ca2+-dependent protein modulator of 3':5'-cyclic-AMP phosphodiesterase (calmodulin) was isolated from these samples by a two-step polyacrylamide gel electrophoresis procedure. An analysis of the radioactivity incorporated into the total soluble proteins and the calmodulin revealed that most of the calmodulin was axonally transported at a slow rate (2--4 mm/day) and represented about 0.45% of the total transported soluble protein. 相似文献
17.
Monika M. Golas Sakthidasan Jayaprakash Le T. M. Le Zongpei Zhao Violeta Heras Huertas Ida S. Jensen Juan Yuan Bjoern Sander 《Molecular biotechnology》2018,60(11):820-832
The human tumor suppressor SMARCB1/INI1/SNF5/BAF47 (SNF5) is a core subunit of the multi-subunit ATP-dependent chromatin remodeling complex SWI/SNF, also known as Brahma/Brahma-related gene 1 (BRM/BRG1)-associated factor (BAF). Experimental studies of SWI/SNF are currently considerably limited by the low cellular abundance of this complex; thus, recombinant protein production represents a key to obtain the SWI/SNF proteins for molecular and structural studies. While the expression of mammalian proteins in bacteria is often difficult, the baculovirus/insect cell expression system can overcome limitations of prokaryotic expression systems and facilitate the co-expression of multiple proteins. Here, we demonstrate that human full-length SNF5 tagged with a C-terminal 3?×?FLAG can be expressed and purified from insect cell extracts in monomeric and dimeric forms. To this end, we constructed a set of donor and acceptor vectors for the expression of individual proteins and protein complexes in the baculovirus/insect cell expression system under the control of a polyhedrin (polh), p10, or a minimal Drosophila melanogaster Hsp70 promoter. We show that the SNF5 expression level could be modulated by the selection of the promoter used to control expression. The vector set also comprises vectors that encode a 3?×?FLAG tag, Twin-Strep tag, or CBP-3?×?FLAG-TEV-ProteinA triple tag to facilitate affinity selection and detection. By gel filtration and split-ubiquitin assays, we show that human full-length SNF5 has the ability to self-interact. Overall, the toolbox developed herein offers the possibility to flexibly select the promoter strength as well as the affinity tag and is suggested to advance the recombinant expression of chromatin remodeling factors and other challenging proteins. 相似文献
18.
R. A. Newton S. L. Phipps T. P. Flanigan N. R. Newberry J. E. Carey †C. Kumar ‡B. McDonald ‡C. Chen J. M. Elliott 《Journal of neurochemistry》1996,67(6):2521-2531
Abstract: Stable transfection of the human neuroblastoma cell line SH-SY5Y with the human 5-hydroxytryptamine2A (5-HT2A) or 5-HT2C receptor cDNA produced cell lines demonstrating ligand affinities that correlated closely with those for the corresponding endogenous receptors in human frontal cortex and choroid plexus, respectively. Stimulation of the recombinant receptors by 5-HT induced phosphoinositide hydrolysis with higher potency but lower efficacy at the 5-HT2C receptor (pEC50 = 7.80 ± 0.06) compared with the 5-HT2A receptor (pEC50 = 7.30 ± 0.08). Activation of the 5-HT2A receptor caused a transient fourfold increase in intracellular Ca2+ concentration. Whole-cell recordings of cells clamped at ?50 mV demonstrated a small inward current (2 pA) in response to 10 µM 5-HT for both receptors. There were no differences in potency or efficacy of phosphoinositide hydrolysis among four hallucinogenic [d-lysergic acid diethylamide (LSD), 1-(4-iodo-2,5-dimethoxyphenyl)-2-aminopropane (DOI), 5-methoxy-N,N-dimethyltryptamine, and mescaline] and three nonhallucinogenic drugs (m-chlorophenylpiperazine, quipazine, and ergotamine). Comparison of equipotent doses producing 20% of the maximal response induced by 5-HT revealed selective activation of the 5-HT2A receptor by LSD and to a lesser degree by DOI, mescaline, and ergotamine. Quipazine and 5-methoxy-N,N-dimethyltryptamine were relatively nonselective, whereas m-chlorophenylpiperazine selectively activated the 5-HT2C receptor. It is unlikely therefore that hallucinosis is mediated primarily by activity at the 5-HT2C receptor, whereas activity at the 5-HT2A receptor may represent an important but not unique mechanism associated with hallucinogenic drug action. 相似文献
19.
Cyclic adenosine 3':5'-monophosphate (cAMP) was extracted from Phaseolus vulgaris L. cv. Limburg seedlings and Chlorella sp. The cAMP was purified by charcoal adsorption, polyvinylpyrrolidone (PVP) and Dowex 50 W × 8 column chromatography and by preparative high-performance liquid chromatography (HPLC). Quantitation was achieved by combining phosphodiesterase (PDE) treatment with analytical HPLC (reversed phase ion-pair partition chromatography) and cAMP-dependent protein kinase activation. This provided a very specific, accurate and sensitive assay for cAMP determinations. The cAMP content found in Chlorella (70–90 pmol/g dry wt) was comparable with previous reports using other quantitation methods, whereas the endogenous concentration found in bean seedlings (92 pmol/g dry wt) was considerably lower than previously reported data. 相似文献