循环(图论)
化学
基质(水族馆)
产品(数学)
闭环
立体化学
水解
产物抑制
生物物理学
纤维素
形式主义(音乐)
结晶学
马里蒂玛热带鱼
反馈回路
物理
拓扑(电路)
蛋白质结构
稳健性(进化)
结合位点
动力学
生物系统
分子动力学
核苷酸
DNA
内环
底物特异性
酶
作者
Zonglin Li,Xinya Liu,Zhi-min Li
出处
期刊:Biochemistry
[American Chemical Society]
日期:2026-03-25
卷期号:65 (7): 903-908
标识
DOI:10.1021/acs.biochem.6c00051
摘要
Endocellulases are central to cellulose deconstruction but are commonly viewed as stochastic catalysts whose product distributions are difficult to control. Here, we report a loop encoded mechanism that governs cleavage-site selection in GH5 endocellulases. By comparing two closely related enzymes with distinct product profiles, we show that a short loop near the binding cleft determines substrate positioning and hydrolytic outcomes. Molecular dynamics simulations reveal that a triaspartate loop (DDD) promotes deep substrate binding and favors central bond cleavage, whereas an alternative loop (DND) conformation restricts substrate entry and leads to nonspecific hydrolysis. Minimal loop substitutions are sufficient to reversibly switch product distributions without altering the catalytic core, and the same behavior is retained on regenerated amorphous cellulose. These results demonstrate that endocellulase product profiles can be rationally programmed through loop engineering and functionally coupled to phosphorylated sugar biosynthesis requiring controlled oligosaccharide inputs.
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