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Monomeric Esterase: Insights into Cooperative Behavior, Hysteresis/Allokairy

磁滞 酯酶 化学 单体 生物化学 有机化学 物理 聚合物 量子力学
作者
Tania Churasacari Vinces,Anacleto Silva de Souza,Cecília F. Carvalho,Aline Biazola Visnardi,Raphael Dias Teixeira,Edgar E. Llontop,Beatriz Aparecida Passos Bismara Paranhos,Elisabete José Vicente,José Odair Pereira,Robson Francisco de Souza,Maurı́cio Yonamine,Sandro R. Marana,Chuck S. Farah,Cristiane Rodrigues Guzzo
出处
期刊:Biochemistry [American Chemical Society]
卷期号:63 (9): 1178-1193 被引量:7
标识
DOI:10.1021/acs.biochem.3c00668
摘要

Herein, we present a novel esterase enzyme, Ade1, isolated from a metagenomic library of Amazonian dark earths soils, demonstrating its broad substrate promiscuity by hydrolyzing ester bonds linked to aliphatic groups. The three-dimensional structure of the enzyme was solved in the presence and absence of substrate (tributyrin), revealing its classification within the α/β-hydrolase superfamily. Despite being a monomeric enzyme, enzymatic assays reveal a cooperative behavior with a sigmoidal profile (initial velocities vs substrate concentrations). Our investigation brings to light the allokairy/hysteresis behavior of Ade1, as evidenced by a transient burst profile during the hydrolysis of substrates such as p-nitrophenyl butyrate and p-nitrophenyl octanoate. Crystal structures of Ade1, coupled with molecular dynamics simulations, unveil the existence of multiple conformational structures within a single molecular state (E̅1). Notably, substrate binding induces a loop closure that traps the substrate in the catalytic site. Upon product release, the cap domain opens simultaneously with structural changes, transitioning the enzyme to a new molecular state (E̅2). This study advances our understanding of hysteresis/allokairy mechanisms, a temporal regulation that appears more pervasive than previously acknowledged and extends its presence to metabolic enzymes. These findings also hold potential implications for addressing human diseases associated with metabolic dysregulation.
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