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首页> 外文期刊>Frontiers in Molecular Biosciences >Alteration of Membrane Fluidity or Phospholipid Composition Perturbs Rotation of MreB Complexes in Escherichia coli
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Alteration of Membrane Fluidity or Phospholipid Composition Perturbs Rotation of MreB Complexes in Escherichia coli

机译:膜流动性或磷脂组合物的改变在大肠杆菌中MREB复合物旋转

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摘要

Gram-negative bacteria such as Escherichia coli are surrounded by inner and outer membranes and peptidoglycan in between, protecting the cells from turgor pressure and maintaining cell shape. The Rod complex, which synthesizes peptidoglycan, is composed of various proteins such as a cytoplasmic protein MreB, a transmembrane protein RodZ, and a transpeptidase PBP2. The Rod complex is a highly motile complex that rotates around the long axis of a cell. Previously, we had reported that anionic phospholipids (aPLs; phosphatidylglycerol and cardiolipin) play a role in the localization of MreB. In this study, we identified that cells lacking aPLs slow down Rod complex movement. We also found that at higher temperatures, the speed of movement increased in cells lacking aPLs, suggesting that membrane fluidity is important for movement. Consistent with this idea, Rod complex motion was reduced, and complex formation was disturbed in the cells depleted of FabA or FabB, which are essential for unsaturated fatty acid synthesis. These cells also showed abnormal morphology. Therefore, membrane fluidity is important for maintaining cell shape through the regulation of Rod complex formation and motility.
机译:诸如大肠杆菌的革兰氏阴性细菌被内膜和外膜和肽聚糖之间围绕,介于两者之间,保护细胞免受Turgor压力和保持细胞形状。合成肽聚糖的棒复合物由各种蛋白质,例如细胞质蛋白Mreb,跨膜蛋白rodz和透肽酶Pbp2组成。棒配合物是高度电机复合物,其围绕电池的长轴旋转。以前,我们报道了阴离子磷脂(APLS;磷脂酰甘油和心肺脂)在MREB的定位发挥作用。在这项研究中,我们确定缺乏APLS慢筒复合运动的细胞。我们还发现,在较高的温度下,在缺乏APL的细胞中的运动速度增加,表明膜流动性对于运动很重要。与该思想一致,降低了棒复合运动,并且在Faba或Fabb的细胞中干扰了复杂的形成,这对于不饱和脂肪酸合成是必不可少的。这些细胞也显示出异常的形态。因此,膜流动性对于通过调节棒复合物形成和运动性来保持细胞形状是重要的。

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