Clifford P. Brangwynne, Christian R. Eckmann, David S. Courson, Agata Rybarska, Carsten Hoege, Jöbin Gharakhani, Frank Jülicher, Anthony A. Hyman
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引用次数: 1963
Abstract
In sexually reproducing organisms, embryos specify germ cells, which ultimately generate sperm and eggs. In Caenorhabditis elegans, the first germ cell is established when RNA and protein-rich P granules localize to the posterior of the one-cell embryo. Localization of P granules and their physical nature remain poorly understood. Here we show that P granules exhibit liquid-like behaviors, including fusion, dripping, and wetting, which we used to estimate their viscosity and surface tension. As with other liquids, P granules rapidly dissolved and condensed. Localization occurred by a biased increase in P granule condensation at the posterior. This process reflects a classic phase transition, in which polarity proteins vary the condensation point across the cell. Such phase transitions may represent a fundamental physicochemical mechanism for structuring the cytoplasm.
在有性生殖的生物体中,胚胎指定生殖细胞,最终产生精子和卵子。在秀丽隐杆线虫(Caenorhabditis elegans)中,当富含 RNA 和蛋白质的 P 颗粒定位到单细胞胚胎的后部时,第一个生殖细胞就形成了。人们对 P 颗粒的定位及其物理特性仍然知之甚少。在这里,我们发现 P 颗粒表现出类似液体的行为,包括融合、滴落和润湿,我们利用这些行为来估算它们的粘度和表面张力。与其他液体一样,P 颗粒会迅速溶解和凝结。P 颗粒在后部的凝结偏向性增加,从而发生定位。这一过程反映了典型的相变,极性蛋白改变了整个细胞的凝结点。这种相变可能代表了细胞质结构的基本物理化学机制。
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