首页> 美国卫生研究院文献>The Journal of Biological Chemistry >CCM3/PDCD10 Heterodimerizes with Germinal Center Kinase III (GCKIII) Proteins Using a Mechanism Analogous to CCM3 Homodimerization
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CCM3/PDCD10 Heterodimerizes with Germinal Center Kinase III (GCKIII) Proteins Using a Mechanism Analogous to CCM3 Homodimerization

机译:CCM3 / PDCD10与萌发中心激酶III(GCKIII)蛋白质异源二聚体其作用机理类似于CCM3均质化

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摘要

CCM3 mutations give rise to cerebral cavernous malformations (CCMs) of the vasculature through a mechanism that remains unclear. Interaction of CCM3 with the germinal center kinase III (GCKIII) subfamily of Sterile 20 protein kinases, MST4, STK24, and STK25, has been implicated in cardiovascular development in the zebrafish, raising the possibility that dysregulated GCKIII function may contribute to the etiology of CCM disease. Here, we show that the amino-terminal region of CCM3 is necessary and sufficient to bind directly to the C-terminal tail region of GCKIII proteins. This same region of CCM3 was shown previously to mediate homodimerization through the formation of an interdigitated α-helical domain. Sequence conservation and binding studies suggest that CCM3 may preferentially heterodimerize with GCKIII proteins through a manner structurally analogous to that employed for CCM3 homodimerization.
机译:CCM3突变通过尚不清楚的机制引起了脉管系统的脑海绵状畸形(CCM)。 CCM3与不育20蛋白激酶MST4,STK24和STK25的生发中心激酶III(GCKIII)亚家族的相互作用与斑马鱼的心血管发育有关,增加了GCKIII功能失调可能有助于CCM病因的可能性疾病。在这里,我们表明CCM3的氨基末端区域是必要的,并且足以直接结合到GCKIII蛋白的C末端尾部区域。先前显示,CCM3的同一区域通过形成叉指的α-螺旋结构域介导同源二聚化。序列保守和结合研究表明,CCM3可以通过与CCM3同型二聚化类似的方式优先与GCKIII蛋白异二聚化。

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