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Localization and Expression of MreB in Vibrio parahaemolyticus under Different Stresses

机译:不同压力下副溶血性弧菌中MreB的定位和表达

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MreB, the homolog of eukaryotic actin, may play a vital role when prokaryotes cope with stress by altering their spatial organization, including their morphology, subcellular architecture, and localization of macromolecules. This study investigates the behavior of MreB in Vibrio parahaemolyticus under various stresses. The behavior of MreB was probed using a yellow fluorescent protein-MreB conjugate in merodiploid strain SC9. Under normal growth conditions, MreB formed helical filaments in exponential-phase cells. The shape of starved or stationary-phase cells changed from rods to small spheroids. The cells differentiated into the viable but nonculturable (VBNC) state with small spherical cells via a “swelling-waning” process. In all cases, drastic remodeling of the MreB cytoskeleton was observed. MreB helices typically were loosened and fragmented into short filaments, arcs, and spots in bacteria under these stresses. The disintegrated MreB exhibited a strong tendency to attach to the cytoplasmic membrane. The expression of mreB generally declined in bacteria in the stationary phase and under starvation but was upregulated during the initial periods of cold shock and VBNC state differentiation and decreased afterwards. Our findings demonstrated the behavior of MreB in the morphological changes of V. parahaemolyticus under intrinsic or extrinsic stresses and may have important implications for studying the cellular stress response and aging.
机译:当原核生物通过改变其空间组织(包括形态,亚细胞结构和大分子定位)来应对压力时,它是真核肌动蛋白的同源物,可能起着至关重要的作用。这项研究调查了在不同压力下,MreB在副溶血性弧菌中的行为。使用黄色荧光蛋白-MreB缀合物在类倍体菌株SC9中探测MreB的行为。在正常的生长条件下,MreB在指数相细胞中形成了螺旋状细丝。饥饿或静止相细胞的形状从杆状变为小球状。细胞通过“膨胀-消退”过程分化成小球形细胞而变为存活但不可培养的(VBNC)状态。在所有情况下,都观察到了MreB细胞骨架的急剧重塑。在这些压力下,MreB螺旋通常会散开并破碎成细丝,弧和细菌中的斑点。崩解的MreB表现出强烈的附着于细胞质膜的趋势。在静止期和饥饿状态下,mreB的表达通常在细菌中下降,但在冷休克和VBNC状态分化的初始阶段被上调,此后下降。我们的研究结果表明内在或外在压力下,MreB在副溶血性弧菌的形态变化中的行为,可能对研究细胞应激反应和衰老具有重要意义。

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