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萌发种子的蛋白质组学图谱揭示拟南芥 rpp1a 突变体中增强的幼苗生长。

Proteomic profile of the germinating seeds reveals enhanced seedling growth in Arabidopsis rpp1a mutant.

机构信息

State Key Laboratory of Soil and Sustainable Agriculture, Institute of Soil Science, Chinese Academy of Sciences, Nanjing, 210008, China.

University of Chinese Academy of Sciences, Beijing, 100049, China.

出版信息

Plant Mol Biol. 2023 Oct;113(1-3):105-120. doi: 10.1007/s11103-023-01378-w. Epub 2023 Oct 7.

Abstract

Ribosomal phosphoprotein P1 (RPP1) is an integral component of the P-protein stalk in the 60S subunit of eukaryotic ribosomes and is required for the efficient elongation of translation. Previously, Arabidopsis RPP1A was revealed to be involved in the regulation of seed size and seed storage protein accumulation. In this work, the seedling growth analysis shows that the knockout mutation of Arabidopsis RPP1A significantly promoted seedling growth, particularly in the shoots. The label-free quantitative proteomic analysis demonstrated that a total of 593 proteins were differentially accumulated between the germinating seeds of the wild-type Col-0 and rpp1a mutant. And these proteins were significantly enriched in the intracellular transport, nitrogen compound transport, protein transport, and organophosphate metabolic process. The abundance of proteins involved in the RNA and protein processing processes, including ncRNA processing and protein folding, were significantly increased in the rpp1a mutant. Mutation in RPP1A highlighted the effects on the ribosome, energy metabolism, and nitrogen metabolism. The abundance of enzymes involved in glycolysis and pyruvate mechanism was decreased in the germinating seeds of the rpp1a mutant. Whereas the processes of amino acid biosynthesis, protein processing in endoplasmic reticulum, and biosynthesis of cofactors were enhanced in the germinating seeds of the rpp1a mutant. Taken together, the lack of RPP1A triggered changes in other ribosomal proteins, and the higher amino acid contents in the seedlings of the rpp1a mutant probably contributed to enhanced biosynthesis, processing, and transport of proteins, resulting in accelerated growth. Our results show the novel role of a P-protein and shed new light on the regulatory mechanism of seedling growth.

摘要

核糖体磷蛋白 P1(RPP1)是真核核糖体 60S 亚基 P 蛋白茎的组成部分,对于翻译的有效延伸是必需的。先前,拟南芥 RPP1A 被揭示参与调控种子大小和种子贮藏蛋白积累。在这项工作中,幼苗生长分析表明,拟南芥 RPP1A 的敲除突变显著促进了幼苗的生长,特别是在茎部。无标记定量蛋白质组学分析表明,在野生型 Col-0 和 rpp1a 突变体的萌发种子之间,共有 593 种蛋白质差异积累。这些蛋白质在细胞内运输、含氮化合物运输、蛋白质运输和有机磷代谢过程中显著富集。涉及 RNA 和蛋白质加工过程的蛋白质丰度,包括 ncRNA 加工和蛋白质折叠,在 rpp1a 突变体中显著增加。RPP1A 的突变强调了对核糖体、能量代谢和氮代谢的影响。在 rpp1a 突变体萌发种子中,糖酵解和丙酮酸机制相关酶的丰度降低。然而,在 rpp1a 突变体萌发种子中,氨基酸生物合成、内质网蛋白质加工和辅助因子生物合成的过程增强。总之,RPP1A 的缺失触发了其他核糖体蛋白的变化,而 rpp1a 突变体幼苗中较高的氨基酸含量可能有助于增强蛋白质的生物合成、加工和运输,从而导致生长加速。我们的结果显示了 P 蛋白的新作用,并为幼苗生长的调控机制提供了新的见解。

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