Structure of the catalytic phosphatase domain of MTMR8: implications for dimerization, membrane association and reversible oxidation.

Ki Young Yoo, Ji Young Son, Jee Un Lee, Woori Shin, Dong Won Im, Seung Jun Kim, Seong Eon Ryu, Yong Seok Heo
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引用次数: 6

Abstract

Myotubularin-related proteins are a large family of phosphoinositide phosphatases; their activity, stability and subcellular localization are regulated by dimeric interactions with other members of the family. Here, the crystal structure of the phosphatase domain of MTMR8 is reported. Conformational deviation of the two loops that mediate interaction with the PH-GRAM domain suggests that the PH-GRAM domain interacts differently with the phosphatase domain of each MTMR member. The protein exists as a dimer with twofold symmetry, providing insight into a novel mode of dimerization mediated by the phosphatase domain. Structural comparison and mutation studies suggest that Lys255 of MTMR8 interacts with the substrate diacylglycerol moiety, similar to Lys333 of MTMR2, although the positions of these residues are different. The catalytic activity of the MTMR8 phosphatase domain is inhibited by oxidation and is reversibly reactivated by reduction, suggesting the presence of an oxidation-protective intermediate other than a disulfide bond owing to the absence of a cysteine within a disulfide-bond distance from Cys338.

MTMR8催化磷酸酶结构域的结构:二聚化、膜结合和可逆氧化的意义。
肌管蛋白相关蛋白是磷酸肌苷磷酸酶的一个大家族;它们的活性、稳定性和亚细胞定位受与家族其他成员的二聚体相互作用的调节。本文报道了MTMR8磷酸酶结构域的晶体结构。介导与PH-GRAM结构域相互作用的两个环的构象偏差表明PH-GRAM结构域与每个MTMR成员的磷酸酶结构域的相互作用不同。该蛋白以二聚体的形式存在,具有双重对称性,提供了一种由磷酸酶结构域介导的二聚体的新模式。结构比较和突变研究表明,MTMR8的Lys255与底物二酰基甘油部分相互作用,类似于MTMR2的Lys333,尽管这些残基的位置不同。MTMR8磷酸酶结构域的催化活性被氧化抑制,并通过还原可逆地重新激活,这表明由于在与Cys338的二硫键距离内没有半胱氨酸,因此存在除二硫键以外的氧化保护中间体。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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