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21.
(1) Incubation of the beef heart mitochondrial ATPase, F1 with Mg-ATP was required for the binding of the natural inhibitor, IF1, to F1 to form the inactive F1-IF1 complex. When F1 was incubated in the presence of [14C]ATP and MgCl2, about 2 mol 14C-labeled adenine nucleotides were found to bind per mol of F1; the bound 14C-labeled nucleotides consisted of [14C]ADP arising from [14C]ATP hydrolysis and [14C]ATP. The 14C-labeled nucleotide binding was not prevented by IF1. These data are in agreement with the idea that the formation of the F1-IF1 complex requires an appropriate conformation of F1. (2) The 14C-labeled adenine nucleotides bound to F1 following preincubation of F1 with Mg-[14C]ATP could be exchanged with added [3H]ADP or [3H]ATP. No exchange occurred between added [3H]ADP or [3H]ATP and the 14C-labeled adenine nucleotides bound to the F1-IF1 complex. These data suggest that the conformation of F1 in the isolated F1-IF1 complex is further modified in such a way that the bound 14C-labeled nucleotides are no longer available for exchange. (3) 32Pi was able to bind to isolated F1 with a stoichiometry of about 1 mol of Pi per mol of F1 (Penefsky, H.S. (1977) J. Biol. Chem. 252, 2891–2899). There was no binding of 32Pi to the F1-IF1 complex. Thus, not only the nucleotides sites, but also the Pi site, are masked from interaction with external ligands in the isolated F1-IF1 complex. 相似文献
22.
23.
Sudha Ananth Elangovan Gopal Babu Ellappan Vadivel Ganapathy 《Biochemical and biophysical research communications》2010,394(1):75-257
SMCT1 is a Na+-coupled monocarboxylate transporter expressed in a variety of tissues including kidney, thyroid, small intestine, colon, brain, and retina. We found recently that several non-steroidal anti-inflammatory drugs (NSAIDs) inhibit the activity of SMCT1. Here we evaluated the effect of diclofenac, also a NSAID, on SMCT1. SMCT1 cDNA was expressed heterologously in the human retinal pigment epithelial cell lines HRPE and ARPE-19, the human mammary epithelial cell line MCF7, and in Xenopus laevis oocytes. Transport was monitored by substrate uptake and substrate-induced currents. Na+-dependent uptake/current was considered as SMCT1 activity. The effect of diclofenac was evaluated for specificity, dose-response, and influence on transport kinetics. To study the specificity of the diclofenac effect, we evaluated the influence of this NSAID on the activity of several other cloned transporters in mammalian cells under identical conditions. In contrast to several NSAIDs that inhibited SMCT1, diclofenac stimulated SMCT1 when expressed in HRPE and ARPE-19 cells. The stimulation was marked, ranging from 2- to 5-fold depending on the concentration of diclofenac. The stimulation was associated with an increase in the maximal velocity of the transport system as well as with an increase in substrate affinity. The observed effect on SMCT1 was selective because the activity of several other cloned transporters, when expressed in HRPE cells and studied under identical conditions, was not affected by diclofenac. Interestingly, the stimulatory effect on SMCT1 observed in HRPE and ARPE-19 cells was not evident in MCF7 cells nor in the X. laevis expression system, indicating that SMCT1 was not the direct target for diclofenac. The RPE-specific effect suggests that the target of diclofenac that mediates the stimulatory effect is expressed in RPE cells but not in MCF7 cells or in X. laevis oocytes. Since SMCT1 is a concentrative transporter for metabolically important compounds such as pyruvate, lactate, β-hydroxybutyrate, and nicotinate, the stimulation of its activity by diclofenac in RPE cells has biological and clinical significance. 相似文献
24.
Sebastian Schneider Arno Schintlmeister Manuel Becana Michael Wagner Dagmar Woebken Stefanie Wienkoop 《Plant, cell & environment》2019,42(4):1180-1189
Legume–rhizobia symbioses play a major role in food production for an ever growing human population. In this symbiosis, dinitrogen is reduced (“fixed”) to ammonia by the rhizobial nitrogenase enzyme complex and is secreted to the plant host cells, whereas dicarboxylic acids derived from photosynthetically produced sucrose are transported into the symbiosomes and serve as respiratory substrates for the bacteroids. The symbiosome membrane contains high levels of SST1 protein, a sulfate transporter. Sulfate is an essential nutrient for all living organisms, but its importance for symbiotic nitrogen fixation and nodule metabolism has long been underestimated. Using chemical imaging, we demonstrate that the bacteroids take up 20‐fold more sulfate than the nodule host cells. Furthermore, we show that nitrogenase biosynthesis relies on high levels of imported sulfate, making sulfur as essential as carbon for the regulation and functioning of symbiotic nitrogen fixation. Our findings thus establish the importance of sulfate and its active transport for the plant–microbe interaction that is most relevant for agriculture and soil fertility. 相似文献
25.
