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可变的内部灵活性是农杆菌 VirE2 蛋白在单链 DNA 上形成的螺旋衣壳的特征。

Variable internal flexibility characterizes the helical capsid formed by agrobacterium VirE2 protein on single-stranded DNA.

机构信息

Department of Materials and Interfaces, Weizmann Institute of Science, Rehovot 76100, Israel.

出版信息

Structure. 2013 Jul 2;21(7):1158-67. doi: 10.1016/j.str.2013.04.027. Epub 2013 Jun 13.

Abstract

Agrobacterium is known for gene transfer to plants. In addition to a linear ssDNA oligonucleotide, Agrobacterium tumefaciens secretes an abundant ssDNA-binding effector, VirE2. In many ways VirE2 adapts the conjugation mechanism to transform the eukaryotic host. The crystal structure of VirE2 shows two compact domains joined by a flexible linker. Bound to ssDNA, VirE2 forms an ordered solenoidal shell, or capsid known as the T-complex. Here, we present a three-dimensional reconstruction of the VirE2-ssDNA complex using cryo-electron microscopy and iterative helical real-space reconstruction. High-resolution refinement was not possible due to inherent heterogeneity in the protein structure. By a combination of computational modeling, chemical modifications, mass spectroscopy, and electron paramagnetic resonance, we found that the N-terminal domain is tightly constrained by both tangential and longitudinal links, while the C terminus is weakly constrained. The quaternary structure is thus rigidly assembled while remaining locally flexible. This flexibility may be important in accommodating substrates without sequence specificity.

摘要

农杆菌以向植物转移基因而闻名。除了线性 ssDNA 寡核苷酸外,根癌农杆菌还分泌丰富的 ssDNA 结合效应因子 VirE2。在许多方面,VirE2 使接合机制适应转化真核宿主。VirE2 的晶体结构显示两个紧凑的结构域由一个灵活的接头连接。与 ssDNA 结合时,VirE2 形成有序的螺旋状壳或称为 T 复合物的衣壳。在这里,我们使用冷冻电子显微镜和迭代螺旋实空间重建技术呈现了 VirE2-ssDNA 复合物的三维重建。由于蛋白质结构固有的异质性,高分辨率精修是不可能的。通过计算建模、化学修饰、质谱和电子顺磁共振的组合,我们发现 N 端结构域受到切线和纵向连接的严格限制,而 C 端结构域受到较弱的限制。因此,四级结构刚性组装,同时保持局部灵活性。这种灵活性对于容纳无序列特异性的底物可能很重要。

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