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TLRs 在分枝杆菌发病机制中的作用:非黑即白,还是亦黑亦白?

TLRs in Mycobacterial Pathogenesis: Black and White or Shades of Gray.

机构信息

Immunobiology Laboratory, Department of Zoology, University of Delhi, Delhi, 110 007, India.

Department of Life Sciences, South Asian University, Chanakyapuri, New Delhi, India.

出版信息

Curr Microbiol. 2021 Jun;78(6):2183-2193. doi: 10.1007/s00284-021-02488-8. Epub 2021 Apr 12.

DOI:10.1007/s00284-021-02488-8
PMID:33844035
Abstract

Toll-like receptors (TLRs) play critical role in the innate recognition of pathogens besides orchestrating innate and adaptive immune responses. These receptors exhibit exquisite specificity for different pathogens or their products and, through a complex network of signalling, generate appropriate immune responses. TLRs induce both pro- and anti-inflammatory signals depending on interactions with the adapter molecules thereby impacting the outcome of infection. Hence, TLR signalling ought to be stringently regulated to avoid harmful effects on the host. Mycobacteria express antigens which are sensed by TLRs leading to activation of various signalling molecules important for initiating the death of infected cells and containment of pathogens. Conversely, it also utilizes TLRs for immune evasion and persistence. Due to the enormous diversity in the repertoire of virulence traits expressed by mycobacteria, genetic variations in TLRs often impair the host's ability to respond to mycobacterial-stress, affecting health and disease manifestations. Thus, understanding TLR signalling is of great importance for insights into host-mycobacterial interactions and designing effective measures for controlling the spread and persistence of the bacterium.

摘要

Toll 样受体 (TLRs) 除了协调先天和适应性免疫反应外,还在对病原体的先天识别中发挥关键作用。这些受体对不同的病原体或其产物表现出高度的特异性,并通过复杂的信号网络产生适当的免疫反应。TLRs 根据与衔接分子的相互作用诱导促炎和抗炎信号,从而影响感染的结果。因此,TLR 信号应该受到严格调节,以避免对宿主造成有害影响。分枝杆菌表达被 TLRs 识别的抗原,导致激活各种信号分子,这些信号分子对于启动感染细胞的死亡和病原体的控制非常重要。相反,它也利用 TLRs 进行免疫逃避和持续存在。由于分枝杆菌表达的毒力特征的巨大多样性,TLRs 的遗传变异常常损害宿主对分枝杆菌应激的反应能力,影响健康和疾病表现。因此,了解 TLR 信号对于深入了解宿主-分枝杆菌相互作用以及设计控制细菌传播和持续存在的有效措施非常重要。

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