Chloramphenicol (Cm) and its fluorinated derivative florfenicol (Ff) represent highly potent inhibitors of bacterial protein biosynthesis. As a consequence of the use of Cm in human and veterinary medicine, bacterial pathogens of various species and genera have developed and/or acquired Cm resistance. Ff is solely used in veterinary medicine and has been introduced into clinical use in the mid-1990s. Of the Cm resistance genes known to date, only a small number also mediates resistance to Ff. In this review, we present an overview of the different mechanisms responsible for resistance to Cm and Ff with particular focus on the two different types of chloramphenicol acetyltransferases (CATs), specific exporters and multidrug transporters. Phylogenetic trees of the different CAT proteins and exporter proteins were constructed on the basis of a multisequence alignment. Moreover, information is provided on the mobile genetic elements carrying Cm or Cm/Ff resistance genes to provide a basis for the understanding of the distribution and the spread of Cm resistance--even in the absence of a selective pressure imposed by the use of Cm or Ff. 相似文献
26.
摘要 目的:揭示miR-455-5p对呼吸道合胞病毒(RSV)感染致气道上皮细胞炎症反应的作用机制。方法:qRT-PCR检测30例健康体检儿童(健康组)、RSV感染轻症组(n=41)和重症组(n=31)患儿血清miR-455-5p水平。将16HBE细胞分为Control组、NC-agomir组、miR-455-5p-agomir组、NC-antagomir组、miR-455-5p-antagomir组。使用Lipofectamine 3000转染16HBE细胞后培养48 h后,分为Blank组、NC组(转染了NC-agomir的细胞)、RSV+NC-agomir组、RSV+miR-455-5p-agomir组,用RSV病毒液感染RSV+NC-agomir组和RSV+miR-455-5p-agomir组16HBE细胞,Blank组和NC组16HBE细胞正常培养。用CCK-8法和EdU法检测细胞增殖、TUNEL法检测细胞凋亡、ELISA法检测上清液中TNF-α、IL-6、IL-8水平,qRT-PCR检测miR-455-5p和SOCS3的mRNA水平,Western blot检测SOCS3、IFN-α、STAT1、STAT2、p-STAT1和p-STAT2的蛋白水平。结果:与健康组相比,轻症组和重症组患儿的血清miR-455-5p水平降低(P<0.05)。与轻症组相比,重症组的血清miR-455-5p水平降低(P<0.05)。与Control组和NC-agomir组相比,miR-455-5p-agomir组16HBE细胞的miR-455-5p水平、相对细胞活力和EdU阳性率升高(P<0.05),TUNEL阳性率降低(P<0.05),上清液中的TNF-α、IL-6和IL-8水平降低(P<0.05),SOCS3 mRNA和蛋白水平降低(P<0.05),IFN-α蛋白、STAT1和STAT2磷酸化水平升高(P<0.05)。与Control组和NC-antagomir组相比,miR-455-5p-antagomir组16HBE细胞的miR-455-5p水平、相对细胞活力和EdU阳性率降低(P<0.05),TUNEL阳性率升高(P<0.05),上清液中的TNF-α、IL-6和IL-8水平升高(P<0.05),SOCS3 mRNA和蛋白水平升高(P<0.05),IFN-α蛋白、STAT1和STAT2磷酸化水平降低(P<0.05)。与Blank组和NC组相比,RSV+NC-agomir组16HBE细胞的miR-455-5p水平、相对细胞活力和EdU阳性率降低(P<0.05),TUNEL阳性率升高(P<0.05),上清液中的TNF-α、IL-6和IL-8水平升高(P<0.05),SOCS3 mRNA和蛋白水平升高(P<0.05),IFN-α蛋白、STAT1和STAT2磷酸化水平降低(P<0.05)。与RSV+NC-agomir组相比,RSV+miR-455-5p-agomir组的miR-455-5p水平、相对细胞活力和EdU阳性率升高(P<0.05),TUNEL阳性率降低(P<0.05),上清液中的TNF-α、IL-6和IL-8水平降低(P<0.05),SOCS3 mRNA和蛋白水平降低(P<0.05),IFN-α蛋白、STAT1和STAT2磷酸化水平升高(P<0.05)。结论:miR-455-5p在RSV感染患儿血清中下调,上调miR-455-5p通过抑制SOCS3的转录和表达从而激活RSV感染的16HBE细胞中IFN-α介导的抗病毒反应。 相似文献
27.
