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信号序列受体与信号识别颗粒受体不同,它对于蛋白质转运并非必不可少。

The signal sequence receptor, unlike the signal recognition particle receptor, is not essential for protein translocation.

作者信息

Migliaccio G, Nicchitta C V, Blobel G

机构信息

Laboratory of Cell Biology, Howard Hughes Medical Institute, Rockefeller University, New York 10021-6399.

出版信息

J Cell Biol. 1992 Apr;117(1):15-25. doi: 10.1083/jcb.117.1.15.

Abstract

Detergent extracts of canine pancreas rough microsomal membranes were depleted of either the signal recognition particle receptor (SR), which mediates the signal recognition particle (SRP)-dependent targeting of the ribosome/nascent chain complex to the membrane, or the signal sequence receptor (SSR), which has been proposed to function as a membrane bound receptor for the newly targeted nascent chain and/or as a component of a multi-protein translocation complex responsible for transfer of the nascent chain across the membrane. Depletion of the two components was performed by chromatography of detergent extracts on immunoaffinity supports. Detergent extracts lacking either SR or SSR were reconstituted and assayed for activity with respect to SR dependent elongation arrest release, nascent chain targeting, ribosome binding, secretory precursor translocation, and membrane protein integration. Depletion of SR resulted in the loss of elongation arrest release activity, nascent chain targeting, secretory protein translocation, and membrane protein integration, although ribosome binding was unaffected. Full activity was restored by addition of immunoaffinity purified SR before reconstitution of the detergent extract. Surprisingly, depletion of SSR was without effect on any of the assayed activities, indicating that SSR is either not required for translocation or is one of a family of functionally redundant components.

摘要

犬胰腺粗面微粒体膜的去污剂提取物被去除了信号识别颗粒受体(SR),该受体介导信号识别颗粒(SRP)依赖的核糖体/新生链复合物靶向到膜上,或者被去除了信号序列受体(SSR),有人提出它作为新靶向的新生链的膜结合受体和/或作为负责新生链跨膜转运的多蛋白转运复合物的一个组分发挥作用。通过在免疫亲和支持物上对去污剂提取物进行层析来去除这两种组分。缺乏SR或SSR的去污剂提取物被重组,并针对SR依赖的延伸停滞释放、新生链靶向、核糖体结合、分泌前体转运和膜蛋白整合进行活性测定。去除SR导致延伸停滞释放活性、新生链靶向、分泌蛋白转运和膜蛋白整合丧失,尽管核糖体结合不受影响。在重组去污剂提取物之前添加免疫亲和纯化的SR可恢复全部活性。令人惊讶的是,去除SSR对任何测定的活性都没有影响,表明SSR要么不是转运所必需的,要么是功能冗余组分家族中的一员。

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