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拟南芥线粒体单链 DNA 结合蛋白 SSB1 和 SSB2 是 mtDNA 复制和同源重组的必需调节因子。

Arabidopsis mitochondrial single-stranded DNA-binding proteins SSB1 and SSB2 are essential regulators of mtDNA replication and homologous recombination.

机构信息

School of Life Sciences, Southwest University, Chongqing, 400715, China.

出版信息

J Integr Plant Biol. 2022 Oct;64(10):1952-1965. doi: 10.1111/jipb.13338. Epub 2022 Sep 6.

DOI:10.1111/jipb.13338
PMID:35925893
Abstract

Faithful DNA replication is one of the most essential processes in almost all living organisms. However, the proteins responsible for organellar DNA replication are still largely unknown in plants. Here, we show that the two mitochondrion-targeted single-stranded DNA-binding (SSB) proteins SSB1 and SSB2 directly interact with each other and act as key factors for mitochondrial DNA (mtDNA) maintenance, as their single or double loss-of-function mutants exhibit severe germination delay and growth retardation. The mtDNA levels in mutants lacking SSB1 and/or SSB2 function were two- to four-fold higher than in the wild-type (WT), revealing a negative role for SSB1/2 in regulating mtDNA replication. Genetic analysis indicated that SSB1 functions upstream of mitochondrial DNA POLYMERASE IA (POLIA) or POLIB in mtDNA replication, as mutation in either gene restored the high mtDNA copy number of the ssb1-1 mutant back to WT levels. In addition, SSB1 and SSB2 also participate in mitochondrial genome maintenance by influencing mtDNA homologous recombination (HR). Additional genetic analysis suggested that SSB1 functions upstream of ORGANELLAR SINGLE-STRANDED DNA-BINDING PROTEIN1 (OSB1) during mtDNA replication, while SSB1 may act downstream of OSB1 and MUTS HOMOLOG1 for mtDNA HR. Overall, our results yield new insights into the roles of the plant mitochondrion-targeted SSB proteins and OSB1 in maintaining mtDNA stability via affecting DNA replication and DNA HR.

摘要

忠实的 DNA 复制是几乎所有生物中最重要的过程之一。然而,负责细胞器 DNA 复制的蛋白质在植物中仍然很大程度上未知。在这里,我们表明,两种定位于线粒体的单链 DNA 结合(SSB)蛋白 SSB1 和 SSB2 直接相互作用,并且作为线粒体 DNA(mtDNA)维持的关键因素,因为它们的单或双功能丧失突变体表现出严重的发芽延迟和生长迟缓。缺乏 SSB1 和/或 SSB2 功能的突变体中的 mtDNA 水平比野生型(WT)高两到四倍,表明 SSB1/2 在调节 mtDNA 复制中起负作用。遗传分析表明,SSB1 在 mtDNA 复制中上游于线粒体 DNA 聚合酶 IA(POLIA)或 POLIB 发挥作用,因为基因的突变恢复了 ssb1-1 突变体的高 mtDNA 拷贝数回到 WT 水平。此外,SSB1 和 SSB2 还通过影响 mtDNA 同源重组(HR)参与线粒体基因组的维持。额外的遗传分析表明,SSB1 在 mtDNA 复制过程中上游于细胞器单链 DNA 结合蛋白 1(OSB1)发挥作用,而 SSB1 可能在 OSB1 和 MUTS HOMOLOG1 下游作用于 mtDNA HR。总的来说,我们的结果为植物线粒体靶向 SSB 蛋白和 OSB1 在通过影响 DNA 复制和 DNA HR 来维持 mtDNA 稳定性方面的作用提供了新的见解。

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Arabidopsis mitochondrial single-stranded DNA-binding proteins SSB1 and SSB2 are essential regulators of mtDNA replication and homologous recombination.拟南芥线粒体单链 DNA 结合蛋白 SSB1 和 SSB2 是 mtDNA 复制和同源重组的必需调节因子。
J Integr Plant Biol. 2022 Oct;64(10):1952-1965. doi: 10.1111/jipb.13338. Epub 2022 Sep 6.
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