Cheng L Naumann TA Horswill AR Hong SJ Venters BJ Tomsho JW Benkovic SJ Keiler KC 《Protein science : a publication of the Protein Society》2007,16(8):1535-1542
A method to rapidly screen libraries of cyclic peptides in vivo for molecules with biological activity has been developed and used to isolate cyclic peptide inhibitors of the ClpXP protease. Fluorescence activated cell sorting was used in conjunction with a fluorescent reporter to isolate cyclic peptides that inhibit the proteolysis of tmRNA-tagged proteins in Escherichia coli. Inhibitors shared little sequence similarity and interfered with unexpected steps in the ClpXP mechanism in vitro. One cyclic peptide, IXP1, inhibited the degradation of unrelated ClpXP substrates and has bactericidal activity when added to growing cultures of Caulobacter crescentus, a model organism that requires ClpXP activity for viability. The screen used here could be adapted to identify cyclic peptide inhibitors of any enzyme that can be expressed in E. coli in conjunction with a fluorescent reporter. 相似文献
28.
Richard F.G. Fröhlich Richard H. Furneaux Don J. Mahuran Robert Saf Arnold E. Stütz Michael B. Tropak Jacqueline Wicki Stephen G. Withers Tanja M. Wrodnigg 《Carbohydrate research》2011,(12):6872
Two simple and reliably accessible intermediates, N-carboxypentyl- and N-aminohexyl-1-deoxy-d-galactonojirimycin were employed for the synthesis of a set of terminally N-dansyl substituted derivatives. Reaction of the terminal carboxylic acid of N-carboxypentyl-1-deoxy-d-galactonojirimycin with N-dansyl-1,6-diaminohexane provided the chain-extended fluorescent derivative. Employing bis(6-dansylaminohexyl)amine, the corresponding branched di-N-dansyl compound was obtained. Partially protected N-aminohexyl-1-deoxy-d-galactonojirimycin served as intermediate for two additional chain-extended fluorescent 1-deoxy-d-galactonojirimycin (1-DGJ) derivatives featuring terminal dansyl groups in the N-alkyl substituent. These new compounds are strong inhibitors of d-galactosidases and may serve as leads en route to pharmacological chaperones for GM1-gangliosidosis. 相似文献
29.
We present a novel approach to design repeat proteins of the leucine-rich repeat (LRR) family for the generation of libraries of intracellular binding molecules. From an analysis of naturally occurring LRR proteins, we derived the concept to assemble repeat proteins with randomized surface positions from libraries of consensus repeat modules. As a guiding principle, we used the mammalian ribonuclease inhibitor (RI) family, which comprises cytosolic LRR proteins known for their extraordinary affinities to many RNases. By aligning the amino acid sequences of the internal repeats of human, pig, rat, and mouse RI, we derived a first consensus sequence for the characteristic alternating 28 and 29 amino acid residue A-type and B-type repeats. Structural considerations were used to replace all conserved cysteine residues, to define less conserved positions, and to decide where to introduce randomized amino acid residues. The so devised consensus RI repeat library was generated at the DNA level and assembled by stepwise ligation to give libraries of 2-12 repeats. Terminal capping repeats, known to shield the continuous hydrophobic core of the LRR domain from the surrounding solvent, were adapted from human RI. In this way, designed LRR protein libraries of 4-14 LRRs (equivalent to 130-415 amino acid residues) were obtained. The biophysical analysis of randomly chosen library members showed high levels of soluble expression in the Escherichia coli cytosol, monomeric behavior as characterized by gel-filtration, and alpha-helical CD spectra, confirming the success of our design approach. 相似文献
30.
Taurine transporter is expressed in vascular smooth muscle cells 总被引:2,自引:0,他引:2
Summary. The regulation of vascular smooth muscle cells (VSMCs) function by taurine has been a subject of increasing interest and investigation,
and taurine is taken up into cells through a specific transporter system, the taurine transporter (TAUT). In the present study,
we examined the expression of TAUT in VSMCs and the kinetic parameters of the uptake process of TAUT in VSMCs. RT-PCR and
western blot demonstrated that the mRNA and protein of TAUT was expressed in VSMCs in vitro. Immunohistochemistry using antibody
for TAUT revealed the expression of this protein in rat thoracic aorta. The maximal [3H]taurine uptake rate in VSMCs was 37.75 ± 3.13 pmol/min per mg of protein, with a K
m
value of 5.42 ± 0.81 μM. Thus, VSMCs are able to express a functional taurine transporter. The regulation and detailed function
of taurine and TAUT in VSMCs remain unclear, but our findings suggest a functional role for them in VSMCs metabolism. 相似文献