C类β-内酰胺酶:分子特性。

IF 19 1区 医学 Q1 MICROBIOLOGY Clinical Microbiology Reviews Pub Date : 2022-09-21 DOI:10.1128/cmr.00150-21
Alain Philippon, Guillaume Arlet, Roger Labia, Bogdan I Iorga
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引用次数: 7

摘要

C类β-内酰胺酶或头孢菌素酶可分为两个功能群(1,1e),具有相当大的分子差异性(≤20%的序列同一性)。这些酶主要由染色体和诱导基因编码,广泛存在于细菌中,特别是变形杆菌。分子鉴定主要基于三个催化基序(64SXSK, 150YXN, 315KTG),但已经鉴定了70多个保守氨基酸残基(≥90%),其中许多与这些催化基序接近。然而,一个微小的、系统发育上遥远的集群(包括军团菌属、慢生根瘤菌属和副原菌属的酶)的鉴定提出了β-内酰胺酶的C2亚类可能存在的问题,以前被确定为丝氨酸水解酶。在临床出现的广谱AmpC β-内酰胺酶(ESACs)的背景下,在这些酶的进化过程中,在体内和体外观察到的遗传修饰(点突变、插入或缺失)主要涉及Ω-和H-10/ r2环,这些环在属之间差异很大,在某些情况下,保守的三联体150YXN。此外,在机会致病性不动杆菌中,如鲍曼不动杆菌、钙酸不动杆菌、皮蒂不动杆菌和医院不动杆菌中,一些氨基酸残基的保守缺失(残基304-306缺失),以及在肺泡Hafnia和帕拉维不动杆菌中(残基289-290缺失),为天然ESACs的概念提供了支持。对β-内酰胺类(包括碳青霉烯类)和阿维巴坦等抑制剂的更高水平耐药性的出现是一个现实,因为负责的酶受到包括其他几个基因(ampR, ampD, ampG等)的复杂调控。因此,阻力机制的组合可能在起作用,包括生产过剩或渗透率的变化,以及孔隙的损失和/或外排系统的激活。
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Class C β-Lactamases: Molecular Characteristics.

Class C β-lactamases or cephalosporinases can be classified into two functional groups (1, 1e) with considerable molecular variability (≤20% sequence identity). These enzymes are mostly encoded by chromosomal and inducible genes and are widespread among bacteria, including Proteobacteria in particular. Molecular identification is based principally on three catalytic motifs (64SXSK, 150YXN, 315KTG), but more than 70 conserved amino-acid residues (≥90%) have been identified, many close to these catalytic motifs. Nevertheless, the identification of a tiny, phylogenetically distant cluster (including enzymes from the genera Legionella, Bradyrhizobium, and Parachlamydia) has raised questions about the possible existence of a C2 subclass of β-lactamases, previously identified as serine hydrolases. In a context of the clinical emergence of extended-spectrum AmpC β-lactamases (ESACs), the genetic modifications observed in vivo and in vitro (point mutations, insertions, or deletions) during the evolution of these enzymes have mostly involved the Ω- and H-10/R2-loops, which vary considerably between genera, and, in some cases, the conserved triplet 150YXN. Furthermore, the conserved deletion of several amino-acid residues in opportunistic pathogenic species of Acinetobacter, such as A. baumannii, A. calcoaceticus, A. pittii and A. nosocomialis (deletion of residues 304-306), and in Hafnia alvei and H. paralvei (deletion of residues 289-290), provides support for the notion of natural ESACs. The emergence of higher levels of resistance to β-lactams, including carbapenems, and to inhibitors such as avibactam is a reality, as the enzymes responsible are subject to complex regulation encompassing several other genes (ampR, ampD, ampG, etc.). Combinations of resistance mechanisms may therefore be at work, including overproduction or change in permeability, with the loss of porins and/or activation of efflux systems.

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来源期刊
Clinical Microbiology Reviews
Clinical Microbiology Reviews 医学-微生物学
CiteScore
54.20
自引率
0.50%
发文量
38
期刊介绍: Clinical Microbiology Reviews (CMR) is a journal that primarily focuses on clinical microbiology and immunology.It aims to provide readers with up-to-date information on the latest developments in these fields.CMR also presents the current state of knowledge in clinical microbiology and immunology.Additionally, the journal offers balanced and thought-provoking perspectives on controversial issues in these areas.
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