首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >PNAS Plus: The polarity of myxobacterial gliding is regulated by direct interactions between the gliding motors and the Ras homolog MglA
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PNAS Plus: The polarity of myxobacterial gliding is regulated by direct interactions between the gliding motors and the Ras homolog MglA

机译:PNAS Plus:黏菌滑行的极性受滑行马达与Ras同源MglA之间直接相互作用的调节

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摘要

Gliding motility in Myxococcus xanthus is powered by flagella stator homologs that move in helical trajectories using proton motive force. The Frz chemosensory pathway regulates the cell polarity axis through MglA, a Ras family GTPase; however, little is known about how MglA establishes the polarity of gliding, because the gliding motors move simultaneously in opposite directions. Here we examined the localization and dynamics of MglA and gliding motors in high spatial and time resolution. We determined that MglA localizes not only at the cell poles, but also along the cell bodies, forming a decreasing concentration gradient toward the lagging cell pole. MglA directly interacts with the motor protein AglR, and the spatial distribution of AglR reversals is positively correlated with the MglA gradient. Thus, the motors moving toward lagging cell poles are less likely to reverse, generating stronger forward propulsion. MglB, the GTPase-activating protein of MglA, regulates motor reversal by maintaining the MglA gradient. Our results suggest a mechanism whereby bacteria use Ras family proteins to modulate cellular polarity.
机译:粘液球菌的滑翔运动由鞭毛定子同源物提供动力,该同源物利用质子原动力沿螺旋形轨迹运动。 Frz化学感应途径通过Ras家族GTPase MglA调节细胞极性轴;但是,关于MglA如何建立滑行极性的知识很少,因为滑行电机会同时沿相反方向移动。在这里,我们以高空间和时间分辨率检查了MglA和滑行电机的定位和动力学。我们确定,MglA不仅位于细胞极,而且沿着细胞体,朝着滞后的细胞极形成递减的浓度梯度。 MglA直接与运动蛋白AglR相互作用,并且AglR逆转的空间分布与MglA梯度呈正相关。因此,朝滞后的电池极移动的电动机不太可能反转,从而产生更强的向前推进力。 MglB,MglA的GTPase激活蛋白,通过维持MglA梯度来调节运动逆转。我们的结果提出了一种机制,细菌可利用该机制利用Ras家族蛋白调节细胞极性。

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