Fonseca Érica L, Vicente Ana Carolina
Laboratório de Genética Molecular de Microrganismos, Instituto Oswaldo Cruz/FIOCRUZ, Avenida Brasil 4365, Manguinhos, Rio de Janeiro 21040-900, Brazil.
Microorganisms. 2022 Jan 20;10(2):224. doi: 10.3390/microorganisms10020224.
Integrons are considered hot spots for bacterial evolution, since these platforms allow one-step genomic innovation by capturing and expressing genes that provide advantageous novelties, such as antibiotic resistance. The acquisition and shuffling of gene cassettes featured by integrons enable the population to rapidly respond to changing selective pressures. However, in order to avoid deleterious effects and fitness burden, the integron activity must be tightly controlled, which happens in an elegant and elaborate fashion, as discussed in detail in the present review. Here, we aimed to provide an up-to-date overview of the complex regulatory networks that permeate the expression and functionality of integrons at both transcriptional and translational levels. It was possible to compile strong shreds of evidence clearly proving that these versatile platforms include functions other than acquiring and expressing gene cassettes. The well-balanced mechanism of integron expression is intricately related with environmental signals, host cell physiology, fitness, and survival, ultimately leading to adaptation on the demand.
整合子被认为是细菌进化的热点,因为这些平台通过捕获和表达提供有利新特性(如抗生素抗性)的基因,实现一步式基因组创新。整合子所具有的基因盒的获取和重排使菌群能够迅速应对不断变化的选择压力。然而,为了避免有害影响和适应性负担,整合子的活性必须受到严格控制,正如本综述中详细讨论的那样,这种控制以一种精妙而复杂的方式进行。在这里,我们旨在提供一个最新的概述,介绍在转录和翻译水平上渗透整合子表达和功能的复杂调控网络。有可能收集到有力的证据,清楚地证明这些多功能平台除了获取和表达基因盒之外还具有其他功能。整合子表达的平衡机制与环境信号、宿主细胞生理学、适应性和生存密切相关,最终导致按需适应。