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

Authors
Yoo, Ki-YoungSon, Ji YoungLee, Jee UnShin, WooriIm, Dong-WonKim, Seung JunRyu, Seong EonHeo, Yong-Seok
Issue Date
Jul-2015
Publisher
INT UNION CRYSTALLOGRAPHY
Keywords
MTMR8; phosphoinositide; phosphatase; myotubularin; redox regulation
Citation
ACTA CRYSTALLOGRAPHICA SECTION D-STRUCTURAL BIOLOGY, v.71, pp.1528 - 1539
Indexed
SCIE
SCOPUS
Journal Title
ACTA CRYSTALLOGRAPHICA SECTION D-STRUCTURAL BIOLOGY
Volume
71
Start Page
1528
End Page
1539
URI
https://scholarworks.bwise.kr/hanyang/handle/2021.sw.hanyang/156864
DOI
10.1107/S139900471500927X
ISSN
2059-7983
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.
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COLLEGE OF ENGINEERING (DEPARTMENT OF BIOENGINEERING)
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