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酵母线粒体核糖体多肽隧道出口处的蛋白质。

Proteins at the polypeptide tunnel exit of the yeast mitochondrial ribosome.

机构信息

Abteilung Zellbiologie, Technische Universität Kaiserslautern, 67663 Kaiserslautern, Germany.

出版信息

J Biol Chem. 2010 Jun 18;285(25):19022-8. doi: 10.1074/jbc.M110.113837. Epub 2010 Apr 19.

Abstract

Oxidative phosphorylation in mitochondria requires the synthesis of proteins encoded in the mitochondrial DNA. The mitochondrial translation machinery differs significantly from that of the bacterial ancestor of the organelle. This is especially evident from many mitochondria-specific ribosomal proteins. An important site of the ribosome is the polypeptide tunnel exit. Here, nascent chains are exposed to an aqueous environment for the first time. Many biogenesis factors interact with the tunnel exit of pro- and eukaryotic ribosomes to help the newly synthesized proteins to mature. To date, nothing is known about the organization of the tunnel exit of mitochondrial ribosomes. We therefore undertook a comprehensive approach to determine the composition of the yeast mitochondrial ribosomal tunnel exit. Mitochondria contain homologues of the ribosomal proteins located at this site in bacterial ribosomes. Here, we identified proteins located in their proximity by chemical cross-linking and mass spectrometry. Our analysis revealed a complex network of interacting proteins including proteins and protein domains specific to mitochondrial ribosomes. This network includes Mba1, the membrane-bound ribosome receptor of the inner membrane, as well as Mrpl3, Mrpl13, and Mrpl27, which constitute ribosomal proteins exclusively found in mitochondria. This unique architecture of the tunnel exit is presumably an adaptation of the translation system to the specific requirements of the organelle.

摘要

线粒体中的氧化磷酸化需要合成编码在线粒体 DNA 中的蛋白质。线粒体的翻译机制与细胞器的细菌祖先有很大的不同。这在许多线粒体特异性核糖体蛋白中尤为明显。核糖体的一个重要部位是多肽隧道出口。在这里,新生链首次暴露于水性环境中。许多生物发生因子与原核和真核核糖体的隧道出口相互作用,以帮助新合成的蛋白质成熟。迄今为止,人们对线粒体核糖体隧道出口的结构一无所知。因此,我们采用了一种全面的方法来确定酵母线粒体核糖体隧道出口的组成。线粒体包含位于细菌核糖体中该位置的核糖体蛋白的同源物。在这里,我们通过化学交联和质谱法确定了位于其附近的蛋白质。我们的分析揭示了一个相互作用蛋白的复杂网络,包括线粒体核糖体特有的蛋白和蛋白结构域。这个网络包括 Mba1,内膜的膜结合核糖体受体,以及 Mrpl3、Mrpl13 和 Mrpl27,它们构成了仅在线粒体中发现的核糖体蛋白。隧道出口的这种独特结构可能是翻译系统对细胞器特定需求的一种适应。

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本文引用的文献

2
Structure of a mitochondrial ribosome with minimal RNA.
Proc Natl Acad Sci U S A. 2009 Jun 16;106(24):9637-42. doi: 10.1073/pnas.0901631106. Epub 2009 Jun 3.
4
YidC and Oxa1 form dimeric insertion pores on the translating ribosome.
Mol Cell. 2009 May 15;34(3):344-53. doi: 10.1016/j.molcel.2009.04.019.
5
Mrpl36 is important for generation of assembly competent proteins during mitochondrial translation.
Mol Biol Cell. 2009 May;20(10):2615-25. doi: 10.1091/mbc.e08-12-1162. Epub 2009 Apr 1.
6
Reconstructing the evolution of the mitochondrial ribosomal proteome.
Nucleic Acids Res. 2007;35(14):4686-703. doi: 10.1093/nar/gkm441. Epub 2007 Jun 29.
7
Mba1, a membrane-associated ribosome receptor in mitochondria.
EMBO J. 2006 Apr 19;25(8):1603-10. doi: 10.1038/sj.emboj.7601070. Epub 2006 Apr 6.
8
Early encounters of a nascent membrane protein: specificity and timing of contacts inside and outside the ribosome.
J Cell Biol. 2005 Jul 4;170(1):27-35. doi: 10.1083/jcb.200503035. Epub 2005 Jun 27.

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