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The Screw-Like Movement of a Gliding Bacterium Is Powered by Spiral Motion of Cell-Surface Adhesins

机译:细胞表面粘附素的螺旋运动为滑动细菌的螺旋运动提供动力

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摘要

Flavobacterium johnsoniae, a rod-shaped bacterium, glides over surfaces at speeds of ∼2 μm/s. The propulsion of a cell-surface adhesin, SprB, is known to enable gliding. We used cephalexin to generate elongated cells with irregular shapes and followed their displacement in three dimensions. These cells rolled about their long axes as they moved forward, following a right-handed trajectory. We coated gold nanoparticles with an SprB antibody and tracked them in three dimensions in an evanescent field where the nanoparticles appeared brighter when they were closer to the glass. The nanoparticles followed a right-handed spiral trajectory on the surface of the cell. Thus, if SprB were to adhere to the glass rather than to a nanoparticle, the cell would move forward along a right-handed trajectory, as observed, but in a direction opposite to that of the nanoparticle.
机译:杆状细菌约翰逊黄杆菌以约2μm/ s的速度在表面上滑动。已知细胞表面粘附素SprB的推进能够滑动。我们使用头孢氨苄产生了不规则形状的细长细胞,并在三个维度上追踪了它们的位移。这些单元沿着右手轨迹向前移动时绕着长轴滚动。我们用SprB抗体包被了金纳米颗粒,并在an逝场中对其进行了三维跟踪,当纳米颗粒靠近玻璃时,纳米颗粒显得更亮。纳米粒子在细胞表面遵循右旋螺旋形轨迹。因此,如果将SprB粘附到玻璃而不是纳米颗粒上,则该细胞将沿着右手轨迹向前移动,如观察到的,但方向与纳米颗粒相反。

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