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1.
氨基PEG化试剂的合成及其修饰能力的测定   总被引:5,自引:0,他引:5  
常远  唐微 《生物化学杂志》1996,12(4):496-500
分别用氰脲酰氯法及N-羟基丁二酰亚胺活性酯法合成了蛋白质的氨基PEG化试剂mPEGcc和mPEG-GS,并研究了它们对蛋白质的修饰作用。在合成过程中,通过分析反应体系中微量水分的存在对mPEGcc合成效率的影响,及溶剂中小分子可活化杂质成分对mPEG-GS合成产物质量的影响,发现去水剂的存在,可使mPEGcc产率提高7倍;二氧六环优于DMF,且二氧六环的预处理也很重要。同时,为了测定活化PEG修饰  相似文献   

2.
PEG化蛋白质的分离纯化比较困难,本工作发现PEG化蛋白质仍能被硫酸铵盐析,据此可以简单地将IL-2及PEG化IL-2沉淀出来,而将有毒的活化PEG等副产物留在溶液中。此方法效果理想而又十分简便。文献中未见报道。此外,实验还发现,在PEG-IL-2与IL-2的混和液中加入一定量的PEG后,二者之间溶解度差别增大,当用SephacryⅠS-200柱分离时,先用含10%PEG,0.25mol/LNaCl的缓冲液平衡洗脱PEG-IL-2,再降低盐浓度洗下IL-2,即可使二者完全分开。过去要将IL-2与PEG-IL-2分离开非常困难,本工作解决了这个问题,这点亦未见文献报道。  相似文献   

3.
用自制的氨基PEG化试剂rIL-2进行化学修饰,研究了试剂浓度,溶液pH,反应时间等与PEca-rIL-2产率及IL-2活性保持之间的关系,建立了一套获得稳定修饰度的PEG-rIL-2的方法。研究发现,反应时间跟修饰度关系不大;溶液pH对修饰度有一定的影响,中性pH以上反应都可进行;而试剂浓度直接决定修饰度的高低,过量越多,修饰度越高,而生物活性保留也越低;但低度修饰,对活性几乎没有影响,可保留活性在95%左右。  相似文献   

4.
常远  唐微 《生物化学杂志》1996,12(4):445-449
用自制的氨基PEG化试剂rIL-2进行化学修饰,研究了试剂浓度,溶液pH,反应时间间等与PEG-rIL-2产率及IL-2活性保持之间的关系,建立了一套获得稳定修饰度的PEG-rIL-2的方法,研究发现,反应时间跟修饰度关系不大;溶液pH对修饰度有一定的影响,中性pH以上反应都可进行;而试剂浓度直接决定修饰度的高低,过量越多,修饰度越高,而生物活性保留也越低;但低度修饰,对活性几乎没有影响,可保留活  相似文献   

5.
PEG修饰牛血红蛋白的计算机模拟研究   总被引:9,自引:0,他引:9  
对αβ二聚牛血红蛋白晶体结构的分析和氨基酸钱基溶剂可及表面积的计算表明,牛血红蛋白表面Lys上的氨基适合进行聚乙二醇(PEG)修饰,对其修饰不会影响携氧能力,在此基础上设计了连接物连接PEG和牛血红蛋白。分子模拟研究结果显示PEG修饰牛血红蛋白产物是无免疫原性的。  相似文献   

6.
利用COS7细胞暂时表达系统,研究转译起始序列对EPO-cDNA表达的影响。通过DNA重组技术,构建了原EPO-cDNA表达载体pCSV-EPO(1),其转译起始序列为5'AATTCATGG3'。同时通过定点突变技术,将起始序列改变成5'CCACCATGG3',而构建了另一表达载体PCSV-EPO(2)。后经序列分析证明无误后和前均通过DEAE-dextran法转染COS7细胞上清,测定结果为  相似文献   

7.
多聚唾液酸对L-天冬酰胺酶的修饰及修饰酶特性研究   总被引:4,自引:0,他引:4  
来源于大肠杆菌 (E .coli)的L 天冬酰胺酶是治疗淋巴性白血病和恶性淋巴肿瘤的有效酶制剂 ,已应用于临床。该酶与其他蛋白质类药物一样 ,在临床应用中存在两个常见问题 :一是酶制剂在体内易被降解 ,导致半衰期短 ;二是免疫原性。为了解决上述问题 ,人们用亲水性的大分子如血清蛋白、右旋糖苷和单甲氧基聚乙二醇 (mPEG)对该酶进行修饰。其中mPEG[1] 修饰后的L 天冬酰胺酶的抗原抗体结合能力完全消失 ,免疫原性下降 ,且体内半衰期延长 ;但酶活力只有天然酶的 8%~ 14% ,且mPEG在人体组织中无法降解 ,目前尚难评估长期使用…  相似文献   

