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嗜肺军团菌CsrA是传播特性的关键阻遏物和复制的激活物。

Legionella pneumophila CsrA is a pivotal repressor of transmission traits and activator of replication.

作者信息

Molofsky Ari B, Swanson Michele S

机构信息

Department of Microbiology and Immunology, University of Michigan Medical School, Ann Arbor, MI 48109-0620, USA.

出版信息

Mol Microbiol. 2003 Oct;50(2):445-61. doi: 10.1046/j.1365-2958.2003.03706.x.

Abstract

Legionella pneumophila can replicate inside amoebae and also alveolar macrophages to cause Legionnaires' Disease in susceptible hosts. When nutrients become limiting, a stringent-like response coordinates the differentiation of L. pneumophila to a transmissive form, a process mediated by the two-component system LetA/S and the sigma factors RpoS and FliA. Here we demonstrate that the broadly conserved RNA binding protein CsrA is a global repressor of L. pneumophila transmission phenotypes and an essential activator of intracellular replication. By analysing csrA expression and the phenotypes of csrA single and double mutants and a strain that expresses csrA constitutively, we demonstrate that, during replication in broth, CsrA represses every post-exponential phase phenotype examined, including cell shape shortening, motility, pigmentation, stress resistance, sodium sensitivity, cytotoxicity and efficient macrophage infection. At the transition to the post-exponential phase, LetA/S relieves CsrA repression to induce transmission phenotypes by both FliA-dependent and -independent pathways. For L. pneumophila to avoid lysosomal degradation in macrophages, CsrA repression must be relieved by LetA/S before phagocytosis; conversely, before intracellular bacteria can replicate, CsrA repression must be restored. The reciprocal regulation of replication and transmission exemplified by CsrA likely enhances the fitness of microbes faced with fluctuating environments.

摘要

嗜肺军团菌可在变形虫以及肺泡巨噬细胞内复制,从而在易感宿主中引发军团病。当营养物质变得有限时,一种严谨反应样机制会协调嗜肺军团菌向传播型的分化,这一过程由双组分系统LetA/S以及σ因子RpoS和FliA介导。在此,我们证明广泛保守的RNA结合蛋白CsrA是嗜肺军团菌传播表型的全局阻遏物以及细胞内复制的必需激活物。通过分析csrA的表达、csrA单突变体和双突变体以及组成型表达csrA的菌株的表型,我们证明,在肉汤中复制期间,CsrA会抑制所检测的每个指数后期表型,包括细胞形状缩短、运动性、色素沉着、应激抗性、钠敏感性、细胞毒性以及高效的巨噬细胞感染。在向指数后期转变时,LetA/S会解除CsrA的抑制作用,以通过FliA依赖性和非依赖性途径诱导传播表型。为使嗜肺军团菌避免在巨噬细胞中被溶酶体降解,在吞噬作用之前LetA/S必须解除CsrA的抑制作用;相反,在细胞内细菌能够复制之前,必须恢复CsrA的抑制作用。CsrA所例证的复制与传播之间的相互调节可能会增强微生物在波动环境中的适应性。

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