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Structure of mouse cytosolic sulfotransferase SULT2A8 provides insight into sulfonation of 7α-hydroxyl bile acids

机译:小鼠细胞源磺酸转移酶Sult2a8的结构提供了含有7α-羟基酸的磺化的洞察力

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摘要

Cytosolic sulfotransferases (SULTs) catalyze the transfer of a sulfonate group from the cofactor 3’-phosphoadenosine 5’-phosphosulfate to a hydroxyl (OH) containing substrate and play a critical role in the homeostasis of endogenous compounds, including hormones, neurotransmitters, and bile acids. In human, SULT2A1 sulfonates the 3-OH of bile acids; however, bile acid metabolism in mouse is dependent on a 7α-OH sulfonating SULT2A8 via unknown molecular mechanisms. In this study, the crystal structure of SULT2A8 in complex with adenosine 3’,5’-diphosphate and cholic acid was resolved at a resolution of 2.5 Å. Structural comparison with human SULT2A1 reveals different conformations of substrate binding loops. In addition, SULT2A8 possesses a unique substrate binding mode that positions the target 7α-OH of the bile acid close to the catalytic site. Furthermore, mapping of the critical residues by mutagenesis and enzyme activity assays further highlighted the importance of Lys44 and His48 for enzyme catalysis and Glu237 in loop 3 on substrate binding and stabilization. In addition, limited proteolysis and thermal shift assays suggested that the cofactor and substrates have protective roles in stabilizing SULT2A8 protein. Together, the findings unveil the structural basis of bile acid sulfonation targeting 7α-OH and shed light on the functional diversity of bile acid metabolism across species.
机译:细胞骨氧化磺酸转移酶(SULLS)催化磺酸盐基团的转移从咖啡酸酯3'-磷甲酸盐5'-磷硫酸盐转移到含羟基(OH)含羟基(OH)底物中,并在内源化合物的稳态中发挥关键作用,包括激素,神经递质和胆汁酸。在人类中,苏尔2A1磺酸盐的胆汁酸的3孔;然而,小鼠的胆汁酸代谢依赖于通过未知的分子机制依赖于7α-OH磺化的肿瘤2A8。在该研究中,以2.5埃的分辨率分解了与腺苷3',5'-二磷酸和胆酸复合物中的SULT2A8的晶体结构。与人类肿瘤2A1的结构比较揭示了衬底结合环的不同构象。此外,SULT2A8具有独特的底物结合模式,其定位靠近催化部位的胆汁酸的靶7α-OH。此外,通过诱变和酶活性测定的关键残留物的映射进一步强调了Lys44和HIS48在底物结合和稳定化上的酶催化和Glu237的酶催化和Glu237的重要性。此外,有限的蛋白水解和热移位测定表明辅因子和底物具有稳定苏尔2A8蛋白的保护作用。同时,该研究结果揭示了偶氮酸磺化的结构基础,靶向7α-oh和脱光的物种胆汁酸代谢的功能多样性。

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