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The architecture of the DNA replication origin recognition complex in Saccharomyces cerevisiae

机译:酿酒酵母DNA复制起点识别复合体的体系结构

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The origin recognition complex (ORC) is conserved in all eu-karyotes. The six proteins of the Saccharomyces cerevisiae ORC that form a stable complex bind to origins of DNA replication and recruit prereplicative complex (pre-RC) proteins, one of which is Cdc6. To further understand the function of ORC we recently determined by single-particle reconstruction of electron micrographs a low-resolution, 3D structure of S. cerevisiae ORC and the ORC-Cdc6 complex. In this article, the spatial arrangement of the ORC subunits within the ORC structure is described. In one approach, a maltose binding protein (MBP) was systematically fused to the N or the C termini of the five largest ORC subunits, one subunit at a time, generating 10 MBP-fused ORCs, and the MBP density was localized in the averaged, 2D EM images of the MBP-fused ORC particles. Determining the Orc1-5 structure and comparing it with the native ORC structure localized the Orc6 subunit near Orc2 and Orc3. Finally, subunit-subunit interactions were determined by immunoprecipitation of ORC subunits synthesized in vitro. Based on the derived ORC architecture and existing structures of archaeal Orc1-DNA structures, we propose a model for ORC and suggest how ORC interacts with origin DNA and Cdc6. The studies provide a basis for understanding the overall structure of the pre-RC.
机译:起源识别复合体(ORC)在所有eu核仁中都是保守的。形成稳定复合物的酿酒酵母ORC的六种蛋白质与DNA复制起点结合,并募集复制前复合物(pre-RC)蛋白,其中之一是Cdc6。为了进一步了解ORC的功能,我们最近通过电子显微照片的单粒子重建确定了酿酒酵母ORC和ORC-Cdc6复合物的低分辨率3D结构。在本文中,描述了ORC结构内ORC子单元的空间排列。在一种方法中,将麦芽糖结合蛋白(MBP)系统融合到五个最大ORC亚基的N或C末端,一次一个亚基,产生10个MBP融合的ORC,并且将MBP密度平均化。 MBP融合的ORC颗粒的2D EM图像。确定Orc1-5结构并将其与本机ORC结构进行比较,将Orc6亚基定位在Orc2和Orc3附近。最后,通过免疫沉淀的方法合成体外合成的ORC亚基,从而确定亚基与亚基之间的相互作用。基于派生的ORC架构和古细菌Orc1-DNA结构的现有结构,我们提出了一个ORC模型,并提出了ORC如何与原始DNA和Cdc6相互作用。这些研究为理解预RC的整体结构提供了基础。

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