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Intrinsically disordered proteins in overcrowded milieu: Membrane-less organelles, phase separation, and intrinsic disorder

机译:内在无序的蛋白质过度拥挤的Milieu:薄膜的细胞器,相分离和内在病症

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摘要

Although the cellular interior is crowded with various biological macromolecules, the distribution of these macromolecules is highly inhomogeneous. Eukaryotic cells contain numerous proteinaceous membrane-less organelles (PMLOs), which are condensed liquid droplets formed as a result of the reversible and highly controlled liquid-liquid phase transitions. The interior of these cellular bodies represents an overcrowded milieu, since their protein concentrations are noticeably higher than those of the crowded cytoplasm and nucleoplasm. PMLOs are different in size, shape, and composition, and almost invariantly contain intrinsically disordered proteins (e.g., elF4B and TDP43 in stress granules, TTP in P-bodies, RDE-12 in nuage, RNG105 in RNA granules, centrins in centrosomes, NOPP140 in nucleoli, SRSF4 in nuclear speckles, Saf-B in nuclear stress bodies, NOLC1 in Cajal bodies, CBP in PML nuclear bodies, SOX9 in paraspeckles, KSRP in perinucleolar compartment, and hnRNPG and Sam68 in Sam68 nuclear body, to name a few), which indicates that the formation of these phase separated droplets is crucially dependent on intrinsic disorder. The goal of this review is to show the roles of intrinsic disorder in the magic behind biological liquid-liquid phase transitions that lead to the formation of PMLOs.
机译:虽然细胞内部挤满了各种生物大分子,但这些大分子的分布非常不均匀。真核细胞含有许多蛋白质膜 - 较多的细胞器(PMLO),其是由于可逆且高度控制的液态相转变而形成的凝液液滴。这些细胞体的内部代表过度拥挤的Milieu,因为它们的蛋白质浓度明显高于拥挤的细胞质和核状的那些。 PMLOS的大小,形状和组成不同,并且几乎不变地含有本质上紊乱的蛋白质(例如,ELF4B和TDP43,在应激颗粒中,对骨骼的RDE-12,RNA颗粒中的RNG105,Centrosomes中的中环,Nopp140在核仁,SRSF4在核斑点中,SAF-B在CAJAL体内的NOLC1,PML核体中的CBP,SOX9在ParaSPECHLE,KSRP在临核盒中,以及SAM68核心中的HNRNPG和SAM68,名称几个)这表明这些相分离的液滴的形成是至关重要的,这是关键的疾病。本综述的目标是展示生物液 - 液相过渡的魔法中的内在疾病的作用,导致形成pMLOS的形成。

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