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拟南芥质体核糖体蛋白可分为非必需蛋白和真正的核糖体蛋白。

The plastid-specific ribosomal proteins of Arabidopsis thaliana can be divided into non-essential proteins and genuine ribosomal proteins.

机构信息

Max-Planck-Institut für Molekulare Pflanzenphysiologie, Am Mühlenberg 1, D-14476 Potsdam-Golm, Germany.

出版信息

Plant J. 2012 Jan;69(2):302-16. doi: 10.1111/j.1365-313X.2011.04791.x. Epub 2011 Oct 21.

Abstract

Plastid translation occurs on bacterial-type 70S ribosomes consisting of a large (50S) subunit and a small (30S) subunit. The vast majority of plastid ribosomal proteins have orthologs in bacteria. In addition, plastids also possess a small set of unique ribosomal proteins, so-called plastid-specific ribosomal proteins (PSRPs). The functions of these PSRPs are unknown, but, based on structural studies, it has been proposed that they may represent accessory proteins involved in translational regulation. Here we have investigated the functions of five PSRPs using reverse genetics in the model plant Arabidopsis thaliana. By analyzing T-DNA insertion mutants and RNAi lines, we show that three PSRPs display characteristics of genuine ribosomal proteins, in that down-regulation of their expression led to decreased accumulation of the 30S or 50S subunit of the plastid ribosomes, resulting in plastid translational deficiency. In contrast, two other PSRPs can be knocked out without visible or measurable phenotypic consequences. Our data suggest that PSRPs fall into two types: (i) PSRPs that have a structural role in the ribosome and are bona fide ribosomal proteins, and (ii) non-essential PSRPs that are not required for stable ribosome accumulation and translation under standard greenhouse conditions.

摘要

质体翻译发生在由大亚基(50S)和小亚基(30S)组成的细菌型 70S 核糖体上。绝大多数质体核糖体蛋白在细菌中有同源物。此外,质体还拥有一小部分独特的核糖体蛋白,即所谓的质体特异性核糖体蛋白(PSRPs)。这些 PSRPs 的功能尚不清楚,但基于结构研究,有人提出它们可能代表参与翻译调控的辅助蛋白。在这里,我们使用模式植物拟南芥中的反向遗传学方法研究了五个 PSRPs 的功能。通过分析 T-DNA 插入突变体和 RNAi 系,我们表明三个 PSRPs 表现出真正核糖体蛋白的特征,即下调其表达会导致质体核糖体的 30S 或 50S 亚基积累减少,从而导致质体翻译缺陷。相比之下,另外两个 PSRPs 可以被敲除而没有明显或可测量的表型后果。我们的数据表明,PSRPs 分为两类:(i)在核糖体中具有结构作用的 PSRPs 是真正的核糖体蛋白,(ii)非必需的 PSRPs 在标准温室条件下不需要稳定的核糖体积累和翻译。

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