Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
10870155 | FEBS Letters | 2014 | 10 Pages |
Abstract
Homo sapiens ECT2 is a cell cycle regulator that plays critical roles in cytokinesis. ECT2 activity is restrained during interphase via intra-molecular interactions that involve its N-terminal triple-BRCT-domain and its C-terminal DH-PH domain. At anaphase, this self-inhibitory mechanism is relieved by Plk1-phosphorylated CYK-4, which directly engages the ECT2 BRCT domain. To provide a structural perspective for this auto-inhibitory property, we solved the crystal structure of the ECT2 triple-BRCT-domain. In addition, we systematically analyzed the interaction between the ECT2 BRCT domains with phospho-peptides derived from its binding partner CYK-4, and have identified Ser164 as the major phospho-residue that links CYK-4 to the second ECT2 BRCT domain.
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Authors
Yang Zou, Zhenhua Shao, Junhui Peng, Fudong Li, Deshun Gong, Chongyuan Wang, Xiaobing Zuo, Zhiyong Zhang, Jihui Wu, Yunyu Shi, Qingguo Gong,