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Publication : The critical role of His48 in mouse cytosolic sulfotransferase SULT2A8 for the 7α-hydroxyl sulfation of bile acids.

First Author  Shimohira T Year  2018
Journal  Biosci Biotechnol Biochem Volume  82
Issue  8 Pages  1359-1365
PubMed ID  29685090 Mgi Jnum  J:306886
Mgi Id  MGI:6709538 Doi  10.1080/09168451.2018.1464897
Citation  Shimohira T, et al. (2018) The critical role of His48 in mouse cytosolic sulfotransferase SULT2A8 for the 7alpha-hydroxyl sulfation of bile acids. Biosci Biotechnol Biochem 82(8):1359-1365
abstractText  Members of the cytosolic sulfotransferase (SULT) SULT2A subfamily are known to be critically involved in the homeostasis of steroids and bile acids. SULT2A8, a 7alpha-hydroxyl bile acid-preferring mouse SULT, has been identified as the major enzyme responsible for the mouse-specific 7-O-sulfation of bile acids. Interestingly, SULT2A8 lacks a conservative catalytic His residue at position 99th. The catalytic mechanism underlying the SULT2A8-mediated 7-O-sulfation of bile acids thus remained unclear. In this study, we performed a mutational analysis in order to gain insight into this yet-unresolved issue. Results obtained revealed two amino acid residues, His48 and Leu99, that are unique to the mouse SULT2A8, but not other SULTs, are essential for its 7-O-sulfating activity toward bile acids. These findings suggested that substitutions of two amino acids, which might have occurred during the evolution of the mouse SULT2A8 gene, endowed mouse SULT2A8 the capacity to catalyze the 7-O-sulfation of bile acids.
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