The quaternary structure of the eukaryotic DNA replication proteins Sld7 and Sld3.

Hiroshi Itou, Yasuo Shirakihara, Hiroyuki Araki
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引用次数: 31

Abstract

The initiation of eukaryotic chromosomal DNA replication requires the formation of an active replicative helicase at the replication origins of chromosomes. Yeast Sld3 and its metazoan counterpart treslin are the hub proteins mediating protein associations critical for formation of the helicase. The Sld7 protein interacts with Sld3, and the complex formed is thought to regulate the function of Sld3. Although Sld7 is a non-essential DNA replication protein that is found in only a limited range of yeasts, its depletion slowed the growth of cells and caused a delay in the S phase. Recently, the Mdm2-binding protein was found to bind to treslin in humans, and its depletion causes defects in cells similar to the depletion of Sld7 in yeast, suggesting their functional relatedness and importance during the initiation step of DNA replication. Here, the crystal structure of Sld7 in complex with Sld3 is presented. Sld7 comprises two structural domains. The N-terminal domain of Sld7 binds to Sld3, and the C-terminal domains connect two Sld7 molecules in an antiparallel manner. The quaternary structure of the Sld3-Sld7 complex shown from the crystal structures appears to be suitable to activate two helicase molecules loaded onto replication origins in a head-to-head manner.

真核DNA复制蛋白Sld7和Sld3的四级结构。
真核生物染色体DNA复制的起始需要在染色体复制起始处形成一个活跃的复制解旋酶。酵母Sld3及其后生动物对应体treslin是介导解旋酶形成的关键蛋白关联的枢纽蛋白。Sld7蛋白与Sld3相互作用,形成的复合物被认为调节Sld3的功能。虽然Sld7是一种非必需的DNA复制蛋白,仅在有限范围的酵母中发现,但它的消耗减慢了细胞的生长并导致S期的延迟。最近,在人类中发现mdm2结合蛋白与treslin结合,其缺失在细胞中引起缺陷,类似于酵母中Sld7的缺失,这表明它们在DNA复制起始步骤中的功能相关性和重要性。本文给出了Sld7与Sld3配合物的晶体结构。Sld7包括两个结构域。Sld7的n端结构域与Sld3结合,c端结构域以反平行的方式连接两个Sld7分子。晶体结构显示的Sld3-Sld7复合物的四级结构似乎适合以头对头的方式激活两个装载在复制起点上的解旋酶分子。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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