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Probing the mechanical landscape-new insights into podosome architecture and mechanics

机译:探讨机械景观新见解进入小船体架构和力学

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Podosomes are dynamic adhesion structures formed constitutively by macrophages, dendritic cells and osteoclasts and transiently in a wide variety of cells, such as endothelial cells and megakaryocytes. They mediate numerous functions, including cell-matrix adhesion, extracellular matrix degradation, mechanosensing and cell migration. Podosomes present as micron-sized F-actin cores surrounded by an adhesive ring of integrins and integrin-actin linkers, such as talin and vinculin. In this Review, we highlight recent research that has considerably advanced our understanding of the complex architecture-function relationship of podosomes by demonstrating that the podosome ring actually consists of discontinuous nanoclusters and that the actin network in between podosomes comprises two subsets of unbranched actin filaments, lateral and dorsal podosome-connecting filaments. These lateral and dorsal podosome-connecting filaments connect the core and ring of individual podosomes and adjacent podosomes, respectively. We also highlight recent insights into the podosome cap as a novel regulatory module of actomyosin-based contractility. We propose that these newly identified features are instrumental for the ability of podosomes to generate protrusion forces and to mechanically probe their environment. Furthermore, these new results point to an increasing complexity of podosome architecture and have led to our current view of podosomes as autonomous force generators that drive cell migration.
机译:Podosomes是由巨噬细胞,树突细胞和骨细胞和瞬时形成的动态粘附结构,且瞬时在各种细胞中,例如内皮细胞和巨核细胞。它们介导多种功能,包括细胞基质粘附,细胞外基质降解,机械静脉和细胞迁移。作为由整合蛋白的粘合环包围的微米尺寸的F-actin芯,如山雀和vinculin。在这篇综述中,我们突出了最近的研究,这使得我们通过证明摩托车环ring实际由不连续的纳米能器组成的统治性群体的复杂建筑功能关系,并且肌动蛋白网络在Podosomes之间包括两个非支链肌动蛋白细丝的亚组,横向和背侧孔组合体连接细丝。这些横向和背侧孔体组连接的细丝分别连接单个甲瘤和相邻的podosomes的核心和环。我们还突出了最近的洞察力,作为Podosome Cap作为基于Actomyosin的合成性的新型监管模块。我们建议这些新发现的特征是赋予Podosomes产生突出力和机械探测其环境的能力的乐器。此外,这些新的结果表明了对阵摩托车体系结构的复杂性,并导致我们目前的Podosomes视图作为驱动细胞迁移的自主力发生器。

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