8.
采用cDNA-PCR技术,从人胎盘cDNA文库DNA中克隆了人碱性成纤维在子(hbFGF)基因,用PCR突变法对其5&端序列进行修饰,奖天然和修饰后的hbFGF基因分别克隆至表达载体pBV221,免疫抑迹和SDS-PAGE结果证明,经修饰后的基因在大肠杆菌DS5α中获得了表达,表达量占菌体总蛋白9%。  相似文献   

9.
天花粉蛋白的定点聚乙二醇修饰   总被引:3,自引:0,他引:3  
用一种定点修饰天花粉蛋白(trichosanthin,TCS)的方法,将聚乙二醇(PEG)偶联到预先选定的位点.利用nTCS无半胱氨酸(Cys)残基这一特点,通过定点突变将一个Cys残基引入TCS以取代第7位的丝氨酸(Ser)残基.然后,与巯基反应的PEG-m aleim ide 即可偶联到新引入的Cys 残基上.经纯化得到均一的PEG-TCS复合物,在SDS-PAGE上显示一条区带,表观分子量为38 kD.复合物的体外致核糖体失活活性降低了6倍,但其体内引产活性与nTCS相同.定点PEG修饰方法为改造TCS提供了新途径.  相似文献   

10.
PEG修饰的辣根过氧化物酶及其在非水介质中的性质   总被引:3,自引:0,他引:3  
酶的化学修饰可以明显提高酶在有机相中的活力。通过氧化过氧化物酶(HRP)的糖链后引入氨基再连接甲氧基聚乙醇(PEG)5000和在酶的肽链上连接PEG5000,发现HRP多肽链上修饰后的酶在水相中的活力几乎没有变化,但通过氧化糖链连接PEG的酶在水相中的活力下降近2倍。在甲苯及二氧六环含量较高的体系中,修和均呈上升趋势。特别在甲苯体系中两种修饰酶活力都比未经修饰的酶提高了近2倍。稳定性研究表明,不论  相似文献   

11.
Immunoadsorbents were modified with monomethoxy-polyethylene glycol (PEG; average molecular weights of 5000 (PEG-5000) and 1900 (PEG-1900)) activated with cyanuric acid (activated PEG) by four different methods. In the two methods, anti-BSA antibodies were modified with activated PEG with and without protection of antigen binding sites with BSA and then were coupled to CNBr-activated Sepharose 4B. In the other two methods, Immunoadsorbents, which were prepared by coupling anti-BSA antibodies to CNBr-activated Sepharose 4B, were modified with activated PEG with and without the protection. The effects of PEG modification by these four methods on the binding ratio (the ratio of the numbers of moles of antigen adsorbed to the numbers of moles of binding sites of antibody coupled), the antigen binding property and the resistance to proteolytic digestion of immunoadsorbents were studied. The decrease in the binding ratio by the modification with activated PEG was small enough to use modified immunoadsorbents for industrial purification processes. The resistance to proteolytic digestion of immunoadsorbents was improved by modification with activated PEG. The modification without protection of antigen binding sites gave higher resistance to proteolytic digestion than that with protection, while the former caused larger decrease in the binding ratio of modification. The immunoadsorbents modified with activated PEG-5000 showed higher resistance to proteolytic digestion than those modified with activated PEG-1900.  相似文献   

12.
Covalent modification with lipid can target cytosolic proteins to biological membranes. With intrinsic membrane proteins, the role of acylation can be elusive. Herein, we describe covalent lipid modification of an integral membrane glycosylphosphatidylinositol-specific phospholipase C (GPI-PLC) from the kinetoplastid Trypanosoma brucei. Myristic acid was detected on cysteine residue(s) (i.e. thiomyristoylation). Thiomyristoylation occurred both co- and post-translationally. Acylated GPI-PLC was active against variant surface glycoprotein (VSG). The half-life of fatty acid on GPI-PLC was 45 min, signifying the dynamic nature of the modification. Deacylation in vitro decreased activity of GPI-PLC 18-30-fold. Thioacylation, from kinetic analysis, activated GPI-PLC by accelerating the conversion of a GPI-PLC.VSG complex to product. Reversible thioacylation is a novel mechanism for regulating the activity of a phospholipase C.  相似文献   

13.
Properties of oligonucleotide reagents containing an alkylating group of regulated reactivity (nitrogen mustard residue activatable upon mild borohydride reduction of the aromatic formyl group) have been studied. It was shown that these reagents can also be activated by irradiation with nitrogen laser light (lambda 337 nm). Activation of the reagent in complex with a target polydeoxyribonucleotide resulted in the addressed chemical modification of the target. The positional direction of the modification depended on the way of the activation (borohydride reduction or laser irradiation).  相似文献   

