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根癌土壤杆菌致病复合物VirE1-VirE2的晶体结构揭示了一种能容纳不同伴侣的柔性蛋白。

Crystal structure of the Agrobacterium virulence complex VirE1-VirE2 reveals a flexible protein that can accommodate different partners.

作者信息

Dym Orly, Albeck Shira, Unger Tamar, Jacobovitch Jossef, Branzburg Anna, Michael Yigal, Frenkiel-Krispin Daphna, Wolf Sharon Grayer, Elbaum Michael

机构信息

Israel Structural Proteomics Center, Chemical Research Support, and Department of Materials and Interfaces, The Weizmann Institute of Science, Rehovot 76100, Israel.

出版信息

Proc Natl Acad Sci U S A. 2008 Aug 12;105(32):11170-5. doi: 10.1073/pnas.0801525105. Epub 2008 Aug 4.

Abstract

Agrobacterium tumefaciens infects its plant hosts by a mechanism of horizontal gene transfer. This capability has led to its widespread use in artificial genetic transformation. In addition to DNA, the bacterium delivers an abundant ssDNA binding protein, VirE2, whose roles in the host include protection from cytoplasmic nucleases and adaptation for nuclear import. In Agrobacterium, VirE2 is bound to its acidic chaperone VirE1. When expressed in vitro in the absence of VirE1, VirE2 is prone to oligomerization and forms disordered filamentous aggregates. These filaments adopt an ordered solenoidal form in the presence of ssDNA, which was characterized previously by electron microscopy and three-dimensional image processing. VirE2 coexpressed in vitro with VirE1 forms a soluble heterodimer. VirE1 thus prevents VirE2 oligomerization and competes with its binding to ssDNA. We present here a crystal structure of VirE2 in complex with VirE1, showing that VirE2 is composed of two independent domains presenting a novel fold, joined by a flexible linker. Electrostatic interactions with VirE1 cement the two domains of VirE2 into a locked form. Comparison with the electron microscopy structure indicates that the VirE2 domains adopt different relative orientations. We suggest that the flexible linker between the domains enables VirE2 to accommodate its different binding partners.

摘要

根癌土壤杆菌通过水平基因转移机制感染其植物宿主。这种能力使其在人工遗传转化中得到广泛应用。除了DNA,该细菌还传递一种丰富的单链DNA结合蛋白VirE2,其在宿主中的作用包括免受细胞质核酸酶的影响以及适应核输入。在根癌土壤杆菌中,VirE2与其酸性伴侣蛋白VirE1结合。在没有VirE1的情况下于体外表达时,VirE2易于寡聚化并形成无序的丝状聚集体。这些细丝在单链DNA存在下呈现有序的螺旋形式,此前已通过电子显微镜和三维图像处理进行了表征。在体外与VirE1共表达的VirE2形成可溶性异二聚体。因此,VirE1可防止VirE2寡聚化,并与其与单链DNA的结合竞争。我们在此展示了VirE2与VirE1复合物的晶体结构,表明VirE2由两个呈现新折叠的独立结构域组成,通过柔性接头连接。与VirE1的静电相互作用将VirE2的两个结构域固定成锁定形式。与电子显微镜结构的比较表明,VirE2结构域采用不同的相对取向。我们认为,结构域之间的柔性接头使VirE2能够适应其不同的结合伙伴。

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