【2h】

Domain swapping: entangling alliances between proteins.

机译:域交换:纠缠蛋白质之间的联盟。

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摘要

The comparison of monomeric and dimeric diphtheria toxin (DT) reveals a mode for protein association which we call domain swapping. The structure of dimeric DT has been extensively refined against data to 2.0-A resolution and a three-residue loop has been corrected as compared with our published 2.5-A-resolution structure. The monomeric DT structure has also been determined, at 2.3-A resolution. Monomeric DT is a Y-shaped molecule with three domains: catalytic (C), transmembrane (T), and receptor binding (R). Upon freezing in phosphate buffer, DT forms a long-lived, metastable dimer. The protein chain tracing discloses that upon dimerization an unprecedented conformational rearrangement occurs: the entire R domain from each molecule of the dimer is exchanged for the R domain from the other. This involves breaking the noncovalent interactions between the R domain and the C and T domains, rotating the R domain by 180 degrees with atomic movements up to 65 A, and re-forming the same noncovalent interactions between the R domain and the C and T domains of the other chain of the dimer. This conformational transition explains the long life and metastability of the DT dimer. Several other intertwined, dimeric protein structures satisfy our definition of domain swapping and suggest that domain swapping may be the molecular mechanism for evolution of these oligomers and possibly of oligomeric proteins in general.
机译:单体和二聚体白喉毒素(DT)的比较揭示了一种蛋白质缔合的模式,我们称之为域交换。与我们发布的2.5A分辨率结构相比,二聚体DT的结构已针对数据进行了广泛改进,达到2.0-A分辨率,并且纠正了三个残基的循环。还已经确定了单体DT结构,分辨率为2.3-A。单体DT是具有三个域的Y型分子:催化(C),跨膜(T)和受体结合(R)。在磷酸盐缓冲液中冻结后,DT形成了一个长寿命的亚稳态二聚体。蛋白质链示踪显示,二聚化后会发生前所未有的构象重排:二聚体每个分子的整个R结构域都被另一个分子的R结构域交换。这涉及到打破R结构域与C和T结构域之间的非共价相互作用,将R结构域以高达65 A的原子运动旋转180度,并重新形成R结构域与C和T结构域之间相同的非共价相互作用二聚体的另一个链。这种构象转变说明了DT二聚体的长寿命和亚稳定性。其他几种相互缠绕的二聚体蛋白质结构满足了我们对结构域交换的定义,并表明结构域交换可能是这些寡聚体甚至可能是寡聚体蛋白质进化的分子机制。

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