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粗糙脉孢菌CyPBP37:一种胞质应激蛋白,能够在维生素B1合成中替代酵母Thi4p的功能。

Neurospora crassa CyPBP37: a cytosolic stress protein that is able to replace yeast Thi4p function in the synthesis of vitamin B1.

作者信息

Faou Pierre, Tropschug Maximilian

机构信息

Institut für Biochemie und Molekularbiologie der Universität Freiburg i.Br., Hermann-Herder-Str. 7, D-79104 Freiburg i.Br., Germany.

出版信息

J Mol Biol. 2004 Dec 3;344(4):1147-57. doi: 10.1016/j.jmb.2004.09.097.

Abstract

Recently, we identified CyPBP37 of Neurospora crassa as a binding partner of cyclophilin41. CyPBP37 function had not yet been described, although orthologs in other organisms have been implicated in the biosynthesis of the thiazole moiety of thiamine (vitamin B1) and/or stress-related pathways. Here, CyPBP37 is characterized as an abundant cytosolic protein with a functional NAD-binding site. Saccharomyces cerevisiae mutants lacking Thi4p (the CyPBP37 ortholog) are auxotrophic for vitamin B1 (thiamine) but can grow in the presence of the thiazole moiety of thiamine, suggesting a role for Thi4p in the biosynthesis of thiazole. N.crassa CyPBP37 is able to functionally replace Thi4p in yeast thiazole synthesis. Cellular fractionation studies revealed that Thi4p is a cytosolic protein in S.cerevisiae, like its ortholog CyPBP37 in N.crassa. This implies that thiamine synthesis takes place in the cytosol of both organisms and not in the mitochondria, as suggested. The expression of CyPBP37 and Thi4p is repressed by thiamine but not by thiazole in the growth medium. In addition to its function in thiazole synthesis, CyPBP37 is a stress-inducible protein. N.crassa cyclophilin41 can chaperone the folding of CyPBP37, its own binding partner.

摘要

最近,我们鉴定出粗糙脉孢菌的CyPBP37是亲环蛋白41的结合伴侣。尽管其他生物体中的直系同源物与硫胺素(维生素B1)噻唑部分的生物合成和/或应激相关途径有关,但CyPBP37的功能尚未被描述。在这里,CyPBP37被表征为一种富含胞质的蛋白质,具有功能性的NAD结合位点。缺乏Thi4p(CyPBP37的直系同源物)的酿酒酵母突变体对维生素B1(硫胺素)营养缺陷,但在硫胺素的噻唑部分存在时能够生长,这表明Thi4p在噻唑的生物合成中起作用。粗糙脉孢菌的CyPBP37能够在酵母噻唑合成中功能性替代Thi4p。细胞分级分离研究表明,Thi4p在酿酒酵母中是一种胞质蛋白,就像其在粗糙脉孢菌中的直系同源物CyPBP37一样。这意味着硫胺素的合成发生在这两种生物体的细胞质中,而不是如所建议的在线粒体中。生长培养基中的硫胺素可抑制CyPBP37和Thi4p的表达,但噻唑不会。除了在噻唑合成中的功能外,CyPBP37还是一种应激诱导蛋白。粗糙脉孢菌亲环蛋白41可以陪伴其自身结合伴侣CyPBP37的折叠。

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