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A molecular rack and pinion actuates a cell-surface adhesin and enables bacterial gliding motility

机译:分子架和小齿轮致动细胞表面粘附素并使得能够进行细菌滑动运动

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The gliding bacterium Flavobacterium johnsoniae is known to have an adhesin, SprB, that moves along the cell surface on a spiral track. Following viscous shear, cells can be tethered by the addition of an anti-SprB antibody, causing spinning at 3 Hz. Labeling the type 9 secretion system (T9SS) with a YFP fusion of GldL showed a yellow fluorescent spot near the rotation axis, indicating that the motor driving the motion is associated with the T9SS. The distance between the rotation axis and the track (90 nm) was determined after adding a Cy3 label for SprB. A rotary motor spinning a pinion of radius 90 nm at 3 Hz would cause a spot on its periphery to move at 1.5 μm/s, the gliding speed. We suggest the pinion drives a flexible tread that carries SprB along a track fixed to the cell surface. Cells glide when this adhesin adheres to the solid substratum.
机译:已知johnsoniae的滑动细菌意大利杆菌具有粘附素SPRB,其沿着螺旋轨道上的电池表面移动。在粘性剪切之后,可以通过添加抗SPRB抗体来束缚细胞,导致3 Hz旋转。用GLDL的YFP融合标记9型分泌系统(T9S)在旋转轴附近显示黄色荧光点,表明驱动运动与T9SS相关联。在添加SPRB的CY3标签之后,确定旋转轴和轨道(90nm)之间的距离。在3 Hz的旋转电动机旋转半径90nm的小齿轮将导致其周边上的斑点以1.5μm/ s,滑动速度。我们建议小齿轮驱动柔性胎面,沿着固定到电池表面的轨道携带SPRB。当该粘合剂粘附到固体基质上时,细胞滑动。

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