首页> 外文期刊>Acta crystallographica. Section D, Structural biology >Entropic pressure controls the oligomerization of the Vibrio cholerae ParD2 antitoxin
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Entropic pressure controls the oligomerization of the Vibrio cholerae ParD2 antitoxin

机译:熵的压力控制的寡聚化霍乱弧菌ParD2抗毒素

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摘要

ParD2 is the antitoxin component of the parDE2 toxin-antitoxin module from Vibrio cholerae and consists of an ordered DNA-binding domain followed by an intrinsically disordered ParE-neutralizing domain. In the absence of the C-terminal intrinsically disordered protein (IDP) domain, V. cholerae ParD2 (VcParD2) crystallizes as a doughnut-shaped hexadecamer formed by the association of eight dimers. This assembly is stabilized via hydrogen bonds and salt bridges rather than by hydrophobic contacts. In solution, oligomerization of the full-length protein is restricted to a stable, open decamer or dodecamer, which is likely to be a consequence of entropic pressure from the IDP tails. The relative positioning of successive VcParD2 dimers mimics the arrangement of Streptococcus agalactiae CopG dimers on their operator and allows an extended operator to wrap around the VcParD2 oligomer.
机译:ParD2 parDE2的抗毒素组件霍乱弧菌和toxin-antitoxin模块由有序dna结合域紧随其后的是一个本质上是无序的ParE-neutralizing域。c端内在无序蛋白质(IDP)域,霍乱弧菌ParD2 (VcParD2)结晶作为一个圆环形hexadecamer形成的协会8二聚体。通过氢键和盐桥稳定而不是通过疏水接触。全长蛋白的低聚化局限于一个稳定、开放decamer或dodecamer,可能的结果熵的国内流离失所者反面的压力。连续VcParD2二聚体的相对定位模仿链球菌的安排操作员和agalactiae CopG二聚体允许一个扩展的运营商环绕VcParD2 oligomer。

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