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质体核糖体蛋白。细胞器核糖体(叶绿体)50 S亚基中所有蛋白质的鉴定。

The plastid ribosomal proteins. Identification of all the proteins in the 50 S subunit of an organelle ribosome (chloroplast).

作者信息

Yamaguchi K, Subramanian A R

机构信息

Department of Biochemistry, The University of Arizona, Tucson, Arizona 85712, USA.

出版信息

J Biol Chem. 2000 Sep 15;275(37):28466-82. doi: 10.1074/jbc.M005012200.

Abstract

We have completed identification of all the ribosomal proteins (RPs) in spinach plastid (chloroplast) ribosomal 50 S subunit via a proteomic approach using two-dimensional electrophoresis, electroblotting/protein sequencing, high performance liquid chromatography purification, polymerase chain reaction-based screening of cDNA library/nucleotide sequencing, and mass spectrometry (reversed-phase HPLC coupled to electrospray ionization mass spectrometry and electrospray ionization mass spectrometry). Spinach plastid 50 S subunit comprises 33 proteins, of which 31 are orthologues of Escherichia coli RPs and two are plastid-specific RPs (PSRP-5 and PSRP-6) having no homologues in other types of ribosomes. Orthologues of E. coli L25 and L30 are absent in spinach plastid ribosome. 25 of the plastid 50 S RPs are encoded in the nuclear genome and synthesized on cytosolic ribosomes, whereas eight of the plastid RPs are encoded in the plastid organelle genome and synthesized on plastid ribosomes. Sites for transit peptide cleavages in the cytosolic RP precursors and formyl Met processing in the plastid-synthesized RPs were established. Post-translational modifications were observed in several mature plastid RPs, including multiple forms of L10, L18, L31, and PSRP-5 and N-terminal/internal modifications in L2, L11 and L16. Comparison of the RPs in gradient-purified 70 S ribosome with those in the 30 and 50 S subunits revealed an additional protein, in approximately stoichiometric amount, specific to the 70 S ribosome. It was identified to be plastid ribosome recycling factor. Combining with our recent study of the proteins in plastid 30 S subunit (Yamaguchi, K., von Knoblauch, K., and Subramanian, A. R. (2000) J. Biol. Chem. 275, 28455-28465), we show that spinach plastid ribosome comprises 59 proteins (33 in 50 S subunit and 25 in 30 S subunit and ribosome recycling factor in 70 S), of which 53 are E. coli orthologues and 6 are plastid-specific proteins (PSRP-1 to PSRP-6). We propose the hypothesis that PSRPs were evolved to perform functions unique to plastid translation and its regulation, including protein targeting/translocation to thylakoid membrane via plastid 50 S subunit.

摘要

我们已通过蛋白质组学方法,利用二维电泳、电印迹/蛋白质测序、高效液相色谱纯化、基于聚合酶链反应的cDNA文库筛选/核苷酸测序以及质谱分析(反相高效液相色谱与电喷雾电离质谱联用和电喷雾电离质谱),完成了菠菜质体(叶绿体)核糖体50 S亚基中所有核糖体蛋白(RPs)的鉴定。菠菜质体50 S亚基包含33种蛋白质,其中31种是大肠杆菌RPs的直系同源物,另外两种是质体特异性RPs(PSRP - 5和PSRP - 6),在其他类型的核糖体中没有同源物。菠菜质体核糖体中不存在大肠杆菌L25和L30的直系同源物。25种质体50 S RPs由核基因组编码并在胞质核糖体上合成,而8种质体RPs由质体细胞器基因组编码并在质体核糖体上合成。确定了胞质RP前体中转运肽切割位点以及质体合成的RPs中甲酰甲硫氨酸加工位点。在几种成熟的质体RPs中观察到了翻译后修饰,包括多种形式的L10、L18、L31和PSRP - 5,以及L2、L11和L16中的N端/内部修饰。对梯度纯化的70 S核糖体中的RPs与30 S和50 S亚基中的RPs进行比较,发现了一种额外的蛋白质,其含量约为化学计量比,是70 S核糖体特有的。经鉴定它是质体核糖体循环因子。结合我们最近对质体30 S亚基中蛋白质的研究(Yamaguchi, K., von Knoblauch, K., and Subramanian, A. R. (2000) J. Biol. Chem. 275, 28455 - 28465),我们表明菠菜质体核糖体包含59种蛋白质(50 S亚基中有33种,30 S亚基中有25种,70 S中有核糖体循环因子),其中53种是大肠杆菌直系同源物,6种是质体特异性蛋白质(PSRP - 1至PSRP - 6)。我们提出假说,即质体特异性核糖体蛋白(PSRPs)进化而来是为了执行质体翻译及其调控所特有的功能,包括通过质体50 S亚基将蛋白质靶向/转运到类囊体膜。

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