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On the link between cell cycle and infection of theAlphaproteobacterium Brucella abortus

机译:在细胞周期与感染之间的联系布鲁氏杆菌流产杆菌

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摘要

Bacteria of the Brucella genus are responsible for brucellosis, a worldwide zoonosis. These bacteria are known to have a peculiar intracellular trafficking, with a first long and non-proliferative endosomal stage and a second proliferation stage, often associated with its localization of the bacteria in the endoplasmic reticulum (ER). However, the status of the bacterial cell cycle during the non-proliferative phase was still unknown. In a recent study [Nat. Communic. 5:4366], we followed the cell cycle of B. abortus in culture and inside the host cells. In culture, B. abortus initiates the replication of its large chromosome before the small chromosome. The origin and terminator regions of these two chromosomes display distinct localization and dynamics within B. abortus. In HeLa cells and RAW264.7 macrophages, the bacteria in G1 (i.e. before the initiation of chromosomes replication) are preferentially found during the endosomal stage of the infection. During this period, growth is also arrested. The cell cycle arrest and resume during the B. abortus trafficking in host cell suggest that like the model Alphaproteobacterium Caulobacter crescentus, thesebacteria are able to block their cell cycle at the G1 phase when starvation issensed.
机译:布鲁氏菌属细菌负责布鲁氏菌病,这是一种世界范围的人畜共患病。已知这些细菌具有特异的细胞内运输,具有第一长且非增殖的内体阶段和第二增殖阶段,通常与细菌在内质网(ER)中的定位有关。但是,在非增殖期细菌细胞周期的状态仍然未知。在最近的一项研究中[Nat。交流。 5:4366],我们追踪了培养中和宿主细胞内流产双歧杆菌的细胞周期。在培养中,流产芽孢杆菌在小染色体之前开始其大染色体的复制。这两个染色体的起源和终止子区域在流产双歧杆菌中显示出不同的定位和动态。在HeLa细胞和RAW264.7巨噬细胞中,在感染的内体阶段优先发现G1中的细菌(即在染色体复制开始之前)。在此期间,增长也被阻止。细胞周期阻滞并在流产双歧杆菌进入宿主细胞的过程中恢复,这表明与模型Alphaproteobacterbacterium Caulobacter crescentus一样,这些饥饿时,细菌能够在G1期阻止其细胞周期感觉到。

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