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新生分泌蛋白跨膜转运可发生在翻译后期。

Translocation of nascent secretory proteins across membranes can occur late in translation.

作者信息

Ainger K J, Meyer D I

出版信息

EMBO J. 1986 May;5(5):951-5. doi: 10.1002/j.1460-2075.1986.tb04308.x.

Abstract

Signal recognition particle (SRP) causes an arrest in the translation of nascent secretory proteins in a wheat germ cell-free system. In order to examine at what point during the synthesis of a secretory protein its translocation across the endoplasmic reticulum (ER) membrane can occur, SRP was used to arrest nascent chain elongation at various times during a synchronous translation, thus allowing the generation of nascent chains of increasing length. It was found that SRP can still bring about an arrest as late as when an average of two-thirds of nascent IgG light chain was completed. Rough microsomes were added to translations blocked with SRP to determine if such relatively long nascent chains could still be translocated across the membrane. It was found that nascent chains which had been arrested by SRP, regardless of their length, could be translocated into rough microsomes. In the case of IgG light chain, translocation levels of 50% were still observed with nascent chains corresponding to as much as 70-75% of the intact preprotein. Similar results were observed for the nascent bovine prolactin precursor. These results demonstrate that the synthesis of secretory proteins can be uncoupled from their translocation, and that fairly large nascent chains are capable of crossing the membrane of the ER post-translationally.

摘要

信号识别颗粒(SRP)可使无细胞小麦胚芽系统中新生分泌蛋白的翻译发生停滞。为了研究分泌蛋白合成过程中其跨内质网(ER)膜转运发生在哪个阶段,在同步翻译的不同时间,利用SRP使新生链延长停滞,从而产生长度不断增加的新生链。结果发现,直到新生IgG轻链平均完成三分之二时,SRP仍能导致翻译停滞。向被SRP阻断的翻译反应中加入糙面微粒体,以确定如此相对较长的新生链是否仍能跨膜转运。结果发现,被SRP停滞的新生链,无论其长度如何,都能转运到糙面微粒体中。就IgG轻链而言,对于相当于完整前体蛋白70 - 75%的新生链,仍可观察到50%的转运水平。对于新生牛催乳素前体也观察到了类似结果。这些结果表明,分泌蛋白的合成与其转运可以分离,并且相当长的新生链能够在翻译后穿过内质网的膜。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9cc8/1166887/8251d2c361f0/emboj00168-0134-a.jpg

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