细胞的社会网络:相互作用组绘图的最新进展。

Sebastian Charbonnier, Oriol Gallego, Anne-Claude Gavin
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引用次数: 99

摘要

蛋白质很少单独起作用。生物分子间的相互作用是所有生物功能的核心。以人类为例,对生物分子网络的干扰常常导致疾病。蛋白质-蛋白质和蛋白质-代谢物的相互作用传统上是逐一研究的。近年来,在采用合适的工具对生物分子相互作用进行全局分析方面取得了重大进展。在这里,我们回顾这一套强大的技术,使大规模交互数据集的数量呈指数级增长。这些新技术已经有助于更全面地绘制与人类病理相关的几种途径,为治疗靶点提供更广泛的选择。模式生物的全基因组规模分析揭示了真核生物蛋白质组的一般组织原理。我们还回顾了过去在较小规模上用于定量结合常数和控制生物分子相互作用的热力学参数的生化方法。这些技术适应于(半)定量的生物分子相互作用的大规模测量是一个重要的挑战。
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The social network of a cell: recent advances in interactome mapping.

Proteins very rarely act in isolation. Biomolecular interactions are central to all biological functions. In human, for example, interference with biomolecular networks often lead to disease. Protein-protein and protein-metabolite interactions have traditionally been studied one by one. Recently, significant progresses have been made in adapting suitable tools for the global analysis of biomolecular interactions. Here we review this suite of powerful technologies that enable an exponentially growing number of large-scale interaction datasets. These new technologies have already contributed to a more comprehensive cartography of several pathways relevant to human pathologies, offering a broader choice for therapeutic targets. Genome-wide scale analyses in model organisms reveal general organizational principles of eukaryotic proteomes. We also review the biochemical approaches that have been used in the past on a smaller scale for the quantification of the binding constant and the thermodynamics parameters governing biomolecular interaction. The adaptation of these technologies to the large-scale measurement of biomolecular interactions in (semi-)quantitative terms represents an important challenge.

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The social network of a cell: recent advances in interactome mapping. Gene expression microarray data analysis demystified. The application of low shear modeled microgravity to 3-D cell biology and tissue engineering. Ethnomedicines and ethnomedicinal phytophores against herpesviruses. Free radical processes in green tea polyphenols (GTP) investigated by electron paramagnetic resonance (EPR) spectroscopy.
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