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首页> 外文期刊>Plant molecular biology reporter >Analysis of RPS15aE, an Isoform of a Plant-Specific Evolutionarily Distinct Ribosomal Protein in Arabidopsis thaliana, Reveals its Potential Role as a Growth Regulator
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Analysis of RPS15aE, an Isoform of a Plant-Specific Evolutionarily Distinct Ribosomal Protein in Arabidopsis thaliana, Reveals its Potential Role as a Growth Regulator

机译:RPS15aE,拟南芥中一种植物特定的进化不同核糖体蛋白的同工型的分析揭示了其作为生长调节剂的潜在作用

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There is increasing evidence for ribosome heterogeneity in biological systems. In Arabidopsis thaliana, the ribosomal protein S15a is encoded by six separate genes, which fall into two evolutionarily distinct categories (Type I and Type II). Type I S15a is a universally conserved component of cytosolic ribosomes, whereas there is ambiguity as to the specific subcellular location of Type II S15a (cytosolic and/or mitochondrial ribosomes). In this study, we investigated the functional significance of the distinct form of ribosomal protein S15a (Type II) in Arabidopsis by examining: the evolutionary relationship of eukaryotic S15a proteins with respect to organellar homologs, the expression of individual Type II S15a genes during various developmental stages by RT-PCR, and the phenotypes of an insertional mutation into the RPS15aE gene. The Type II S15a proteins are plant specific, and the duplication event that gave rise to the Type II S15a genes appears to have occurred during the evolution of land plants. The genes encoding Type II S15a in Arabidopsis are differentially expressed, and mutant plants in which the gene encoding S15aE is knocked down produce larger leaves, longer roots, and possess larger cells than wild-type plants suggesting that the RPS15aE isoform of Type II S15a may act as a regulator of translational activity. Our results add significantly to the understanding of the protein constitution of plant ribosomes and the functional significance of ribosome heterogeneity.
机译:越来越多的证据表明生物系统中核糖体的异质性。在拟南芥中,核糖体蛋白S15a由六个独立的基因编码,这些基因分为两个进化上不同的类别(I型和II型)。 I型S15a是胞质核糖体的普遍保守的组成部分,而II型S15a的特定亚细胞位置(胞质和/或线粒体核糖体)则存在歧义。在这项研究中,我们通过检查以下方面来研究拟南芥中核糖体蛋白S15a(II型)独特形式的功能意义:真核S15a蛋白与细胞器同源物的进化关系,各个II型S15a基因在各种发育过程中的表达通过RT-PCR进行克隆,以及RPS15aE基因插入突变的表型。 II型S15a蛋白是植物特异性的,引起II型S15a基因的复制事件似乎是在陆地植物的进化过程中发生的。拟南芥中编码II型S15a的基因差异表达,并且敲除编码S15aE的基因的突变植物比野生型植物产生更大的叶子,更长的根并且拥有更大的细胞,这表明II型S15a的RPS15aE亚型可能充当翻译活动的调节者。我们的结果大大增加了对植物核糖体蛋白质组成的了解以及核糖体异质性的功能意义。

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