A peptide chain release factor 2a gene regulates maize kernel development by modulating mitochondrial function

生物 释放系数 线粒体DNA 线粒体核糖体 线粒体 遗传学 翻译(生物学) 终止密码子 核糖体 突变体 细胞生物学 基因 分子生物学 信使核糖核酸 核糖核酸
作者
Hui Zhang,Yijian Feng,Kunyang Song,Guofang Li,Jin Jiao,Jingjing Gao,Yongtian Qin,H. Wang,Jinpeng Cheng,Zonghua Liu,Jihua Tang,Zhiyuan Fu
出处
期刊:Crop Journal [KeAi]
卷期号:11 (6): 1731-1741
标识
DOI:10.1016/j.cj.2023.10.006
摘要

Mitochondrial protein translation that is essential for aerobic energy production includes four essential steps of the mitochondrial ribosome cycle, namely, initiation, elongation, termination of the polypeptide, and ribosome recycling. Translation termination initiates when a stop codon enters the A site of the mitochondrial ribosome where it is recognized by a dedicated peptide release factor (RF). However, RFs and mechanisms involved in translation in plant mitochondria, especially in monocotyledons, remain largely unknown. Here, we identified a crumpled kernel (crk5 allele) mutant, with significantly decreased kernel size, 100-kernel weight, and an embryo-lethal phenotype. The Crk5 allele was isolated using map-based cloning and found to encode a mitochondrial localization RF2a. As it is an ortholog of Arabidopsis mitochondrial RF2a, we named the gene ZmmtRF2a. ZmmtRF2a is missing the 5th–7th exons in the crk5 resulting in deletion of domains containing motifs GGQ and SPF that are essential for release activity of RF, mitochondrial ribosome binding, and stop codon recognition. Western blot and qRT-PCR analyses indicate that the crk5 mutation results in abnormal mitochondrion structure and function. Intriguingly, we observed a feedback loop in the crk5 with up-regulated transcript levels detected for several mitochondrial ribosome and mitochondrial-related components, in particular mitochondrial complexes CI, CIV, and a ribosome assembly related PPR. Together, our data support a crucial role for ZmmtRF2a in regulation of mitochondrial structure and function in maize

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