羧酸酯酶
催化三位一体
水解酶
生物
基因产物
基因
蛋白质结构
功能(生物学)
细胞生物学
遗传学
生物化学
肽序列
酶
基因表达
作者
Helgit Eisner,Lina Riegler-Berket,Carlos Francisco Rodriguez Gamez,Theo Sagmeister,Gabriel Chalhoub,Barbara Darnhofer,P J Jazleena,Ruth Birner‐Gruenberger,Tea Pavkov‐Keller,Guenter Haemmerle,Gabriele Schoiswohl,Monika Oberer
标识
DOI:10.3390/ijms232113101
摘要
Members of the carboxylesterase 2 (Ces2/CES2) family have been studied intensively with respect to their hydrolytic function on (pro)drugs, whereas their physiological role in lipid and energy metabolism has been realized only within the last few years. Humans have one CES2 gene which is highly expressed in liver, intestine, and kidney. Interestingly, eight homologous Ces2 (Ces2a to Ces2h) genes exist in mice and the individual roles of the corresponding proteins are incompletely understood. Mouse Ces2c (mCes2c) is suggested as potential ortholog of human CES2. Therefore, we aimed at its structural and biophysical characterization. Here, we present the first crystal structure of mCes2c to 2.12 Å resolution. The overall structure of mCes2c resembles that of the human CES1 (hCES1). The core domain adopts an α/β hydrolase-fold with S230, E347, and H459 forming a catalytic triad. Access to the active site is restricted by the cap, the flexible lid, and the regulatory domain. The conserved gate (M417) and switch (F418) residues might have a function in product release similar as suggested for hCES1. Biophysical characterization confirms that mCes2c is a monomer in solution. Thus, this study broadens our understanding of the mammalian carboxylesterase family and assists in delineating the similarities and differences of the different family members.
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