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Nanoscale Pulling of Type IV Pili Reveals Their Flexibility and Adhesion to Surfaces over Extended Lengths of the Pili

机译:IV型菌毛的纳米级拉伸揭示了其在菌丝延长长度上的柔韧性和对表面的粘附力

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摘要

Type IV pili (T4P) are very thin protein filaments that extend from and retract into bacterial cells, allowing them to interact with and colonize a broad array of chemically diverse surfaces. The physical aspects that allow T4P to mediate adherence to many different surfaces remain unclear. Atomic force microscopy (AFM) nanoscale pulling experiments were used to measure the mechanical properties of T4P of a mutant strain of Pseudomonas aeruginosa PAO1 unable to retract its T4P. After adhering bacteria to the end of an AFM cantilever and approaching surfaces of mica, gold, or polystyrene, we observed adhesion of the T4P to all of the surfaces. Pulling of single and multiple T4P on retraction of the cantilever from the surfaces could be described using the worm-like chain (WLC) model. Distinct peaks in the measured distributions of the best-fit values of the persistence length Lp on two different surfaces provide strong evidence for close-packed bundling of very flexible T4P. In addition, we observed force plateaus indicating that adhesion of the T4P to both hydrophilic and hydrophobic surfaces occurs along extended lengths of the T4P. These data shed new light, to our knowledge, on T4P flexibility and support a low-affinity, high-avidity adhesion mechanism that mediates bacteria-surface interactions.
机译:IV型菌毛(T4P)是非常细的蛋白质细丝,可从细菌细胞延伸并缩回其中,从而使它们能够与多种化学多样的表面相互作用并在其中定殖。尚不清楚允许T4P介导对许多不同表面的粘附的物理方面。原子力显微镜(AFM)纳米拉实验用于测量铜绿假单胞菌PAO1不能恢复其T4P突变株的T4P的机械性能。将细菌粘附到AFM悬臂末端并接近云母,金或聚苯乙烯的表面后,我们观察到T4P粘附到所有表面。可以使用蠕虫状链(WLC)模型描述在悬臂从表面缩回时单个和多个T4P的拉动。在两个不同表面上的持久长度Lp的最佳拟合值的测量分布中的明显峰值,为非常灵活的T4P的紧密包装捆绑提供了有力的证据。此外,我们观察到了平稳的状态,表明T4P对亲水性表面和疏水性表面的粘附都沿着T4P的延伸长度发生。据我们所知,这些数据为T4P灵活性提供了新的思路,并支持介导细菌与表面相互作用的低亲和力,高亲和力粘附机制。

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