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Translation repressors, an RNA helicase, and developmental cues control RNP phase transitions during early development

机译:翻译阻遏物,RNA解旋酶和发育线索控制RNP在早期发育过程中的相变

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摘要

Like membranous organelles, large-scale coassembly of macromolecules can organize functions in cells. Ribonucleoproteins (RNPs) can form liquid or solid aggregates, but control and consequences of these RNP states in living, developing tissue are poorly understood. Here, we show that regulated RNP factor interactions drive transitions among diffuse, semiliquid, or solid states to modulate RNP sorting and exchange in the Caenorhabditis elegans oocyte cytoplasm. Translation repressors induce anintrinsic capacity of RNP components to coassemble into either large semiliquids or solid lattices, whereas a conserved RNA helicase prevents polymerization into nondynamic solids. Developmental cues dramatically alter both fluidity and sorting within large RNP assemblies, inducing a transition from RNP segregation in quiescent oocytes to dynamic exchange in the early embryo. Therefore, large-scale organization of gene expression extends to the cytoplasm, where regulation of supramolecular states imparts specific patterns of RNP dynamics.
机译:像膜细胞器一样,大分子的大规模组装可以组织细胞中的功能。核糖核蛋白(RNP)可以形成液体或固体聚集体,但是人们对这些RNP状态在活的,正在发育的组织中的控制和后果知之甚少。在这里,我们表明调节的RNP因子相互作用驱动弥散,半液体或固态之间的转变,以调节秀丽隐杆线虫卵母细胞细胞质中的RNP排序和交换。翻译阻遏物诱导RNP组分的内在能力共组装成大的半液体或固体晶格,而保守的RNA解旋酶则阻止聚合成非动态固体。发育线索显着改变了大型RNP组件内的流动性和排序,从而导致从静态卵母细胞中的RNP分离过渡到早期胚胎的动态交换。因此,基因表达的大规模组织扩展到细胞质,其中超分子状态的调节赋予RNP动力学的特定模式。

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