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细胞质结构域对于SecY - SecE转运体复合物的形成很重要。

A cytoplasmic domain is important for the formation of a SecY-SecE translocator complex.

作者信息

Baba T, Taura T, Shimoike T, Akiyama Y, Yoshihisa T, Ito K

机构信息

Department of Cell Biology, Kyoto University, Japan.

出版信息

Proc Natl Acad Sci U S A. 1994 May 10;91(10):4539-43. doi: 10.1073/pnas.91.10.4539.

Abstract

An approach to identifying the interaction site of multicomponent protein assembly has been applied to the membrane-bound SecY-SecE complex, which mediates protein export across the Escherichia coli cytoplasmic membrane. A dominant negative secY allele, secY-d1, inactivates SecY but preserves its ability to interact with SecE. Thus, the mutant protein sequesters SecE in an inactive complex. Second site mutations that disrupt the SecE binding site will suppress the export interference. We introduced insertion/deletion mutations that intragenically suppressed secY-d1. After eliminating knock-out mutations by virtue of the expression of a LacZ alpha sequence that had been attached to the C terminus, we obtained a striking clustering of mutations in cytoplasmic domain 4. On the basis of this result, the secY24 (Ts) substitution mutation in this domain was examined for its effects on interaction with SecE. It indeed suppressed secY-d1. Although the instability associated with excess SecY can be alleviated by overproduction of SecE, the secY24 mutant protein was not stabilized by SecE. The basal-level SecY24 protein was also destabilized at 42 degrees C. SecE was coimmunoprecipitated with SecY+ but not with the SecY24 protein. These results indicate that the secY24 mutation weakens SecY's interaction with SecE. Taken together, we propose that cytoplasmic domain 4 is important for the association between SecY and SecE.

摘要

一种用于识别多组分蛋白质组装相互作用位点的方法已应用于膜结合的SecY-SecE复合物,该复合物介导蛋白质穿过大肠杆菌细胞质膜的输出。一个显性负性secY等位基因secY-d1使SecY失活,但保留了其与SecE相互作用的能力。因此,突变蛋白将SecE隔离在一个无活性的复合物中。破坏SecE结合位点的第二位点突变将抑制输出干扰。我们引入了在基因内抑制secY-d1的插入/缺失突变。通过表达连接到C末端的LacZα序列消除敲除突变后,我们在细胞质结构域4中获得了显著的突变聚集。基于这一结果,我们检测了该结构域中的secY24(Ts)替代突变对其与SecE相互作用的影响。它确实抑制了secY-d1。尽管SecE的过量表达可以缓解与过量SecY相关的不稳定性,但secY24突变蛋白并未被SecE稳定。基础水平的SecY24蛋白在42℃时也不稳定。SecE与SecY+共免疫沉淀,但不与SecY24蛋白共免疫沉淀。这些结果表明,secY24突变削弱了SecY与SecE的相互作用。综上所述,我们提出细胞质结构域4对于SecY和SecE之间的关联很重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bfa4/43821/cbc3fa85bdad/pnas01132-0447-a.jpg

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