Perez-Arnaiz Patricia, Kaplan Daniel L
Department of Biomedical Sciences, Florida State University College of Medicine, Tallahassee, FL 32306, USA.
Department of Biomedical Sciences, Florida State University College of Medicine, Tallahassee, FL 32306, USA.
J Mol Biol. 2016 Nov 20;428(23):4608-4625. doi: 10.1016/j.jmb.2016.10.014. Epub 2016 Oct 15.
Mcm10 is an essential protein that functions to initiate DNA replication after the formation of the replication fork helicase. In this manuscript, we identified a budding yeast Mcm10 mutant (Mcm10-m2,3,4) that is defective in DNA binding in vitro. Moreover, this Mcm10-m2,3,4 mutant does not stimulate the phosphorylation of Mcm2 by Dbf4-dependent kinase (DDK) in vitro. When we expressed wild-type levels of mcm10-m2,3,4 in budding yeast cells, we observed a severe growth defect and a substantially decreased DNA replication. We also observed a substantially reduced replication protein A- chromatin immunoprecipitation signal at origins of replication, reduced levels of DDK-phosphorylated Mcm2, and diminished Go, Ichi, Ni, and San (GINS) association with Mcm2-7 in vivo. mcm5-bob1 bypasses the growth defect conferred by DDK-phosphodead Mcm2 in budding yeast. However, the growth defect observed by expressing mcm10-m2,3,4 is not bypassed by the mcm5-bob1 mutation. Furthermore, origin melting and GINS association with Mcm2-7 are substantially decreased for cells expressing mcm10-m2,3,4 in the mcm5-bob1 background. Thus, the origin melting and GINS-Mcm2-7 interaction defects we observed for mcm10-m2,3,4 are not explained by decreased Mcm2 phosphorylation by DDK, since the defects persist in an mcm5-bob1 background. These data suggest that DNA binding by Mcm10 is essential for the initiation of DNA replication.
Mcm10是一种必需蛋白,在复制叉解旋酶形成后启动DNA复制。在本论文中,我们鉴定出一种芽殖酵母Mcm10突变体(Mcm10-m2,3,4),其在体外DNA结合方面存在缺陷。此外,这种Mcm10-m2,3,4突变体在体外不能刺激Dbf4依赖激酶(DDK)介导的Mcm2磷酸化。当我们在芽殖酵母细胞中表达野生型水平的mcm10-m2,3,4时,我们观察到严重的生长缺陷和显著降低的DNA复制。我们还在体内观察到复制起点处复制蛋白A-染色质免疫沉淀信号大幅减少、DDK磷酸化的Mcm2水平降低以及Go、Ichi、Ni和San(GINS)与Mcm2-7的结合减少。mcm5-bob1可绕过芽殖酵母中DDK磷酸化失活的Mcm2所导致的生长缺陷。然而,表达mcm10-m2,3,4所观察到的生长缺陷不能被mcm5-bob1突变绕过。此外,在mcm5-bob1背景下表达mcm10-m2,3,4的细胞,其起点解链和GINS与Mcm2-7的结合大幅减少。因此,我们观察到的mcm10-m2,3,4的起点解链和GINS-Mcm2-7相互作用缺陷不能用DDK介导的Mcm2磷酸化减少来解释,因为这些缺陷在mcm5-bob1背景下仍然存在。这些数据表明,Mcm10的DNA结合对于DNA复制的起始至关重要。