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Role of conserved Met112 residue in the catalytic activity and stability of ketosteroid isomerase SCIE SCOPUS

Title
Role of conserved Met112 residue in the catalytic activity and stability of ketosteroid isomerase
Authors
Cha, HJJang, DSJeong, JHHong, BHYun, YSShin, EJCHOI, KWAN YONG
Date Issued
2016-10
Publisher
BBA Proteins and Proteomics
Abstract
Ketosteroid isomerase (3-oxosteroid Delta(5)-Delta(4)-isomerase, KSI) from Pseudomonas putida catalyzes allylic rearrangement of the 5,6-double bond of Delta(5)-3-ketosteroid to 4,5-position by stereospecific intramolecular transfer of a proton. The active site of KSI is formed by several hydrophobic residues and three catalytic residues (Tyr14, Asp38, and Asp99). In this study, we investigated the role of a hydrophobic Met112 residue near the active site in the catalysis, steroid binding, and stability of KSI. Replacing Met112 with alanine (yields M112A) or leucine (M112L) decreased the k(cat) by 20- and 4-fold, respectively. Compared with the wild type (WT), M112A and M112L KSIs showed increased K-D values for equilenin, an intermediate analogue; these changes suggest that loss of packing at position 112 might lead to unfavorable steroid binding, thereby resulting in decreased catalytic activity. Furthermore, M112A and M112L mutations reduced melting temperature (T-m) by 6.4 degrees C and 2.5 degrees C, respectively. These changes suggest that favorable packing in the core is important for the maintenance of stability in KSI. The M112K mutation decreased k(cat) by 2000-fold, compared with the WT. In M112K KSI structure, a new salt bridge was formed between Asp38 and Lys112. This bridge could change the electrostatic potential of Asp38, and thereby contribute to the decreased catalytic activity. The M112K mutation also decreased the stability by reducing T-m by 4.1 degrees C. Our data suggest that the Met112 residue may contribute to the catalytic activity and stability of KSI by providing favorable hydrophobic environments and compact packing in the catalytic core. (C) 2016 Published by Elsevier B.V.
URI
https://oasis.postech.ac.kr/handle/2014.oak/37625
DOI
10.1016/J.BBAPAP.2016.06.016
ISSN
1570-9639
Article Type
Article
Citation
BBA Proteins and Proteomics, vol. 1864, no. 10, page. 1322 - 1327, 2016-10
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최관용CHOI, KWAN YONG
Div of Integrative Biosci & Biotech
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