14.
Cyclic nucleotide-gated (CNG) channels belong to the P-loop-containing family of ion channels that also includes KcsA, MthK, and Shaker channels. In this study, we investigated the structure and rearrangement of the CNGA1 channel pore using cysteine mutations and cysteine-specific modification. We constructed 16 mutant channels, each one containing a cysteine mutation at one of the positions between 384 and 399 in the S6 region of the pore. By measuring currents activated by saturating concentrations of the full agonist cGMP and the partial agonists cIMP and cAMP, we show that mutating S6 residues to cysteine caused both favorable and unfavorable changes in the free energy of channel opening. The time course of cysteine modification with 2-aminoethylmethane thiosulfonate hydrochloride (MTSEA) was complex. For many positions we observed decreases in current activated by cGMP and concomitant increases in current activated by cIMP and cAMP. A model where modification affected both gating and permeation successfully reproduced the complex time course of modification for most of the mutant channels. From the model fits to the time course of modification for each mutant channel, we quantified the following: (a) the bimolecular rate constant of modification in the open state, (b) the change in conductance, and (c) the change in the free energy of channel opening for modification of each cysteine. At many S6 cysteines, modification by MTSEA caused a decrease in conductance and a favorable change in the free energy of channel opening. Our results are interpreted within the structural framework of the known structures of KcsA and MthK. We conclude that: (a) MTSEA modification affects both gating and permeation, (b) the open configuration of the pore of CNGA1 channels is consistent with the structure of MthK, and (c) the modification of S6 residues disrupts the helical packing of the closed channel, making it easier for channels to open.  相似文献   

15.
Microsomal glutathione transferase 1 is a homotrimeric detoxication enzyme protecting against electrophiles. The enzyme can also react with electrophiles, and when modification occurs at a unique Cys49 the reaction often results in activation. Here we describe the characterization of the chemical properties of this sulfhydryl (kinetic pK(a) was 8.8 +/- 0.3 and 9.0 +/- 0.1 with two different reagents) and we conclude that the protein environment does not lower the pK(a). Upon a direct comparison of the reactivity of Cys49 and low molecular weight thiols [L-Cys and glutathione (GSH)], the protein sulfhydryl displayed a 10-fold lower reactivity. The reactivity was correlated to reagent concentration in a linear fashion with a polar reagent, whereas the reactivity toward a hydrophobic reagent displayed saturation behavior (at low concentrations). This finding indicates that Cys49 is situated in a hydrophobic binding pocket. In a series of related quinones, activation occurs with the more reactive and less sterically hindered compounds. Thus, activation can be used to detect reactive intermediates during the metabolism of foreign compounds but certain intermediates can (and will) escape undetected. The reactivities of the three cysteines in the homotrimer were shown not to differ dramatically as the reaction of the protein with 4, 4'-dithiodipyridine could be fitted to a single exponential. On the basis of this result, a probabilistic expression could be used to relate the overall degree of modification to fractional activation. When N-ethylmaleimide activation (determined by the 1-chloro-2, 4-dinitrobenzene assay) was plotted against modification (determined with 4,4'-dithiodipyridine), a nonlinear relation was obtained, clearly showing that subunits do not function independently. The contribution to activation by single-, double-, and triple-modified trimers, were 0 +/- 0.06, 0.74 +/- 0.09, and 0.97 +/- 0.06, respectively. The double-modified enzyme appears partly activated, but this conclusion is more uncertain due to the possibility of independent modification of the purified enzyme upon storage. It is, however, clear that the single-modified enzyme is not activated whereas the triple-modified enzyme is fully activated. These observations together with the fact that MGST1 homotrimers bind only one substrate molecule (GSH) strongly support the view that subunits must interact in a functional manner.  相似文献   

16.
Human serum albumin (HSA) is an abundant protein found in blood plasma and extracellular fluids. Previously, we found that HSA has a distinct thioredoxin (Trx)-dependent lipid peroxidase activity in the presence of palmitoyl-CoA. In this paper, we identified the redox-active disulfide, which can be specifically reduced by Trx, responsible for the Trx-dependent lipid peroxidase activity. The IIB-III fragment of HSA (Pro299-Leu585) sustained the Trx-dependent lipid peroxidase activity. Chemical modification of the Trx-reduced IIB-III with a thiol-specific modification agent resulted in a complete loss of the peroxidase activity. The analysis of tryptic-peptides derived from the inactivated HSA and IIB-III revealed that Cys392 and Cys438, which exist as an intramolecular disulfide bond in HSA, were preferentially modified in both HSA and IIB-III. Taken together, these results suggested that HSA has a capability to reduce lipid hydroperoxide with the use of Trx as an in vivo electron donor, and that the redox-active disulfide between Cys392 and Cys438 acts as a primary site of the catalysis for the Trx-linked lipid peroxidase activity.  相似文献   

