Key Laboratory of Plant Development and Environment Adaptation Biology, Ministry of Education, School of Life Sciences, Shandong University, Qingdao, 266237, China.
J Integr Plant Biol. 2020 Jun;62(6):777-792. doi: 10.1111/jipb.12856. Epub 2019 Oct 16.
In land plants, cytidine-to-uridine (C-to-U) editing of organellar transcripts is an important post-transcriptional process, which is considered to remediate DNA genetic mutations to restore the coding of functional proteins. Pentatricopeptide repeat (PPR) proteins have key roles in C-to-U editing. Owing to its large number, however, the biological functions of many PPR proteins remain to be identified. Through characterizing a small kernel4 (smk4) mutant, here we report the function of Smk4 and its role in maize growth and development. Null mutation of Smk4 slows plant growth and development, causing small plants, delayed flowering time, and small kernels. Cloning revealed that Smk4 encodes a new E-subclass PPR protein, and localization indicated that SMK4 is exclusively localized in mitochondria. Loss of Smk4 function abolishes C-to-U editing at position 1489 of the cytochrome c oxidase1 (cox1) transcript, causing an amino acid change from serine to proline at 497 in Cox1. Cox1 is a core component of mitochondrial complex IV. Indeed, complex IV activity is reduced in the smk4, along with drastically elevated expression of alternative oxidases (AOX). These results indicate that SMK4 functions in the C-to-U editing of cox1-1489, and this editing is crucial for mitochondrial complex IV activity, plant growth, and kernel development in maize.
在陆生植物中,胞嘧啶向尿嘧啶(C 到 U)的编辑是一种重要的转录后过程,它被认为可以修复 DNA 遗传突变,从而恢复有功能的蛋白质的编码。五肽重复(PPR)蛋白在 C 到 U 的编辑中起着关键作用。然而,由于其数量众多,许多 PPR 蛋白的生物学功能仍有待确定。通过对一个小核 4(smk4)突变体的特征分析,我们在这里报告了 Smk4 的功能及其在玉米生长发育中的作用。Smk4 的缺失突变会减缓植物的生长和发育,导致植株矮小、开花时间延迟和籽粒变小。克隆表明 Smk4 编码一种新的 E 类 PPR 蛋白,定位表明 SMK4 专门定位于线粒体。Smk4 功能的丧失会导致细胞色素 c 氧化酶 1(cox1)转录本第 1489 位的 C 到 U 编辑缺失,导致 Cox1 中第 497 位的丝氨酸突变为脯氨酸。Cox1 是线粒体复合物 IV 的核心组成部分。事实上,在 smk4 中,复合物 IV 的活性降低,同时替代氧化酶(AOX)的表达显著升高。这些结果表明 SMK4 在线粒体复合物 IV 活性、植物生长和玉米籽粒发育中起作用。