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一种新的调控 MST3(哺乳动物无有丝分裂 20 相关激酶 3)的非经典机制。

A novel non-canonical mechanism of regulation of MST3 (mammalian Sterile20-related kinase 3).

机构信息

School of Biological Sciences, University of Reading, Whiteknights Campus, UK.

出版信息

Biochem J. 2012 Mar 15;442(3):595-610. doi: 10.1042/BJ20112000.

Abstract

The canonical pathway of regulation of the GCK (germinal centre kinase) III subgroup member, MST3 (mammalian Sterile20-related kinase 3), involves a caspase-mediated cleavage between N-terminal catalytic and C-terminal regulatory domains with possible concurrent autophosphorylation of the activation loop MST3(Thr(178)), induction of serine/threonine protein kinase activity and nuclear localization. We identified an alternative 'non-canonical' pathway of MST3 activation (regulated primarily through dephosphorylation) which may also be applicable to other GCKIII (and GCKVI) subgroup members. In the basal state, inactive MST3 co-immunoprecipitated with the Golgi protein GOLGA2/gm130 (golgin A2/Golgi matrix protein 130). Activation of MST3 by calyculin A (a protein serine/threonine phosphatase 1/2A inhibitor) stimulated (auto)phosphorylation of MST3(Thr(178)) in the catalytic domain with essentially simultaneous cis-autophosphorylation of MST3(Thr(328)) in the regulatory domain, an event also requiring the MST3(341-376) sequence which acts as a putative docking domain. MST3(Thr(178)) phosphorylation increased MST3 kinase activity, but this activity was independent of MST3(Thr(328)) phosphorylation. Interestingly, MST3(Thr(328)) lies immediately C-terminal to a STRAD (Sterile20-related adaptor) pseudokinase-like site identified recently as being involved in binding of GCKIII/GCKVI members to MO25 scaffolding proteins. MST3(Thr(178)/Thr(328)) phosphorylation was concurrent with dissociation of MST3 from GOLGA2/gm130 and association of MST3 with MO25, and MST3(Thr(328)) phosphorylation was necessary for formation of the activated MST3-MO25 holocomplex.

摘要

MST3(哺乳动物 Sterile20 相关激酶 3)是 GCK(生发中心激酶)III 亚组成员,其调节的典型途径涉及半胱天冬酶介导的 N 端催化结构域和 C 端调节结构域之间的切割,可能伴有 MST3(丝氨酸/苏氨酸 178 位)激活环的同时自身磷酸化,诱导丝氨酸/苏氨酸蛋白激酶活性和核定位。我们鉴定了 MST3 激活的替代“非典型”途径(主要通过去磷酸化调节),该途径也可能适用于其他 GCKIII(和 GCKVI)亚组成员。在基础状态下,无活性 MST3 与高尔基体蛋白 GOLGA2/gm130(高尔基体 A2/高尔基体基质蛋白 130)共同免疫沉淀。钙调神经磷酸酶 A(一种蛋白丝氨酸/苏氨酸磷酸酶 1/2A 抑制剂)激活 MST3 可刺激 MST3 催化结构域中的(自身)磷酸化,同时在调节结构域中发生 MST3 的顺式自身磷酸化,该事件还需要 MST3(341-376)序列作为潜在的对接结构域。MST3(丝氨酸 178 位)磷酸化增加了 MST3 激酶活性,但这种活性与 MST3(丝氨酸 328 位)磷酸化无关。有趣的是,MST3(丝氨酸 328 位)位于最近发现的与 GCKIII/GCKVI 成员与 MO25 支架蛋白结合有关的 STRAD(Sterile20 相关衔接子)假激酶样位点的 C 末端。MST3(丝氨酸 178 位/丝氨酸 328 位)磷酸化伴随着 MST3 与 GOLGA2/gm130 的解离和 MST3 与 MO25 的结合,MST3(丝氨酸 328 位)磷酸化是形成激活的 MST3-MO25 完整复合物所必需的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5b2d/3286863/36f80eb87934/bic851i001.jpg

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