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MSP1 编码一个必需的 RNA 结合五肽重复因子,该因子在拟南芥线粒体中 NAD1 成熟和复合物 I 生物发生中起作用。

MSP1 encodes an essential RNA-binding pentatricopeptide repeat factor required for nad1 maturation and complex I biogenesis in Arabidopsis mitochondria.

机构信息

Department of Plant and Environmental Sciences, The Alexander Silberman Institute of Life Sciences, The Hebrew University of Jerusalem, Jerusalem, 91904, Israel.

College of Food Science & Nutritional Engineering, China Agricultural University, Beijing, 100083, China.

出版信息

New Phytol. 2023 Jun;238(6):2375-2392. doi: 10.1111/nph.18880. Epub 2023 Apr 17.

Abstract

Mitochondrial biogenesis relies on nuclearly encoded factors, which regulate the expression of the organellar-encoded genes. Pentatricopeptide repeat (PPR) proteins constitute a major gene family in angiosperms that are pivotal in many aspects of mitochondrial (mt)RNA metabolism (e.g. trimming, splicing, or stability). Here, we report the analysis of MITOCHONDRIA STABILITY/PROCESSING PPR FACTOR1 (MSP1, At4g20090), a canonical PPR protein that is necessary for mitochondrial functions and embryo development. Loss-of-function allele of MSP1 leads to seed abortion. Here, we employed an embryo-rescue method for the molecular characterization of msp1 mutants. Our analyses reveal that msp1 embryogenesis fails to proceed beyond the heart/torpedo stage as a consequence of a nad1 pre-RNA processing defect, resulting in the loss of respiratory complex I activity. Functional complementation confirmed that msp1 phenotypes result from a disruption of the MSP1 gene. In Arabidopsis, the maturation of nad1 involves the processing of three RNA fragments, nad1.1, nad1.2, and nad1.3. Based on biochemical analyses and mtRNA profiles of wild-type and msp1 plants, we concluded that MSP1 facilitates the generation of the 3' terminus of nad1.1 transcript, a prerequisite for nad1 exons a-b splicing. Our data substantiate the importance of mtRNA metabolism for the biogenesis of the respiratory system during early plant life.

摘要

线粒体生物发生依赖于核编码因子,这些因子调节细胞器编码基因的表达。五肽重复(PPR)蛋白构成了被子植物中一个主要的基因家族,它们在许多线粒体(mt)RNA 代谢方面(如修剪、剪接或稳定性)发挥着关键作用。在这里,我们报告了线粒体稳定性/加工 PPR 因子 1(MSP1,At4g20090)的分析,这是一种典型的 PPR 蛋白,对于线粒体功能和胚胎发育是必需的。MSP1 的功能丧失等位基因导致种子流产。在这里,我们采用了胚胎拯救方法对 msp1 突变体进行了分子特征分析。我们的分析表明,由于 nad1 前 RNA 加工缺陷,msp1 胚胎发育无法进入心脏/鱼雷阶段,导致呼吸复合物 I 活性丧失。功能互补证实了 msp1 表型是由于 MSP1 基因的破坏。在拟南芥中,nad1 的成熟涉及三个 RNA 片段的加工,即 nad1.1、nad1.2 和 nad1.3。基于生化分析和野生型和 msp1 植物的 mtRNA 图谱,我们得出结论,MSP1 有助于 nad1.1 转录物 3' 末端的生成,这是 nad1 外显子 a-b 剪接的前提。我们的数据证实了 mtRNA 代谢对于早期植物生命中呼吸系统生物发生的重要性。

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