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Hydrodynamic property of the cytoplasm is sufficient to mediate cytoplasmic streaming in the Caenorhabiditis elegans embryo

机译:细胞质的流体力学特性足以介导秀丽隐杆线虫胚胎中的细胞质流

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摘要

Cytoplasmic streaming is a type of intracellular transport widely seen in nature. Cytoplasmic streaming in Caenorhabditis elegans at the one-cell stage is bidirectional; the flow near the cortex (“cortical flow”) is oriented toward the anterior, whereas the flow in the central region (“cytoplasmic flow”) is oriented toward the posterior. Both cortical flow and cytoplasmic flow depend on non-muscle-myosin II (NMY-2), which primarily localizes in the cortex. The manner in which NMY-2 proteins drive cytoplasmic flow in the opposite direction from remote locations has not been fully understood. In this study, we demonstrated that the hydrodynamic properties of the cytoplasm are sufficient to mediate the forces generated by the cortical myosin to drive bidirectional streaming throughout the cytoplasm. We quantified the flow velocities of cytoplasmic streaming using particle image velocimetry (PIV) and conducted a three-dimensional hydrodynamic simulation using the moving particle semiimplicit method. Our simulation quantitatively reconstructed the quantified flow velocity distribution resolved through PIV analysis. Furthermore, our PIV analyses detected microtubule-dependent flows during the pronuclear migration stage. These flows were reproduced via hydrodynamic interactions between moving pronuclei and the cytoplasm. The agreement of flow dynamics in vivo and in simulation indicates that the hydrodynamic properties of the cytoplasm are sufficient to mediate cytoplasmic streaming in C. elegans embryos.
机译:细胞质流是自然界中广泛见到的一种细胞内转运。秀丽隐杆线虫在单细胞阶段的细胞质流是双向的。皮质附近的血流(“皮层血流”)朝向前侧,而中心区域的血流(“胞浆血流”)朝向后侧。皮层流和细胞质流都依赖于主要位于皮层的非肌肉肌球蛋白II(NMY-2)。 NMY-2蛋白从远端位置沿相反方向驱动细胞质流的方式尚未完全了解。在这项研究中,我们证明了细胞质的流体动力学特性足以介导由皮质肌球蛋白产生的力,从而驱动整个细胞质双向流动。我们使用粒子图像测速仪(PIV)量化了细胞质流的流速,并使用移动粒子半隐式方法进行了三维流体动力学模拟。我们的模拟定量重建了通过PIV分析解决的定量流速分布。此外,我们的PIV分析在原核迁移阶段检测到了微管依赖性血流。这些流动是通过移动的原核和细胞质之间的水动力相互作用而复制的。体内和模拟中流动动力学的一致性表明,细胞质的流体力学特性足以介导秀丽隐杆线虫胚胎中的细胞质流。

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