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Mini-chromosome maintenance complexes form a filament to remodel DNA structure and topology

机译:微型染色体维持复合物形成细丝以重塑DNA结构和拓扑

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Deregulation of mini-chromosome maintenance (MCM) proteins is associated with genomic instability and cancer. MCM complexes are recruited to replication origins for genome duplication. Paradoxically, MCM proteins are in excess than the number of origins and are associated with chromatin regions away from the origins during G1 and S phases. Here, we report an unusually wide left-handed filament structure for an archaeal MCM, as determined by X-ray and electron microscopy. The crystal structure reveals that an α-helix bundle formed between two neighboring subunits plays a critical role in filament formation. The filament has a remarkably strong electro-positive surface spiraling along the inner filament channel for DNA binding. We show that this MCM filament binding to DNA causes dramatic DNA topology change. This newly identified function of MCM to change DNA topology may imply a wider functional role for MCM in DNA metabolisms beyond helicase function. Finally, using yeast genetics, we show that the inter-subunit interactions, important for MCM filament formation, play a role for cell growth and survival.
机译:微型染色体维持(MCM)蛋白的失调与基因组不稳定和癌症有关。 MCM复合体被募集到复制起点以进行基因组复制。矛盾的是,在G1和S期,MCM蛋白超过了原点的数量,并与远离原点的染色质区域相关。在这里,我们报告了古细菌MCM异常宽的左手丝结构,这是通过X射线和电子显微镜确定的。晶体结构表明,在两个相邻亚基之间形成的α-螺旋束在长丝形成中起关键作用。细丝沿着内细丝通道具有非常强的正电螺旋表面,用于DNA结合。我们表明,这种MCM细丝与DNA的结合会引起DNA拓扑结构的急剧变化。 MCM改变DNA拓扑结构的这一新发现的功能可能意味着MCM在DNA代谢中的功能比解旋酶功能更广泛。最后,使用酵母遗传学,我们显示亚基间相互作用对MCM细丝形成很重要,对细胞生长和存活起重要作用。

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