Ciesielski Grzegorz L, Kim Shalom, de Bovi Pontes Carolina, Kaguni Laurie S
Department of Biochemistry and Molecular Biology and Center for Mitochondrial Science and Medicine, Michigan State University, East Lansing, MI, United States.
Institute of Biosciences and Medical Technology, University of Tampere, Tampere, Finland.
Front Genet. 2021 Sep 1;12:721864. doi: 10.3389/fgene.2021.721864. eCollection 2021.
The maintenance of the mitochondrial genome depends on a suite of nucleus-encoded proteins, among which the catalytic subunit of the mitochondrial replicative DNA polymerase, Pol γα, plays a pivotal role. Mutations in the Pol γα-encoding gene, , are a major cause of human mitochondrial disorders. Here we present a study of direct and functional interactions of Pol γα with the mitochondrial single-stranded DNA-binding protein (mtSSB). mtSSB coordinates the activity of the enzymes at the DNA replication fork. However, the mechanism of this functional relationship is elusive, and no direct interactions between the replicative factors have been identified to date. This contrasts strikingly with the extensive interactomes of SSB proteins identified in other homologous replication systems. Here we show for the first time that mtSSB binds Pol γα directly, in a DNA-independent manner. This interaction is strengthened in the absence of the loop 2.3 structure in mtSSB, and is abolished upon preincubation with Pol γβ. Together, our findings suggest that the interaction between mtSSB and polymerase gamma holoenzyme (Pol γ) involves a balance between attractive and repulsive affinities, which have distinct effects on DNA synthesis and exonucleolysis.
线粒体基因组的维持依赖于一系列由细胞核编码的蛋白质,其中线粒体复制性DNA聚合酶Pol γα的催化亚基起着关键作用。编码Pol γα的基因发生突变是人类线粒体疾病的主要原因。在此,我们展示了一项关于Pol γα与线粒体单链DNA结合蛋白(mtSSB)直接和功能性相互作用的研究。mtSSB可协调DNA复制叉处各种酶的活性。然而,这种功能关系的机制尚不清楚,迄今为止尚未发现复制因子之间存在直接相互作用。这与在其他同源复制系统中鉴定出的广泛的单链结合蛋白相互作用组形成了鲜明对比。在此我们首次表明,mtSSB以不依赖DNA的方式直接结合Pol γα。在mtSSB不存在环2.3结构时,这种相互作用会增强,而在用Pol γβ进行预孵育后则会消失。总之,我们的研究结果表明,mtSSB与聚合酶γ全酶(Pol γ)之间的相互作用涉及吸引和排斥亲和力之间的平衡,这对DNA合成和核酸外切作用有不同影响。