Department of Biological Sciences, Columbia University, New York, NY 10027, USA.
J Cell Sci. 2010 Feb 1;123(Pt 3):413-23. doi: 10.1242/jcs.058297. Epub 2010 Jan 12.
Maintaining a physical connection across cytoplasm is crucial for many biological processes such as matrix force generation, cell motility, cell shape and tissue development. However, in the absence of stress fibers, the coherent structure that transmits force across the cytoplasm is not understood. We find that nonmuscle myosin-II (NMII) contraction of cytoplasmic actin filaments establishes a coherent cytoskeletal network irrespective of the nature of adhesive contacts. When NMII activity is inhibited during cell spreading by Rho kinase inhibition, blebbistatin, caldesmon overexpression or NMIIA RNAi, the symmetric traction forces are lost and cell spreading persists, causing cytoplasm fragmentation by membrane tension that results in 'C' or dendritic shapes. Moreover, local inactivation of NMII by chromophore-assisted laser inactivation causes local loss of coherence. Actin filament polymerization is also required for cytoplasmic coherence, but microtubules and intermediate filaments are dispensable. Loss of cytoplasmic coherence is accompanied by loss of circumferential actin bundles. We suggest that NMIIA creates a coherent actin network through the formation of circumferential actin bundles that mechanically link elements of the peripheral actin cytoskeleton where much of the force is generated during spreading.
细胞质内的物理连接对于许多生物过程至关重要,如基质力的产生、细胞运动、细胞形状和组织发育。然而,在没有应力纤维的情况下,传递细胞质力的连贯结构尚不清楚。我们发现,细胞质肌动蛋白丝的非肌肉肌球蛋白-II(NMII)收缩建立了一个连贯的细胞骨架网络,而不考虑粘附接触的性质。当 Rho 激酶抑制、blebbistatin、钙调蛋白过表达或 NMIIA RNAi 抑制细胞扩展期间 NMII 的活性时,对称的牵引力会丢失,细胞扩展会持续下去,导致细胞质因膜张力而碎片化,从而导致“C”形或树突状形状。此外,通过光亲和性激光失活局部失活 NMII 会导致局部丧失相干性。肌动蛋白丝聚合对于细胞质的相干性也是必需的,但微管和中间丝是可有可无的。细胞质相干性的丧失伴随着环形肌动蛋白束的丧失。我们认为,NMIIA 通过形成环绕肌动蛋白束来创建一个连贯的肌动蛋白网络,这些肌动蛋白束机械地连接到外周肌动蛋白细胞骨架的元件上,在扩展过程中大部分力就是在此产生的。