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蛋白质P1、P2和P0,真核生物核糖体柄的组成部分。新的结构和功能方面。

Proteins P1, P2, and P0, components of the eukaryotic ribosome stalk. New structural and functional aspects.

作者信息

Remacha M, Jimenez-Diaz A, Santos C, Briones E, Zambrano R, Rodriguez Gabriel M A, Guarinos E, Ballesta J P

机构信息

Centro de Biologia Molecular, C.S.I.C. and U.A.M., Madrid, Spain.

出版信息

Biochem Cell Biol. 1995 Nov-Dec;73(11-12):959-68. doi: 10.1139/o95-103.

Abstract

The eukaryoic ribosomal stalk is thought to consist of the phosphoproteins P1 and P2, which form a complex with protein PO. This complex interacts at the GTPase domain in the large subunit rRNA, overlapping the binding site of the protein L11-like eukaryotic counterpart (Saccharomyces cerevisiae protein L15 and mammalian protein L12). An unusual pool of the dephosphorylated forms of proteins P1 and P2 is detected in eukaryotic cytoplasm, and an exchange between the proteins in the pool and on the ribosome takes place during translation. Quadruply disrupted yeast strains, carrying four inactive acidic protein genes and, therefore, containing ribosomes totally depleted of acidic proteins, are viable but grow with a doubling time threefold higher than wild-type cells. The in vitro translation systems derived from these stains are active but the two-dimensional gel electrophoresis pattern of proteins expressed in vivo and in vitro is partially different. These results indicate that the P1 and P2 proteins are not essential for ribosome activity but are able to affect the translation of some specific mRNAs. Protein PO is analogous to bacterial ribosomal protein L10 but carries an additional carboxyl domain showing a high sequence homology to the acidic proteins P1 and P2, including the terminal peptide DDDMGFGLFD. Successive deletions of the PO carboxyl domain show that removal of the last 21 amino acids from the PO carboxyl domain only slightly affects the ribosome activity in a wild-type genetic background; however, the same deletion is lethal in a quadruple disruptant deprived of acidic P1/P2 proteins. Additional deletions affect the interaction of PO with the P1 and P2 proteins and with the rRNA. The experimental data available support the implication of the eukaryotic stalk components in some regulatory process that modulates the ribosomal activity.

摘要

真核生物核糖体柄被认为由磷蛋白P1和P2组成,它们与蛋白PO形成复合物。该复合物在大亚基rRNA的GTPase结构域相互作用,与真核生物中类似L11的蛋白(酿酒酵母蛋白L15和哺乳动物蛋白L12)的结合位点重叠。在真核细胞质中检测到P1和P2蛋白的去磷酸化形式的异常库,并且在翻译过程中该库中的蛋白与核糖体上的蛋白之间会发生交换。四重破坏的酵母菌株携带四个无活性的酸性蛋白基因,因此其核糖体完全缺乏酸性蛋白,但仍可存活,不过其倍增时间比野生型细胞高三倍。源自这些菌株的体外翻译系统具有活性,但体内和体外表达的蛋白质的二维凝胶电泳图谱部分不同。这些结果表明,P1和P2蛋白对于核糖体活性不是必需的,但能够影响某些特定mRNA的翻译。蛋白PO类似于细菌核糖体蛋白L10,但带有一个额外的羧基结构域,该结构域与酸性蛋白P1和P2具有高度的序列同源性,包括末端肽DDDMGFGLFD。对PO羧基结构域的连续缺失表明,从PO羧基结构域去除最后21个氨基酸在野生型遗传背景下仅对核糖体活性有轻微影响;然而,相同的缺失在缺乏酸性P1/P2蛋白的四重破坏菌株中是致命的。额外的缺失会影响PO与P1和P2蛋白以及与rRNA的相互作用。现有的实验数据支持真核生物核糖体柄组件参与了调节核糖体活性的某些调控过程。

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