化学
草酸盐
计算生物学
生物化学
生物
有机化学
作者
Mirco Dindo,Carolina Conter,Gen‐ichiro Uechi,Gioena Pampalone,Luana Ruta,Ángel L. Pey,Luigia Rossi,Paola Laurino,Mauro Magnani,Barbara Cellini
出处
期刊:ACS omega
[American Chemical Society]
日期:2025-03-24
卷期号:10 (12): 12375-12384
被引量:5
标识
DOI:10.1021/acsomega.4c11434
摘要
is a Mn-dependent hexameric enzyme that converts oxalate to carbon dioxide and formate. Recently, OxDC has attracted the interest of the scientific community due to its biotechnological and medical applications for the treatment of hyperoxaluria, a group of pathologic conditions associated with excessive oxalate urinary excretion caused by either increased endogenous production or increased exogenous absorption. The fact that OxDC displays optimum pH in the acidic range represents a big limitation for most biotechnological applications involving processes occurring at neutral pH, where the activity and stability of the enzyme are remarkably reduced. Here, through bioinformatics-guided protein engineering followed by combinatorial mutagenesis and analyses of activity and thermal stability, we identified a double mutant of OxDC endowed with enhanced catalytic efficiency and stability under physiological conditions. The obtained engineered form of OxDC offers a potential tool for improved intestinal oxalate degradation in hyperoxaluria patients.
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