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首页> 外文期刊>Journal of cell biology >Multiple genes are required for proper insertion of secretory proteins into the endoplasmic reticulum in yeast.
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Multiple genes are required for proper insertion of secretory proteins into the endoplasmic reticulum in yeast.

机译:分泌蛋白正确插入酵母内质网需要多个基因。

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摘要

Genes that function in translocation of secretory protein precursors into the ER have been identified by a genetic selection for mutant yeast cells that fail to translocate a signal peptide-cytosolic enzyme hybrid protein. The new mutants, sec62 and sec63, are thermosensitive for growth and accumulate a variety of soluble secretory and vacuolar precursors whose electrophoretic mobilities coincide with those of the corresponding in vitro translated polypeptides. Proteolytic sensitivity of precursor molecules in extracts of mutant cells confirms that polypeptide translocation is blocked. Some form of interaction among the SEC61 (Deshaies, R. J., and R. Schekman. 1987. J. Cell Biol. 105:633-645), SEC62 and SEC63 gene products is suggested by the observation that haploid cells containing any pair of the mutations are inviable at 24 degrees C and show a marked enhancement of the translocation defect. The translocation defects of two mutants (sec62 and sec63) have been reproduced in vitro. sec63 microsomes display low and thermolabile translocation activity for prepro-alpha-factor (pp alpha F) synthesized with a cytosol fraction from wild type yeast. These gene products may constitute part of the polypeptide recognition or translocation apparatus of the ER membrane. Pulse-chase analysis of the translocation-defective mutants demonstrates that insertion of pp alpha F into the ER can proceed posttranslationally.
机译:通过对不能使信号肽-胞质酶杂合蛋白移位的突变酵母细胞的遗传选择,已经鉴定了在将分泌蛋白前体移位至ER中起作用的基因。新的突变体sec62和sec63对生长具有热敏感性,并积聚了各种可溶性分泌和液泡前体,它们的电泳迁移率与相应的体外翻译多肽的电泳迁移率一致。突变细胞提取物中前体分子的蛋白水解敏感性证实多肽易位被阻断。 SEC61(Deshaies,RJ和R. Schekman。1987. J. Cell Biol。105:633-645),SEC62和SEC63基因产物之间的某种形式的相互作用是通过观察到含有任何一对突变的单倍体细胞而得到的在24℃下是不可行的,并且显示出易位缺陷的显着增强。两种突变体(sec62和sec63)的易位缺陷已在体外复制。 sec63微粒体显示与野生型酵母胞浆级分合成的前原α因子(pp alpha F)的低热不稳定转运活性。这些基因产物可以构成ER膜的多肽识别或易位装置的一部分。对易位缺陷型突变体的脉冲追踪分析表明,将pp alpha F插入ER可在翻译后进行。

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