17.
Pretreatment of an affinity-purified, brain calmodulin (CaM)-dependent phosphodiesterase (EC 3.1.4.17) with p-hydroxyphenylglyoxal (pHPG), a specific arginine-modifying reagent, resulted in a time-dependent loss in CaM-stimulated hydrolysis of cyclic AMP and cyclic GMP with no change in basal, CaM-independent activity. The loss in CaM-stimulated activity was preceded by a transient increase in CaM-dependent activity. Phenylglyoxal was 10-fold more effective than pHPG in promoting the loss of CaM-stimulated activity with a second-order rate constant of 13.3 M-1 min-1. Other arginine-modifying reagents, 1,2-cyclohexanedione and 2,3-butanedione, were not effective. The pHPG-modified enzyme was activated by 100 microM lysophosphatidylcholine to levels comparable to CaM-stimulated activity. The arginyl-modified enzyme was also activated by chymotrypsin and trypsin but not to the extent of the untreated enzyme stimulated with CaM. The presence of CaM during chemical modification with pHPG protected the enzyme from inactivation. Both the extent of activation and the amount of CaM necessary for 50% maximal activation were affected by pHPG treatment of the enzyme. The approximate number of modified arginines estimated by [7-14C]phenylglyoxal incorporation and amino acid analysis after complete inactivation of CaM stimulation was seven residues per catalytic subunit assuming enzyme homogeneity. The Stokes radius and sedimentation coefficient of the enzyme were unchanged by the modification. These results suggest that arginine residues are critical for functional interaction between phosphodiesterase and CaM and that controlled modification can selectively alter CaM-stimulated enzyme activity.  相似文献   

18.
Ligands containing amino or hydroxyl groups were converted to their corresponding activated N-hydroxysuccinimidyl carbamate and carbonate by reaction with disuccinimidyl carbonate (DSC). The latter reagents can be used for the group-specific modification of primary amines as an alternative to the widespread usage of N-hydroxysuccinimide esters. Biotin and 2,4-dinitrophenyl (DNP) derivatives were used as examples to demonstrate the approach. Biotin and DNP were each extended by attaching two different spacer arms, carrying either a hydroxyl group or a primary amine as terminal functions. The latter were then activated via their conversion to N-hydroxysuccinimide carbonates and carbamates, respectively. The usefulness of these reagents for protein modification was investigated. The modified proteins obtained exhibited similar stability and activity characteristics compared to those modified with active N-hydroxysuccinimdyl esters. The activation of hydroxy- or amino-terminating compounds with DSC represents a general method that can be applied to any ligand which contains these functional groups for its covalent coupling to amines.  相似文献   

19.
一株甲醛降解菌的筛选及降解特性的研究   总被引:1,自引:0,他引:1  
【目的】以甲醛为唯一碳源与能源,以期从印染厂采集的活性污泥中筛选出快速降解甲醛的菌株。【方法】采用传统微生物纯培养方法和形态学特征、生理生化试验,结合16S rRNA基因序列分析以及甲醛关键脱氢酶(FDH)对筛选的菌株W1进行系统研究,并利用正交设计法研究不同因素处理对菌株W1降解甲醛特性的影响。【结果】分类结果显示鉴定菌株W1属于恶臭假单胞菌(Pseudomonas putida),通过单因素试验和正交试验考察培养条件对菌株降解甲醛的影响,得出菌株W1降解甲醛的最适条件为:甲醛浓度为500 mg/L,温度30°C,pH 6.0,摇床转速为200 r/min,接种量为3%。【结论】在最适条件下菌株W1具有较强的降解甲醛能力,在24 h其甲醛降解率达98%。  相似文献   

20.
The potency of RNA interference (RNAi) undoubtedly can be improved through chemical modifications to the small interfering RNAs (siRNA). By incorporation of the 3'-S-phosphorothiolate modification into strands of RNA, it is hoped that specific regions of a siRNA duplex can be stabilised to enhance the target binding affinity of a selected antisense strand into the activated RNA-induced silencing complex (RISC*). Oligonucleotides composed entirely of this modification are desirable so unconventional 5' --> 3' synthesis is investigated, with initial solution-phase testing proving successful. The phosphoroamidite monomer required for solid-phase synthesis has also been produced.  相似文献   

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