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蛋白磷酸酶 1 调节亚基 TIMAP 的多向功能。

Multi-directional function of the protein phosphatase 1 regulatory subunit TIMAP.

机构信息

Department of Biochemistry, University of Alberta, Edmonton, AB, Canada.

出版信息

Biochem Biophys Res Commun. 2013 Jun 14;435(4):567-73. doi: 10.1016/j.bbrc.2013.05.012. Epub 2013 May 15.

Abstract

TIMAP is an endothelial-cell predominant member of the MYPT family of PP1c regulatory subunits. This study explored the TIMAP-PP1c interaction and substrate specificity in vitro. TIMAP associated with all three PP1c isoforms, but endogenous endothelial cell TIMAP preferentially co-immunoprecipitated with PP1cβ. Structural modeling of the TIMAP/PP1c complex predicts that the PP1c C-terminus is buried in the TIMAP ankyrin cluster, and that the PP1c active site remains accessible. Consistent with this model, C-terminal PP1c phosphorylation by cdk2-cyclinA was masked by TIMAP, and PP1c bound TIMAP when the active site was occupied by the inhibitor microcystin. TIMAP inhibited PP1c activity toward phosphorylase a in a concentration-dependent manner, with half-maximal inhibition in the 0.4-1.2 nM range, an effect modulated by the length, and by Ser333/Ser337 phosphomimic mutations of the TIMAP C-terminus. TIMAP-bound PP1cβ effectively dephosphorylated MLC2 and TIMAP itself. By contrast, TIMAP inhibited the PP1cβ activity toward the putative substrate LAMR1, and instead masked LAMR1 PKA- and PKC-phosphorylation sites. This is direct evidence that MLC2 is a TIMAP/PP1c substrate. The data also indicate that TIMAP can modify protein phosphorylation independent of its function as a PP1c regulatory subunit, namely by masking phosphorylation sites of binding partners like PP1c and LAMR1.

摘要

TIMAP 是 MYPT 家族中 PP1c 调节亚基的内皮细胞优势成员。本研究探讨了 TIMAP-PP1c 相互作用和体外底物特异性。TIMAP 与所有三种 PP1c 同工型结合,但内源性内皮细胞 TIMAP 优先与 PP1cβ 共免疫沉淀。TIMAP/PP1c 复合物的结构建模预测 PP1c C 端被 TIMAP 的锚蛋白簇掩埋,并且 PP1c 的活性位点仍然可及。与该模型一致,cdk2-cyclinA 对 PP1c C 端的磷酸化被 TIMAP 掩盖,并且当活性位点被抑制剂微囊藻素占据时,PP1c 与 TIMAP 结合。TIMAP 以浓度依赖的方式抑制 PP1c 对磷酸化酶 a 的活性,抑制半数在 0.4-1.2 nM 范围内,该效应受 TIMAP C 端长度和 Ser333/Ser337 磷酸模拟突变的调节。与 TIMAP 结合的 PP1cβ 有效地去磷酸化 MLC2 和 TIMAP 本身。相比之下,TIMAP 抑制了 PP1cβ 对假定底物 LAMR1 的活性,并且掩盖了 LAMR1 PKA 和 PKC 磷酸化位点。这是 MLC2 是 TIMAP/PP1c 底物的直接证据。数据还表明,TIMAP 可以修饰蛋白质磷酸化,而无需其作为 PP1c 调节亚基的功能,即通过掩盖 PP1c 和 LAMR1 等结合伙伴的磷酸化位点。

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