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Unraveling regulation and new components of human P-bodies through a protein interaction framework and experimental validation.

机译:通过蛋白质相互作用框架和实验验证来揭示人类P体的调控和新成分。

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The cellular factors involved in mRNA degradation and translation repression can aggregate into cytoplasmic domains known as GW bodies or mRNA processing bodies (P-bodies). However, current understanding of P-bodies, especially the regulatory aspect, remains relatively fragmentary. To provide a framework for studying the mechanisms and regulation of P-body formation, maintenance, and disassembly, we compiled a list of P-body proteins found in various species and further grouped both reported and predicted human P-body proteins according to their functions. By analyzing protein-protein interactions of human P-body components, we found that many P-body proteins form complex interaction networks with each other and with other cellular proteins that are not recognized as P-body components. The observation suggests that these other cellular proteins may play important roles in regulating P-body dynamics and functions. We further used siRNA-mediated gene knockdown and immunofluorescence microscopy to demonstrate the validity of our in silico analyses. Our combined approach identifies new P-body components and suggests that protein ubiquitination and protein phosphorylation involving 14-3-3 proteins may play critical roles for post-translational modifications of P-body components in regulating P-body dynamics. Our analyses provide not only a global view of human P-body components and their physical interactions but also a wealth of hypotheses to help guide future research on the regulation and function of human P-bodies.
机译:参与mRNA降解和翻译抑制的细胞因子可以聚集到称为GW体或mRNA处理体(P体)的胞质域中。但是,目前对P体的了解,尤其是对监管方面的了解仍然相对零碎。为了提供研究P体形成,维持和分解的机制和调控的框架,我们汇总了在各种物种中发现的P体蛋白列表,并根据其功能将报告的和预测的人P体蛋白进一步分组。通过分析人P体成分的蛋白质-蛋白质相互作用,我们发现许多P体蛋白质彼此之间以及与未被识别为P体成分的其他细胞蛋白质形成复杂的相互作用网络。观察结果表明,这些其他细胞蛋白可能在调节P体动力学和功能中起重要作用。我们进一步使用siRNA介导的基因敲低和免疫荧光显微镜来证明我们的计算机分析的有效性。我们的组合方法确定了新的P体成分,并表明涉及14-3-3蛋白的蛋白泛素化和蛋白磷酸化可能在调节P体动力学中对P体组分的翻译后修饰起关键作用。我们的分析不仅提供了人类P体成分及其物理相互作用的全局视图,而且还提供了大量假设,以帮助指导有关人类P体调控和功能的未来研究。

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