A、C和D类丝氨酸β-内酰胺酶底物结合袋的结构比较。

IF 5.6 2区 医学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY
Hyeonmin Lee, Hyunjae Park, Kiwoong Kwak, Chae-Eun Lee, Jiwon Yun, Donghyun Lee, Jung Hun Lee, Sang Hee Lee, Lin-Woo Kang
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引用次数: 0

摘要

β-内酰胺类抗生素一直是最成功的抗生素,但耐多药细菌(MDR)的兴起威胁着它们的有效性。丝氨酸β-内酰胺酶(SBLs)是最常见的耐药原因之一,被分类为A、C和D,其众多变体使结构和底物谱比较复杂化。本研究比较了这些类别中具有代表性的SBP,重点研究了底物结合袋(SBP)。SBP在凹痕表面呈芸豆状,主要由L1、L2和L3环和c类中附加的Lc环组成,β-内酰胺环以保守方向结合,β-内酰胺环朝向L2,附加环朝向L1和L3之间的空间。结构比较表明,每个类具有不同的收缩压结构,但子类共享一个保守的支架。容纳互补β-内酰胺的SBP结构决定了sbl的底物光谱。系统比较sbl,包括β-内酰胺和sbp之间的结构相容性,将有助于了解它们的底物光谱。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Structural comparison of substrate-binding pockets of serine β-lactamases in classes A, C, and D.

β-lactams have been the most successful antibiotics, but the rise of multi-drug resistant (MDR) bacteria threatens their effectiveness. Serine β-lactamases (SBLs), among the most common causes of resistance, are classified as A, C, and D, with numerous variants complicating structural and substrate spectrum comparisons. This study compares representative SBLs of these classes, focusing on the substrate-binding pocket (SBP). SBP is kidney bean-shaped on the indented surface, formed mainly by loops L1, L2, and L3, and an additional loop Lc in class C. β-lactams bind in a conserved orientation, with the β-lactam ring towards L2 and additional rings towards the space between L1 and L3. Structural comparison shows each class has distinct SBP structures, but subclasses share a conserved scaffold. The SBP structure, accommodating complimentary β-lactams, determines the substrate spectrum of SBLs. The systematic comparison of SBLs, including structural compatibility between β-lactams and SBPs, will help understand their substrate spectrum.

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来源期刊
CiteScore
10.30
自引率
10.70%
发文量
195
审稿时长
4-8 weeks
期刊介绍: Journal of Enzyme Inhibition and Medicinal Chemistry publishes open access research on enzyme inhibitors, inhibitory processes, and agonist/antagonist receptor interactions in the development of medicinal and anti-cancer agents. Journal of Enzyme Inhibition and Medicinal Chemistry aims to provide an international and interdisciplinary platform for the latest findings in enzyme inhibition research. The journal’s focus includes current developments in: Enzymology; Cell biology; Chemical biology; Microbiology; Physiology; Pharmacology leading to drug design; Molecular recognition processes; Distribution and metabolism of biologically active compounds.
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