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Structural basis for inhibition of the replication licensing factor Cdt1 by geminin

机译:geminin抑制复制许可因子Cdt1的结构基础

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To maintain chromosome stability in eukaryotic cells, replication origins must be licensed by loading mini-chromosome maintenance (MCM2-7) complexes once and only once per cell cycle(1-9). This licensing control is achieved through the activities of geminin(10-12) and cyclin-dependent kinases(9,13,14). Geminin binds tightly to Cdt1, an essential component of the replication licensing system(6,15-18), and prevents the inappropriate reinitiation of replication on an already fired origin. The inhibitory effect of geminin is thought to prevent the interaction between Cdt1 and the MCM helicase(19,20). Here we describe the crystal structure of the mouse geminin-Cdt1 complex using tGeminin (residues 79-157, truncated geminin) and tCdt1 (residues 172-368, truncated Cdt1). The amino-terminal region of a coiled-coil dimer of tGeminin interacts with both N-terminal and carboxy-terminal parts of tCdt1. The primary interface relies on the steric complementarity between the tGeminin dimer and the hydrophobic face of the two short N-terminal helices of tCdt1 and, in particular, Pro 181, Ala 182, Tyr 183, Phe 186 and Leu 189. The crystal structure, in conjunction with our biochemical data, indicates that the N-terminal region of tGeminin might be required to anchor tCdt1, and the C-terminal region of tGeminin prevents access of the MCM complex to tCdt1 through steric hindrance.
机译:为了维持真核细胞中的染色体稳定性,必须通过在每个细胞周期内一次且仅一次加载微型染色体维持(MCM2-7)复合体来许可复制起点(1-9)。这种许可控制是通过geminin(10-12)和cyclin依赖性激酶(9,13,14)的活性来实现的。 Geminin与Cdt1紧密结合,Cdt1是复制许可系统的重要组成部分(6,15-18),并防止在已经发射的源上对复制进行不当的重新初始化。认为双倍蛋白的抑制作用可防止Cdt1与MCM解旋酶之间的相互作用(19,20)。在这里,我们描述了使用tGeminin(残基79-157,截短的geminin)和tCdt1(残基172-368,截短的Cdt1)的小鼠geminin-Cdt1复合物的晶体结构。 tGeminin的卷曲螺旋二聚体的氨基末端区域与tCdt1的N末端和羧基末端部分都相互作用。主要界面依赖于tGeminin二聚体与tCdt1的两个短N端螺旋的疏水面之间的空间互补性,尤其是Pro 181,Ala 182,Tyr 183,Phe 186和Leu 189。结合我们的生化数据,表明可能需要tGeminin的N末端区域锚定tCdt1,而tGeminin的C末端区域阻止MCM复合物通过位阻进入tCdt1。

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