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细菌分泌系统招募异源底物进行跨王国易位。

Recruitment of heterologous substrates by bacterial secretion systems for transkingdom translocation.

机构信息

Instituto de Biomedicina y Biotecnología de Cantabria (IBBTEC), Universidad de Cantabria-CSIC-SODERCAN, Santander, Spain.

出版信息

Front Cell Infect Microbiol. 2023 Mar 6;13:1146000. doi: 10.3389/fcimb.2023.1146000. eCollection 2023.

Abstract

Bacterial secretion systems mediate the selective exchange of macromolecules between bacteria and their environment, playing a pivotal role in processes such as horizontal gene transfer or virulence. Among the different families of secretion systems, Type III, IV and VI (T3SS, T4SS and T6SS) share the ability to inject their substrates into human cells, opening up the possibility of using them as customized injectors. For this to happen, it is necessary to understand how substrates are recruited and to be able to engineer secretion signals, so that the transmembrane machineries can recognize and translocate the desired substrates in place of their own. Other factors, such as recruiting proteins, chaperones, and the degree of unfolding required to cross through the secretion channel, may also affect transport. Advances in the knowledge of the secretion mechanism have allowed heterologous substrate engineering to accomplish translocation by T3SS, and to a lesser extent, T4SS and T6SS into human cells. In the case of T4SS, transport of nucleoprotein complexes adds a bonus to its biotechnological potential. Here, we review the current knowledge on substrate recognition by these secretion systems, the many examples of heterologous substrate translocation by engineering of secretion signals, and the current and future biotechnological and biomedical applications derived from this approach.

摘要

细菌分泌系统介导了细菌与其环境之间大分子的选择性交换,在水平基因转移或毒力等过程中发挥着关键作用。在不同的分泌系统家族中,III 型、IV 型和 VI 型(T3SS、T4SS 和 T6SS)都具有将其底物注入人体细胞的能力,这为将它们用作定制注入器开辟了可能性。要实现这一点,有必要了解底物是如何被招募的,并能够对分泌信号进行工程设计,以便跨膜机器能够识别并替代自身的目标底物进行转运。其他因素,如招募蛋白、伴侣蛋白以及穿过分泌通道所需的展开程度,也可能会影响运输。对分泌机制的认识的进步使得通过 T3SS 以及在较小程度上通过 T4SS 和 T6SS 将异源底物工程化转入人体细胞成为可能。在 T4SS 的情况下,核蛋白复合物的运输为其生物技术潜力增添了优势。在这里,我们回顾了这些分泌系统对底物的识别的最新知识,通过工程化分泌信号进行异源底物转运的许多例子,以及由此方法衍生的当前和未来的生物技术和生物医学应用。

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