链球菌toll样受体依赖性鉴别

S. Santos-Sierra, D. Golenbock, P. Henneke
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引用次数: 24

摘要

肺炎链球菌和无乳链球菌在幼儿中引起不同的传染病。同样地,这些细菌在体外引起了非常不同的宿主细胞反应。灭活的无乳链球菌在激活炎症细胞因子和上游信号中间体如MAP激酶JNK方面远远超过肺炎链球菌。两种链球菌的炎症反应都是由MyD88介导的,MyD88是toll样受体(tlr)的一种必需的适配器蛋白,尽管参与的特异性tlr尚未完全确定。此外,在对数生长过程中,肺炎链球菌释放与TLR4相互作用的溶肺素,而无乳链球菌释放与TLR2/6相互作用的二酰基化分子。这些可溶性细菌产物与其同源tlr的相互作用对于限制细菌传播和小鼠全身炎症至关重要。这可能部分归因于这些因素诱导的tlr介导的细胞凋亡。总之,相关链球菌种类在tlr介导的信号转导中诱导特异性事件。宿主细胞对这些细菌反应的比较分析揭示了JNK等分子是辅助败血症治疗的有价值靶点。
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Toll-like receptor-dependent discrimination of streptococci
Streptococcus pneumoniae and Streptococcus agalactiae cause distinct infectious diseases in small children. Similarly, these bacteria elicit very different host-cell responses in vitro. Inactivated S. agalactiae by far exceeds S. pneumoniae in the activation of inflammatory cytokines and upstream signaling intermediates such as the MAP kinase JNK. The inflammatory response to both Streptococcus spp. is mediated by MyD88, an essential adapter protein of Toll-like receptors (TLRs), although the specific TLRs that are involved have not been fully resolved. Furthermore, during logarithmic growth, S. pneumoniae releases pneumolysin that interacts with TLR4 whereas S. agalactiae releases diacylated molecules that interact with TLR2/6. Interaction of these soluble bacterial products with their cognate TLRs is critical for limiting bacterial dissemination and and systemic inflammation in mice. This might be due, in part, to TLR-mediated apoptosis induced by these factors. In conclusion related streptococcal species induce specific events in TLR-mediated signal transduction. Comparative analysis of the host-cell response to these bacteria reveals molecules such as JNK as valuable targets for adjunctive sepsis therapy.
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