Pleckstrin homology (PH) domains play diverse roles in cytoskeletal dynamics and signal transduction. Split PH domains represent a unique subclass of PH domains that have been implicated in interactions with complementary partial PH domains 'hidden' in many proteins. Whether partial PH domains exist as independent structural units alone and whether two halves of a split PH domain can fold together to form an intact PH domain are not known. Here, we solved the structure of the PH(N)-PDZ-PH(C) tandem of alpha-syntrophin. The split PH domain of alpha-syntrophin adopts a canonical PH domain fold. The isolated partial PH domains of alpha-syntrophin, although completely unfolded, remain soluble in solution. Mixing of the two isolated domains induces de novo folding and yields a stable PH domain. Our results demonstrate that two complementary partial PH domains are capable of binding to each other to form an intact PH domain. We further showed that the PH(N)-PDZ-PH(C) tandem forms a functionally distinct supramodule, in which the split PH domain and the PDZ domain function synergistically in binding to inositol phospholipids.
Structure of the split PH domain and distinct lipid-binding properties of the PH-PDZ supramodule of alpha-syntrophin.
α-合成蛋白PH-PDZ超模块的PH结构域分裂及其独特的脂质结合特性
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作者:Yan Jing, Wen Wenyu, Xu Weiguang, Long Jia-Fu, Adams Marvin E, Froehner Stanley C, Zhang Mingjie
| 期刊: | EMBO Journal | 影响因子: | 8.300 |
| 时间: | 2005 | 起止号: | 2005 Dec 7; 24(23):3985-95 |
| doi: | 10.1038/sj.emboj.7600858 | 研究方向: | 其它 |
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