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液体-液相分离数据库的数据整合突出了 LLPS 驱动因素的浓度和剂量敏感性。

Integration of Data from Liquid-Liquid Phase Separation Databases Highlights Concentration and Dosage Sensitivity of LLPS Drivers.

机构信息

VIB-VUB Center for Structural Biology, Flemish Institute for Biotechnology, 1050 Brussels, Belgium.

Structural Biology Brussels, Vrije Universiteit Brussel, 1050 Brussels, Belgium.

出版信息

Int J Mol Sci. 2021 Mar 16;22(6):3017. doi: 10.3390/ijms22063017.

Abstract

Liquid-liquid phase separation (LLPS) is a molecular process that leads to the formation of membraneless organelles, representing functionally specialized liquid-like cellular condensates formed by proteins and nucleic acids. Integrating the data on LLPS-associated proteins from dedicated databases revealed only modest agreement between them and yielded a high-confidence dataset of 89 human LLPS drivers. Analysis of the supporting evidence for our dataset uncovered a systematic and potentially concerning difference between protein concentrations used in a good fraction of the in vitro LLPS experiments, a key parameter that governs the phase behavior, and the proteomics-derived cellular abundance levels of the corresponding proteins. Closer scrutiny of the underlying experimental data enabled us to offer a sound rationale for this systematic difference, which draws on our current understanding of the cellular organization of the proteome and the LLPS process. In support of this rationale, we find that genes coding for our human LLPS drivers tend to be dosage-sensitive, suggesting that their cellular availability is tightly regulated to preserve their functional role in direct or indirect relation to condensate formation. Our analysis offers guideposts for increasing agreement between in vitro and in vivo studies, probing the roles of proteins in LLPS.

摘要

液-液相分离(LLPS)是一种导致无膜细胞器形成的分子过程,代表由蛋白质和核酸组成的功能特化的液态细胞凝聚物。整合来自专用数据库的与 LLPS 相关蛋白的数据,仅发现它们之间存在适度的一致性,并产生了一个高可信度的数据集,其中包含 89 个人类 LLPS 驱动蛋白。对我们数据集的支持证据的分析揭示了一个系统的、潜在令人担忧的差异,即在相当一部分体外 LLPS 实验中使用的蛋白浓度与对应蛋白的蛋白质组学衍生的细胞丰度水平之间存在差异。对基础实验数据的更仔细审查使我们能够为这种系统差异提供合理的解释,这借鉴了我们对蛋白质组细胞组织和 LLPS 过程的当前理解。为了支持这一论点,我们发现编码我们人类 LLPS 驱动蛋白的基因往往对剂量敏感,这表明它们的细胞可用性受到严格调控,以维持其在直接或间接与凝聚物形成相关的功能作用。我们的分析为增加体外和体内研究之间的一致性提供了指导,探索了蛋白质在 LLPS 中的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dec5/8002189/b1fe8f04bed3/ijms-22-03017-g001.jpg

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