活动站点
催化循环
化学
突变
基质(水族馆)
底物特异性
生物化学
计算生物学
循环(图论)
立体化学
蛋白质结构
催化三位一体
蛋白质-蛋白质相互作用
催化作用
生物物理学
功能分析
生物
超家族
双加氧酶
分子识别
酶
结构母题
异亮氨酸
结构生物学
蛋白质工程
分子动力学
靶蛋白
血浆蛋白结合
结合位点
蛋白质家族
装订袋
序列比对
保守序列
作者
Lunjie Wu,Huan Liu,Songyin Zhao,Lei Qin,J Li,Yì Wáng,Zixuan Dai,Jie Gu,Yan Xu,Feiran Li,Nianci Yao
摘要
The Fe(II)/α-ketoglutarate-dependent dioxygenase (αKGD) superfamily enables various C-H functionalization supported by their active pocket architectures composed of one or more loop elements. However, their conserved architectural features and broader functional roles across the catalytic cycle remain incompletely defined, although such loops have been implicated in substrate recognition or proton transfer in specific catalytic processes. Here, we applied protein structuromics analysis to the PF10014 family within the αKGD superfamily, which contains a single long active-pocket loop and therefore provides a tractable model for dissecting loop-associated structure-function relationships. This analysis identified a conserved structural motif termed the half-open active pocket, which is proposed as a hallmark feature of the αKGD superfamily. Furthermore, enhanced sampling simulations and mutagenesis experiments targeting isoleucine dioxygenase, a representative member of the PF10014 family, revealed the multifaceted role of the loop that constitutes the half-open active pocket architecture throughout the catalytic cycle, encompassing the modulation of half-open active pocket conformation, substrate recognition and anchoring, as well as participation in molecular transport. These findings provide a broader structure-function landscape in which the flexible loop within this family-conserved half-open active pocket serves as a key catalytic element with multiple functions.
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