首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Integrin adhesion drives the emergent polarization of active cytoskeletal stresses to pattern cell delamination
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Integrin adhesion drives the emergent polarization of active cytoskeletal stresses to pattern cell delamination

机译:整合素粘附驱动主动细胞骨架应力的出现极化,从而使细胞分层

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摘要

Tissue patterning relies on cellular reorganization through the interplay between signaling pathways and mechanical stresses. Their integration and spatiotemporal coordination remain poorly understood. Here we investigate the mechanisms driving the dynamics of cell delamination, diversely deployed to extrude dead cells or specify distinct cell fates. We show that a local mechanical stimulus (subcellular laser perturbation) releases cellular prestress and triggers cell delamination in the amnioserosa during Drosoph-ila dorsal closure, which, like spontaneous delamination, results in the rearrangement of nearest neighbors around the delaminating cell into a rosette. We demonstrate that a sequence of "emergent cytoskeletal polarities" in the nearest neighbors (directed myosin flows, lamellipodial growth, polarized actomyosin collars, micro-tubule asters), triggered by the mechanical stimulus and dependent on, integrin adhesion, generate active stresses that drive delamination. We interpret these patterns in the language of active gels as asters formed by active force dipoles involving surface and body stresses generated by each cell and liken delamination to mechanical yielding that ensues when these stresses exceed a threshold. We suggest that differential contributions of adhesion, cytoskeletal, and external stresses must underlie differences in spatial pattern.
机译:组织模式依赖于信号通路与机械应激之间相互作用的细胞重组。他们的整合和时空协调仍然知之甚少。在这里,我们研究了驱动细胞分层动力学的机制,这些机制被多样化地部署以挤出死细胞或指定不同的细胞命运。我们表明,局部机械刺激(亚细胞激光摄动)释放细胞预应力,并在Drosoph-ila背闭合期间在羊膜中触发细胞分层,就像自发分层一样,导致分层细胞周围最近的邻居重排成花环。我们证明了由机械刺激触发并依赖于整联蛋白粘附的最近邻居中的“新生细胞骨架极性”序列(定向肌球蛋白血流,层状脂质生长,极化的肌动蛋白环,微管紫苑),产生并激活了驱动驱动力的主动应力分层。我们用活性凝胶的语言将这些模式解释为由涉及各个细胞产生的表面和身体应力的主动力偶极子形成的翠菊,并将分层比作机械屈服,当这些应力超过阈值时,机械屈服随之发生。我们建议粘附,细胞骨架和外部压力的不同贡献必须在空间格局的差异基础上。

著录项

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  • 作者单位

    Department of Biological Sciences, Tata Institute of Fundamental Research, Mumbai 400005, India;

    National Center for Biological Sciences, Bangalore 560065, India;

    National Center for Biological Sciences, Bangalore 560065, India;

    National Center for Biological Sciences, Bangalore 560065, India,Raman Research Institute, Bangalore 560080, India;

    National Center for Biological Sciences, Bangalore 560065, India,Mechanobiology Institute and Department of Biological Sciences, National University of Singapore, Singapore 117411;

    Department of Biological Sciences, Tata Institute of Fundamental Research, Mumbai 400005, India;

  • 收录信息 美国《科学引文索引》(SCI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    cell extrusion; cell mechanics; tissue dynamics; wound-healing;

    机译:细胞挤压;细胞力学;组织动力学;伤口愈合;
  • 入库时间 2022-08-18 00:40:52

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