Palalay Jessica-Jae S, Simsek Ahmet N, Sabass Benedikt, Sanfilippo Joseph E
Department of Biochemistry, University of Illinois at Urbana-Champaign, Urbana, IL, USA, 61801.
Department of Veterinary Sciences, Faculty of Veterinary Medicine and Faculty of Physics, Institute for Infectious Diseases and Zoonoses, Ludwig-Maximilians-Universität München, Munich, Germany, 80752.
bioRxiv. 2023 May 8:2023.05.08.539440. doi: 10.1101/2023.05.08.539440.
Fluid flow is thought to prevent bacterial adhesion, but some bacteria use adhesins with catch bond properties to enhance adhesion under high shear forces. However, many studies on bacterial adhesion either neglect the influence of shear force or use shear forces that are not typically found in natural systems. In this study, we use microfluidics and single-cell imaging to examine how the human pathogen interacts with surfaces when exposed to shear forces typically found in the human body (0.1 pN to 10 pN). Through cell tracking, we demonstrate that the angle between the cell and the surface predicts if a cell will depart the surface. We discover that at lower shear forces, type IV pilus retraction tilts cells away from the surface, promoting surface departure. Conversely, we show that higher shear forces counterintuitively enhance adhesion by counteracting type IV pilus retraction-dependent cell tilting. Thus, our results reveal that exhibits behavior reminiscent of a catch bond, without having a specific adhesin that is enhanced by force. Instead, couples type IV pilus dynamics and cell geometry to tune adhesion to its mechanical environment, which likely provides a benefit in dynamic host environments.
流体流动被认为可以防止细菌黏附,但一些细菌利用具有捕获键特性的黏附素来增强在高剪切力下的黏附。然而,许多关于细菌黏附的研究要么忽略了剪切力的影响,要么使用的剪切力并非自然系统中常见的。在本研究中,我们使用微流控技术和单细胞成像来研究人类病原体在暴露于人体中常见的剪切力(0.1皮牛顿至10皮牛顿)时如何与表面相互作用。通过细胞追踪,我们证明细胞与表面之间的角度可以预测细胞是否会离开表面。我们发现,在较低的剪切力下,IV型菌毛收缩会使细胞倾斜远离表面,促进表面脱离。相反,我们表明,更高的剪切力通过抵消IV型菌毛收缩依赖性细胞倾斜,反而增强了黏附。因此,我们的结果表明,[病原体名称未给出]表现出类似于捕获键的行为,而没有因力而增强的特定黏附素。相反,[病原体名称未给出]将IV型菌毛动力学和细胞几何形状结合起来,以调节对其机械环境的黏附,这可能在动态宿主环境中提供益处。