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Epithelial tricellular junctions act as interphase cell shape sensors to orient mitosis

机译:上皮三细胞连接充当相间细胞形状传感器来定向有丝分裂

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摘要

The orientation of cell division along the long axis of the interphase cell-the century-old Hertwig's rule-has profound roles in tissue proliferation, morphogenesis, architecture and mechanics(1,2). In epithelial tissues, the shape of the interphase cell is influenced by cell adhesion, mechanical stress, neighbour topology, and planar polarity pathways(3-12). At mitosis, epithelial cells usually adopt a rounded shape to ensure faithful chromosome segregation and to promote morphogenesis(1). The mechanisms underlying interphase cell shape sensing in tissues are therefore unknown. Here we show that in Drosophila epithelia, tricellular junctions (TCJs) localize force generators, pulling on astral microtubules and orienting cell division via the Dynein-associated protein Mud independently of the classical Pins/G alpha(i) pathway. Moreover, as cells round up during mitosis, TCJs serve as spatial landmarks, encoding information about interphase cell shape anisotropy to orient division in the rounded mitotic cell. Finally, experimental and simulation data show that shape and mechanical strain sensing by the TCJs emerge from a general geometric property of TCJ distributions in epithelial tissues. Thus, in addition to their function as epithelial barrier structures, TCJs serve as polarity cues promoting geometry and mechanical sensing in epithelial tissues.
机译:沿相间细胞长轴方向的细胞分裂方向-有着百年历史的赫特维格定律-在组织增殖,形态发生,结构和力学方面具有重要作用(1,2)。在上皮组织中,相间细胞的形状受细胞粘附,机械应力,邻近拓扑和平面极性途径的影响(3-12)。在有丝分裂时,上皮细胞通常采用圆形,以确保忠实的染色体分离并促进形态发生(1)。因此,尚不清楚组织中相间细胞形状感测的基础机制。在这里,我们显示在果蝇上皮细胞中,三细胞接头(TCJs)定位力产生器,通过与达因宁相关的蛋白Mud牵拉星体微管并定向细胞分裂,而与经典的Pins / G alpha(i)途径无关。此外,随着有丝分裂期间细胞的聚集,TCJ充当空间界标,编码有关相间细胞形状各向异性的信息,以定向圆形有丝分裂细胞中的分裂。最后,实验和模拟数据表明,TCJ的形状和机械应变感测是由上皮组织中TCJ分布的一般几何特性产生的。因此,TCJ除了起上皮屏障结构的作用外,还充当极性提示,促进上皮组织的几何形状和机械感测。

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  • 来源
    《Nature》 |2016年第7591期|495-498|共4页
  • 作者单位

    Inst Curie, CNRS UMR 3215, INSERM U934, Polar,Div & Morphogenesis Team, 26 Rue Ulm, F-75248 Paris 05, France;

    Inst Curie, CNRS UMR 3215, INSERM U934, Polar,Div & Morphogenesis Team, 26 Rue Ulm, F-75248 Paris 05, France;

    Inst Curie, CNRS UMR 3215, INSERM U934, Polar,Div & Morphogenesis Team, 26 Rue Ulm, F-75248 Paris 05, France;

    Inst Curie, CNRS UMR 3215, INSERM U934, Polar,Div & Morphogenesis Team, 26 Rue Ulm, F-75248 Paris 05, France|Univ Paris 11, CNRS UMR 3348, Inst Curie, Batiment 110, F-91405 Orsay, France;

    Inst Curie, CNRS UMR 3215, INSERM U934, Polar,Div & Morphogenesis Team, 26 Rue Ulm, F-75248 Paris 05, France;

    Inst Jacques Monod, CNRS UMR7592, 15 Rue Helene Brion, F-75205 Paris 13, France;

    Inst Curie, CNRS UMR 3215, INSERM U934, Polar,Div & Morphogenesis Team, 26 Rue Ulm, F-75248 Paris 05, France;

    Inst Curie, CNRS UMR 3215, INSERM U934, Polar,Div & Morphogenesis Team, 26 Rue Ulm, F-75248 Paris 05, France;

    Inst Curie, CNRS UMR 3215, INSERM U934, Polar,Div & Morphogenesis Team, 26 Rue Ulm, F-75248 Paris 05, France|Lincolns Inn Fields Lab, Francis Crick Inst, 44 Lincolns Inn Fields, London WC2A 3LY, England;

    Inst Curie, CNRS UMR 3215, INSERM U934, Polar,Div & Morphogenesis Team, 26 Rue Ulm, F-75248 Paris 05, France|Inst Jean Pierre Bourgin, INRA, UMR 1318, ERL CNRS 3559,Saclay Plant Sci,RD10, Versailles, France;

    Inst Curie, CNRS UMR 3215, INSERM U934, Polar,Div & Morphogenesis Team, 26 Rue Ulm, F-75248 Paris 05, France|Univ Michigan, Dept Phys, Ann Arbor, MI 48109 USA;

    Inst Jacques Monod, CNRS UMR7592, 15 Rue Helene Brion, F-75205 Paris 13, France;

    Inst Curie, CNRS UMR 3215, INSERM U934, Polar,Div & Morphogenesis Team, 26 Rue Ulm, F-75248 Paris 05, France;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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