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首页> 外文期刊>Journal of Molecular Biology >Structural basis for asymmetric association of the betaPIX coiled coil and shank PDZ.
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Structural basis for asymmetric association of the betaPIX coiled coil and shank PDZ.

机译:betaPIX盘绕线圈和柄PDZ不对称关联的结构基础。

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betaPIX (p21-activated kinase interacting exchange factor) and Shank/ProSAP protein form a complex acting as a protein scaffold that integrates signaling pathways and regulates postsynaptic structure. Complex formation is mediated by the C-terminal PDZ binding motif of betaPIX and the Shank PDZ domain. The coiled-coil (CC) domain upstream of the PDZ binding motif allows multimerization of betaPIX, which is important for its physiological functions. We have solved the crystal structure of the betaPIX CC-Shank PDZ complex and determined the stoichiometry of complex formation. The betaPIX CC forms a 76-A-long parallel CC trimer. Despite the fact that the betaPIX CC exposes three PDZ binding motifs in the C-termini, the betaPIX trimer associates with a single Shank PDZ. One of the C-terminal ends of the CC forms an extensive beta-sheet interaction with the Shank PDZ, while the other two ends are not involved in ligand binding and form random coils. The two C-terminal ends of betaPIX have significantly lower affinity than the first PDZ binding motif due to the steric hindrance in the C-terminal tails, which results in binding of a single PDZ domain to the betaPIX trimer. The structure shows canonical class I PDZ binding with a beta-sheet interaction extending to position -6 of betaPIX. The betaB-betaC loop of Shank PDZ undergoes a conformational change upon ligand binding to form the beta-sheet interaction and to accommodate the bulky side chain of Trp -5. This structural study provides a clear picture of the molecular recognition of the PDZ ligand and the asymmetric association of betaPIX CC and Shank PDZ.
机译:betaPIX(p21激活的激酶相互作用交换因子)和Shank / ProSAP蛋白形成复合物,充当蛋白支架,整合信号传导途径并调节突触后结构。复合物的形成是由betaPIX和Shank PDZ域的C端PDZ结合基序介导的。 PDZ结合基序上游的卷曲螺旋(CC)域允许betaPIX的多聚化,这对于其生理功能很重要。我们已经解决了betaPIX CC-Shank PDZ配合物的晶体结构,并确定了配合物形成的化学计量。 betaPIX CC形成一个76A长的并行CC三聚体。尽管betaPIX CC在C末端暴露了三个PDZ结合基序,但betaPIX三聚体与单个Shank PDZ相关。 CC的C末端之一与Shunk PDZ形成广泛的β-折叠相互作用,而另两个末端不参与配体结合并形成无规卷曲。由于C末端尾部的空间位阻,betaPIX的两个C末端的亲和力明显低于第一个PDZ结合基序,这导致单个PDZ结构域与betaPIX三聚体结合。该结构显示规范的I类PDZ与β-sheet相互作用延伸至betaPIX的-6位。 Shank PDZ的betaB-betaC环在配体结合后发生构象变化,以形成beta-sheet相互作用并适应Trp -5的庞大侧链。这项结构研究为PDZ配体的分子识别以及betaPIX CC和Shank PDZ的不对称结合提供了清晰的图像。

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