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核糖体蛋白在盘基网柄菌中的多功能作用。

Pleiotropic roles of a ribosomal protein in Dictyostelium discoideum.

机构信息

Department of Molecular Reproduction, Development and Genetics, Indian Institute of Science, Bangalore, India.

出版信息

PLoS One. 2012;7(2):e30644. doi: 10.1371/journal.pone.0030644. Epub 2012 Feb 17.

Abstract

The cell cycle phase at starvation influences post-starvation differentiation and morphogenesis in Dictyostelium discoideum. We found that when expressed in Saccharomyces cerevisiae, a D. discoideum cDNA that encodes the ribosomal protein S4 (DdS4) rescues mutations in the cell cycle genes cdc24, cdc42 and bem1. The products of these genes affect morphogenesis in yeast via a coordinated moulding of the cytoskeleton during bud site selection. D. discoideum cells that over- or under-expressed DdS4 did not show detectable changes in protein synthesis but displayed similar developmental aberrations whose intensity was graded with the extent of over- or under-expression. This suggested that DdS4 might influence morphogenesis via a stoichiometric effect--specifically, by taking part in a multimeric complex similar to the one involving Cdc24p, Cdc42p and Bem1p in yeast. In support of the hypothesis, the S. cerevisiae proteins Cdc24p, Cdc42p and Bem1p as well as their D. discoideum cognates could be co-precipitated with antibodies to DdS4. Computational analysis and mutational studies explained these findings: a C-terminal domain of DdS4 is the functional equivalent of an SH3 domain in the yeast scaffold protein Bem1p that is central to constructing the bud site selection complex. Thus in addition to being part of the ribosome, DdS4 has a second function, also as part of a multi-protein complex. We speculate that the existence of the second role can act as a safeguard against perturbations to ribosome function caused by spontaneous variations in DdS4 levels.

摘要

饥饿时的细胞周期阶段会影响出芽生殖生物盘基网柄菌的饥饿后分化和形态发生。我们发现,当在酿酒酵母中表达时,编码核糖体蛋白 S4 的出芽生殖生物盘基网柄菌 cDNA(DdS4)可拯救细胞周期基因 cdc24、cdc42 和 bem1 的突变。这些基因的产物通过在芽位点选择过程中协调细胞骨架的成型来影响酵母中的形态发生。过表达或低表达 DdS4 的出芽生殖生物盘基网柄菌细胞在蛋白质合成方面没有检测到明显变化,但表现出类似的发育异常,其强度与过表达或低表达的程度成正比。这表明 DdS4 可能通过化学计量效应影响形态发生,具体来说,通过参与类似于酵母中涉及 Cdc24p、Cdc42p 和 Bem1p 的三聚体复合物。为了支持这一假设,酿酒酵母蛋白 Cdc24p、Cdc42p 和 Bem1p 及其出芽生殖生物盘基网柄菌同源物可以与针对 DdS4 的抗体共沉淀。计算分析和突变研究解释了这些发现:DdS4 的 C 末端结构域是酵母支架蛋白 Bem1p 中 SH3 结构域的功能等价物,是构建芽位点选择复合物的核心。因此,除了作为核糖体的一部分,DdS4 还有第二个功能,也是作为多蛋白复合物的一部分。我们推测,第二个作用的存在可以作为防止由 DdS4 水平自发变化引起的核糖体功能紊乱的一种保障。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bf54/3281849/e7cfa1964cf4/pone.0030644.g001.jpg

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