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Mapping paths: new approaches to dissect eukaryotic signaling circuitry

机译:映射路径:剖析真核信号传导电路的新方法

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摘要

Eukaryotic cells are precisely “wired” to coordinate changes in external and intracellular signals with corresponding adjustments in the output of complex and often interconnected signaling pathways. These pathways are critical in understanding cellular growth and function, and several experimental trends are emerging with applicability toward more fully describing the composition and topology of eukaryotic signaling networks. In particular, recent studies have implemented CRISPR/Cas-based screens in mouse and human cell lines for genes involved in various cell growth and disease phenotypes. Proteomic methods using mass spectrometry have enabled quantitative and dynamic profiling of protein interactions, revealing previously undiscovered complexes and allele-specific protein interactions. Methods for the single-cell study of protein localization and gene expression have been integrated with computational analyses to provide insight into cell signaling in yeast and metazoans. In this review, we present an overview of exemplary studies using the above approaches, relevant for the analysis of cell signaling and indeed, more broadly, for many modern biological applications.
机译:真核细胞被精确地“连接”起来,以协调外部信号和细胞内信号的变化,并相应调整复杂且经常相互连接的信号通路的输出。这些途径对于理解细胞的生长和功能至关重要,并且出现了一些实验趋势,可用于更全面地描述真核信号网络的组成和拓扑。特别地,最近的研究已经在小鼠和人类细胞系中实施了基于CRISPR / Cas的筛选,以寻找涉及各种细胞生长和疾病表型的基因。使用质谱的蛋白质组学方法已实现了蛋白质相互作用的定量和动态分析,揭示了以前未发现的复合物和等位基因特异性蛋白质相互作用。用于蛋白质定位和基因表达的单细胞研究方法已与计算分析相结合,以深入了解酵母和后生动物中的细胞信号传导。在这篇综述中,我们介绍了使用上述方法进行的示例性研究的概述,这些研究与细胞信号分析有关,实际上,更广泛地说,与许多现代生物学应用有关。

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