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Trigger Factor from the Psychrophilic Bacterium Psychrobacter frigidicola Is a Monomeric Chaperone

机译:嗜冷细菌的触发因子rigrobacter frigidicola是一种单体分子伴侣。

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摘要

In eubacteria, trigger factor (TF) is the first chaperone to interact with newly synthesized polypeptides and assist their folding as they emerge from the ribosome. We report the first characterization of a TF from a psychrophilic organism. TF from Psychrobacter frigidicola (TFPf) was cloned, produced in Escherichia coli, and purified. Strikingly, cross-linking and fluorescence anisotropy analyses revealed it to exist in solution as a monomer, unlike the well-characterized, dimeric E. coli TF (TFEc). Moreover, TFPf did not exhibit the downturn in reactivation of unfolded GAPDH (glyceraldehyde-3-phosphate dehydrogenase) that is observed with its E. coli counterpart, even at high TF/GAPDH molar ratios and revealed dramatically reduced retardation of membrane translocation by a model recombinant protein compared to the E. coli chaperone. TFPf was also significantly more effective than TFEc at increasing the yield of soluble and functional recombinant protein in a cell-free protein synthesis system, indicating that it is not dependent on downstream systems for its chaperoning activity. We propose that TFPf differs from TFEc in its quaternary structure and chaperone activity, and we discuss the potential significance of these differences in its native environment.
机译:在真细菌中,触发因子(TF)是第一个与新合成的多肽相互作用并在它们从核糖体中出现时协助其折叠的分子伴侣。我们报告了嗜冷生物的TF的第一个特征。克隆了来自费氏嗜冷杆菌的TF(TFPf),在大肠杆菌中产生并纯化。引人注目的是,交联和荧光各向异性分析表明,它以单体形式存在于溶液中,这与众所周知的二聚大肠杆菌TF(TFEc)不同。此外,即使在高TF / GAPDH摩尔比下,TFPf也没有表现出与其大肠杆菌对应物观察到的未折叠GAPDH(甘油醛-3-磷酸脱氢酶)再活化的下降,并且通过模型显着降低了膜移位的阻滞重组蛋白与大肠杆菌伴侣相比。 TFPf在提高无细胞蛋白质合成系统中可溶性和功能性重组蛋白质的产量方面也比TFEc有效得多,这表明TFPf的伴侣活性不依赖于下游系统。我们提出TFPf在四级结构和分子伴侣活性方面与TFEc不同,并且我们讨论了这些差异在其原生环境中的潜在意义。

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