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蛋白质在内质网上的转运。I. 信号识别蛋白(SRP)与体外组装的合成分泌蛋白的多核糖体结合。

Translocation of proteins across the endoplasmic reticulum. I. Signal recognition protein (SRP) binds to in-vitro-assembled polysomes synthesizing secretory protein.

作者信息

Walter P, Ibrahimi I, Blobel G

出版信息

J Cell Biol. 1981 Nov;91(2 Pt 1):545-50. doi: 10.1083/jcb.91.2.545.

Abstract

An 11S protein composed of six polypeptide chains was previously purified from a salt extract of dog pancreas microsomal membranes and shown to be required for translocation of nascent secretory protein across the microsomal membrane (Wistar and Blobel 1980 Proc. Natl. Acad. Sci. U. S. A. 77:7112-7116). This 11S protein, termed signal recognition protein (SRP), has been shown here (a) to inhibit translation in the wheat germ cell-free system selectively of mRNA for secretory protein (bovine preprolactin) but not of mRNA for cytoplasmic protein (alpha and beta chain of rabbit globin); (b) to bind with relatively low affinity (apparent KD less than 5 x 10(-5)) to monomeric wheat germ ribosomes; and (c) to bind selectively and with 6,000-fold higher affinity (apparent KD less than 8 x 10(-9)) to wheat germ ribosomes engaged in the synthesis of secretory protein but not to those engaged in the synthesis of cytoplasmic protein. Low- and high-affinity binding as well as the selective translation-inhibitory effect were abolished after modification of SRP by N-ethyl maleimide. High-affinity binding and the selective translation-inhibitory effect of SRP were largely abolished when the leucine (Leu) analogue beta-hydroxy leucine was incorporated into the nascent secretory polypeptide.

摘要

一种由六条多肽链组成的11S蛋白先前是从狗胰腺微粒体膜的盐提取物中纯化得到的,并且已证明它是新生分泌蛋白跨微粒体膜转运所必需的(维斯塔尔和布洛贝尔,1980年,美国国家科学院院刊77:7112 - 7116)。这种11S蛋白,称为信号识别蛋白(SRP),在此已表明:(a)在麦胚无细胞体系中选择性抑制分泌蛋白(牛前催乳素)的mRNA的翻译,但不抑制细胞质蛋白(兔珠蛋白的α和β链)的mRNA的翻译;(b)以相对较低的亲和力(表观解离常数小于5×10⁻⁵)与单体麦胚核糖体结合;以及(c)选择性地且以高6000倍的亲和力(表观解离常数小于8×10⁻⁹)与参与分泌蛋白合成的麦胚核糖体结合,但不与参与细胞质蛋白合成的核糖体结合。用N - 乙基马来酰亚胺修饰SRP后,低亲和力和高亲和力结合以及选择性翻译抑制作用均被消除。当亮氨酸(Leu)类似物β - 羟基亮氨酸掺入新生分泌多肽中时,SRP的高亲和力结合和选择性翻译抑制作用在很大程度上被消除。

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