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模块为何重要。

Why modules matter.

机构信息

Ben May Department for Cancer Research and the Committee on Cancer Biology, The University of Chicago, Chicago, IL 60637, USA.

出版信息

FEBS Lett. 2012 Aug 14;586(17):2572-4. doi: 10.1016/j.febslet.2012.04.049. Epub 2012 May 3.

Abstract

The serendipitous discovery of the SH2 domain unleashed a sea-change in our conceptual molecular understanding of protein function. The reductionist approaches that followed from the recognition of modular protein interaction domains transformed our understanding of cellular signal transduction systems, how they evolve and how they may be manipulated. We now recognize thousands of conserved protein modules - many of which have been described in structure and function, implicated in disease, or underlie targeted therapeutics. The reductionist study of isolated protein modules has enabled the reconstruction of the protein interaction networks that underlie cellular signalling. Protein modules themselves are becoming tools to probe cellular activation states and identify key interactions hubs in both normal and diseased cells and the concept of protein modularity is central to the field of synthetic biology. This brief word of introduction serves to highlight the historical impact of the very powerful idea of protein modules and sets the stage for the exciting on-going discoveries discussed in this issue.

摘要

SH2 结构域的偶然发现彻底改变了我们对蛋白质功能的分子理解。随后对模块化蛋白相互作用结构域的深入研究,改变了我们对细胞信号转导系统的认识,包括它们的进化方式以及可能的干预手段。我们现在已经鉴定了数千个保守的蛋白模块,其中许多模块在结构和功能上已经被描述,与疾病相关,或成为靶向治疗的基础。对孤立蛋白模块的还原论研究使我们能够重建细胞信号转导的蛋白相互作用网络。蛋白模块本身正成为探测细胞激活状态的工具,并在正常和患病细胞中识别关键的相互作用枢纽,蛋白模块的概念是合成生物学领域的核心。简短的引言突出了蛋白模块这一非常强大理念的历史影响,并为本期讨论的令人兴奋的正在进行的发现奠定了基础。

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