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首页> 外文期刊>Integrative Biosciences >Biochemical Properties of the Minichromosomal Maintenance Complex after the Phosphorylation by Kinase
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Biochemical Properties of the Minichromosomal Maintenance Complex after the Phosphorylation by Kinase

机译:激酶磷酸化后的微染色体维持复合物的生化特性

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Previous studies showed that Cdc7 kinase of Schizosaccharomyces pombe phosphorylated the minichro-mosome maintenance (Mem) complex efficiently in the presence of spMcm10 protein. The biochemical properties of the phosphorylated Mcm complexes were examined to understand the activation mechanism of the Mcm complex by Cdc7 kinase. The phosphorylation of Mcm complex in the presence of spMcm10 by Cdc7 kinase did not affect the stability of the Mcm complex containing all six subunits, and the changes in the sedimentation properties were not observed after the phosphorylation. The reconstitution of the Mcm complex using the purified proteins showed that the phosphorylation of Mcm2 proteins did not affect the interactions between Mcm proteins. The phosphorylation of the Mcm2-7 complex at the same condition also did not activate the other biochemical activities such as DNA helicase and single stranded (ss) DNA binding activities. On the other hand, spMcmlO protein that was used for the stimulation of Mcm phosphorylation showed single stranded DNA binding activity, and inhibited the DNA helicase activity of the Mcm4/6/7 complex. These inhibitory effects were reduced by the addition of Cdc7 kinase, suggesting that the phosphorylation by Cdc7 kinase decreasedthe interactions between spMcmlO and the Mcm complex. Taken together, these results suggested that the phosphorylation by Cdc7 kinase alone is not sufficient for the remodeling and the activation of the Mcm complex, and the additional factors or the phosphorylations might be required for the activation of the Mcm complex.
机译:先前的研究表明,在存在spMcm10蛋白的情况下,粟酒裂殖酵母的Cdc7激酶有效地磷酸化了微染色体维持(Mem)复合物。检查了磷酸化的Mcm复合物的生化特性,以了解Cdc7激酶对Mcm复合物的激活机制。 Cdc7激酶在spMcm10存在下对Mcm复合物的磷酸化作用不会影响包含所有六个亚基的Mcm复合物的稳定性,并且在磷酸化后未观察到沉降特性的变化。使用纯化的蛋白重建的Mcm复合物表明,Mcm2蛋白的磷酸化不影响Mcm蛋白之间的相互作用。在相同条件下,Mcm2-7复合物的磷酸化也未激活其他生物化学活性,例如DNA解旋酶和单链(ss)DNA结合活性。另一方面,用于刺激Mcm磷酸化的spMcm10蛋白显示了单链DNA结合活性,并抑制了Mcm4 / 6/7复合物的DNA解旋酶活性。通过添加Cdc7激酶降低了这些抑制作用,表明Cdc7激酶的磷酸化作用降低了spMcm10与Mcm复合物之间的相互作用。综上所述,这些结果表明,仅Cdc7激酶的磷酸化不足以重塑和激活Mcm复合物,并且可能需要其他因子或磷酸化来激活Mcm复合物。

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