首页> 外文期刊>Journal of Cell Science >Adhesion-contractile balance in myocyte differentiation.
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Adhesion-contractile balance in myocyte differentiation.

机译:心肌细胞分化中的黏附收缩平衡。

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Tissue cells generally pull on their matrix attachments and balance a quasi-static contractility against adequate adhesion, but any correlation with and/or influence on phenotype are not yet understood. Here, we begin to demonstrate how differentiation state couples to actomyosin-based contractility through adhesion and substrate compliance. Myotubes are differentiated from myoblasts on collagen-patterned coverslips that allow linear fusion but prevent classic myotube branching. Post-fusion, myotubes adhere to the micro-strips but lock into a stress fiber-rich state and do not differentiate significantly further. In contrast, myotubes grown on top of such cells do progress through differentiation, exhibiting actomyosin striations within one week. A compliant adhesion to these lower cells is suggested to couple to contractility and accommodate the reorganization needed for upper cell striation. Contractility is assessed in these adherent cells by mechanically detaching one end of the myotubes. All myotubes, whether striated or not, shorten with an exponential decay. The cell-on-cell myotubes relax more, which implies a greater contractile stress. The non-muscle myosin II inhibitor blebbistatin inhibits relaxation for either case. Myotubes in culture are thus clearly prestressed by myosin II, and this contractility couples to substrate compliance and ultimately influences actomyosin striation.
机译:组织细胞通常会拉动它们的基质附着并平衡准静态收缩力与足够的粘附力,但是尚不了解与表型的任何相关性和/或对表型的影响。在这里,我们开始证明分化状态如何通过粘附和基质顺应性与基于肌动球蛋白的收缩力耦合。肌管与胶原蛋白盖玻片上的成肌细胞不同,后者可进行线性融合,但可防止经典的肌管分支。融合后,肌管粘附在微带上,但锁定为富含应力纤维的状态,并且不会进一步明显分化。相反,在此类细胞之上生长的肌管确实通过分化而进展,在一周内表现出肌动球蛋白条纹。建议对这些下部细胞的顺应性粘附力与收缩力耦合,并适应上部细胞条纹所需的重组。通过机械分离肌管的一端来评估这些贴壁细胞的收缩力。所有肌管,无论是否横纹,都会随着指数衰减而缩短。细胞间肌管更加松弛,这意味着更大的收缩应力。对于任何一种情况,非肌肉肌球蛋白II抑制剂blebbistatin都会抑制松弛。因此,培养物中的肌管显然受到肌球蛋白II的预应力,这种收缩力与底物依从性相关,最终影响肌动球蛋白的条纹。

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