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对含有Srp54p同源物的裂殖酵母核糖核蛋白颗粒的遗传和生化分析。

Genetic and biochemical analysis of the fission yeast ribonucleoprotein particle containing a homolog of Srp54p.

作者信息

Selinger D, Brennwald P, Althoff S, Reich C, Hann B, Walter P, Wise J A

机构信息

Department of Biochemistry, University of Illinois at Urbana-Champaign 61801.

出版信息

Nucleic Acids Res. 1994 Jul 11;22(13):2557-67. doi: 10.1093/nar/22.13.2557.

Abstract

Mammalian signal recognition particle (SRP), a complex of six polypeptides and one 7SL RNA molecule, is required for targeting nascent presecretory proteins to the endoplasmic reticulum (ER). Earlier work identified a Schizosaccharomyces pombe homolog of human SRP RNA and showed that it is a component of a particle similar in size and biochemical properties to mammalian SRP. The recent cloning of the gene encoding a fission yeast protein homologous to Srp54p has made possible further characterization of the subunit structure, subcellular distribution, and assembly of fission yeast SRP. S. pombe SRP RNA and Srp54p co-sediment on a sucrose velocity gradient and coimmunoprecipitate, indicating that they reside in the same complex. In vitro assays demonstrate that fission yeast Srp54p binds under stringent conditions to E. coli SRP RNA, which consists essentially of domain IV, but not to the full-length cognate RNA nor to an RNA in which domain III has been deleted in an effort to mirror the structure of bacterial homologs. Moreover, the association of S. pombe Srp54p with SRP RNA in vivo is disrupted by conditional mutations not only in domain IV, which contains its binding site, but in domains I and III, suggesting that the particle may assemble cooperatively. The growth defects conferred by mutations throughout SRP RNA can be suppressed by overexpression of Srp54p, and the degree to which growth is restored correlates inversely with the severity of the reduction in protein binding. Conditional mutations in SRP RNA also reduce its sedimentation with the ribosome/membrane pellet during cell fractionation. Finally, immunoprecipitation under native conditions of an SRP-enriched fraction from [35S]-labeled fission yeast cells suggests that five additional polypeptides are complexed with Srp54p; each of these proteins is similar in size to a constituent of mammalian SRP, implying that the subunit structure of this ribonucleoprotein is conserved over vast evolutionary distances.

摘要

哺乳动物信号识别颗粒(SRP)是一种由六种多肽和一个7SL RNA分子组成的复合体,它是将新生的分泌前蛋白靶向内质网(ER)所必需的。早期研究鉴定出了人类SRP RNA的粟酒裂殖酵母同源物,并表明它是一种颗粒的组成成分,该颗粒在大小和生化特性上与哺乳动物SRP相似。最近克隆了编码与Srp54p同源的裂殖酵母蛋白的基因,这使得进一步表征裂殖酵母SRP的亚基结构、亚细胞分布和组装成为可能。粟酒裂殖酵母SRP RNA和Srp54p在蔗糖速度梯度上共同沉降并共同免疫沉淀,表明它们存在于同一复合体中。体外实验表明,裂殖酵母Srp54p在严格条件下与大肠杆菌SRP RNA结合,大肠杆菌SRP RNA主要由结构域IV组成,但不与全长同源RNA结合,也不与为模拟细菌同源物结构而缺失了结构域III的RNA结合。此外,粟酒裂殖酵母Srp54p与SRP RNA在体内的结合不仅会被结构域IV(包含其结合位点)中的条件性突变破坏,还会被结构域I和III中的突变破坏,这表明该颗粒可能是协同组装的。SRP RNA中各处突变导致的生长缺陷可以通过Srp54p的过表达得到抑制,生长恢复的程度与蛋白质结合减少的严重程度呈负相关。SRP RNA中的条件性突变在细胞分级分离过程中也会降低其与核糖体/膜沉淀的沉降率。最后,在天然条件下对来自[35S]标记的裂殖酵母细胞的富含SRP的组分进行免疫沉淀表明,还有另外五种多肽与Srp54p形成复合体;这些蛋白质中的每一种在大小上都与哺乳动物SRP的一种成分相似,这意味着这种核糖核蛋白的亚基结构在漫长的进化距离中是保守的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f57f/308210/338a9563bb7e/nar00037-0135-a.jpg

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