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Cortical Contractility Triggers a Stochastic Switch to Fast Amoeboid Cell Motility

机译:皮质收缩性将随机开关触发到快速的作物细胞运动

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3D amoeboid cell migration is central to many developmental and disease-related processes such as cancer metastasis. Here, we identify a unique prototypic amoeboid cell migration mode in early zebrafish embryos, termed stable-bleb migration. Stable-bleb cells display an invariant polarized balloon-like shape with exceptional migration speed and persistence. Progenitor cells can be reversibly transformed into stable-bleb cells irrespective of their primary fate and motile characteristics by increasing myosin II activity through biochemical or mechanical stimuli. Using a combination of theory and experiments, we show that, in stable-bleb cells, cortical contractility fluctuations trigger a stochastic switch into amoeboid motility, and a positive feedback between cortical flows and gradients in contractility maintains stable-bleb cell polarization. We further show that rearward cortical flows drive stable-bleb cell migration in various adhesive and non-adhesive environments, unraveling a highly versatile amoeboid migration phenotype.
机译:3D作物泛细胞迁移是许多发育和疾病相关过程的核心,例如癌症转移。在这里,我们在早期斑马鱼胚胎中识别独特的原型作物细胞迁移模式,称为稳定的BLEB迁移。稳定的BLEB电池显示出具有卓越迁移速度和持久性的不变极化气球状形状。无论通过生化或机械刺激增加肌蛋白II活性,祖细胞都可以可逆地转化为稳定的BLEB细胞。使用理论和实验的组合,我们表明,在稳定的BLEB细胞中,皮质收缩力波动将随机开关触发到Amoeboid运动中,并且在收缩性之间的皮质流量和梯度之间的正反馈保持稳定的膨胀细胞极化。我们进一步表明,后皮质流动在各种粘合剂和非粘合性环境中驱动稳定的BLEB细胞迁移,解开高通用的作物迁移表型。

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