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亲缘细胞裂解是一种激活铜绿假单胞菌抗菌途径的危险信号。

Kin cell lysis is a danger signal that activates antibacterial pathways of Pseudomonas aeruginosa.

作者信息

LeRoux Michele, Kirkpatrick Robin L, Montauti Elena I, Tran Bao Q, Peterson S Brook, Harding Brittany N, Whitney John C, Russell Alistair B, Traxler Beth, Goo Young Ah, Goodlett David R, Wiggins Paul A, Mougous Joseph D

机构信息

Department of Microbiology, University of Washington, Seattle, United States.

Department of Pharmaceutical Sciences, School of Pharmacy, University of Maryland, Baltimore, United States.

出版信息

Elife. 2015 Feb 2;4:e05701. doi: 10.7554/eLife.05701.

Abstract

The perception and response to cellular death is an important aspect of multicellular eukaryotic life. For example, damage-associated molecular patterns activate an inflammatory cascade that leads to removal of cellular debris and promotion of healing. We demonstrate that lysis of Pseudomonas aeruginosa cells triggers a program in the remaining population that confers fitness in interspecies co-culture. We find that this program, termed P. aeruginosa response to antagonism (PARA), involves rapid deployment of antibacterial factors and is mediated by the Gac/Rsm global regulatory pathway. Type VI secretion, and, unexpectedly, conjugative type IV secretion within competing bacteria, induce P. aeruginosa lysis and activate PARA, thus providing a mechanism for the enhanced capacity of P. aeruginosa to target bacteria that elaborate these factors. Our finding that bacteria sense damaged kin and respond via a widely distributed pathway to mount a complex response raises the possibility that danger sensing is an evolutionarily conserved process.

摘要

对细胞死亡的感知和反应是多细胞真核生物生命的一个重要方面。例如,损伤相关分子模式会激活一个炎症级联反应,导致细胞碎片的清除和愈合的促进。我们证明,铜绿假单胞菌细胞的裂解会在剩余群体中触发一个程序,该程序赋予种间共培养中的适应性。我们发现,这个被称为铜绿假单胞菌对抗反应(PARA)的程序涉及抗菌因子的快速部署,并由Gac/Rsm全局调控途径介导。VI型分泌,以及在竞争细菌中意外发现的接合型IV型分泌,诱导铜绿假单胞菌裂解并激活PARA,从而为铜绿假单胞菌增强靶向产生这些因子的细菌的能力提供了一种机制。我们的发现,即细菌感知受损同类并通过广泛分布的途径做出反应以产生复杂反应,增加了危险感知是一个进化上保守过程的可能性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/795b/4348357/40946ec7f11a/elife05701f001.jpg

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