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蛋白质组学微阵列技术的最新进展。

Recent advances in microarray technologies for proteomics.

作者信息

Sun Hongyan, Chen Grace Y J, Yao Shao Q

机构信息

Department of Biology and Chemistry, City University of Hong Kong, 83 Tat Chee Avenue, Kowloon, Hong Kong, PRC.

出版信息

Chem Biol. 2013 May 23;20(5):685-99. doi: 10.1016/j.chembiol.2013.04.009.

Abstract

Proteins are fundamental components of all living systems and critical drivers of biological functions. The large-scale study of proteins, their structures and functions, is defined as proteomics. This systems-wide analysis leads to a more comprehensive view of the intricate signaling transduction pathways that proteins engage in and improves the overall understanding of the complex processes supporting the living systems. Over the last two decades, the development of high-throughput analytical tools, such as microarray technologies, capable of rapidly analyzing thousands of protein-functioning and protein-interacting events, has fueled the growth of this important field. Herein, we review the most recent advancements in microarray technologies, with a special focus on peptide microarray, small molecule microarray, and protein microarray. These technologies have become prominent players in proteomics and have made significant changes to the landscape of life science and biomedical research. We will elaborate on their performance, advantages, challenges, and future directions.

摘要

蛋白质是所有生命系统的基本组成部分,也是生物功能的关键驱动因素。对蛋白质及其结构与功能进行大规模研究,被定义为蛋白质组学。这种全系统分析能够更全面地了解蛋白质所参与的复杂信号转导通路,并增进对支持生命系统的复杂过程的整体认识。在过去二十年中,诸如微阵列技术等高通量分析工具的发展,能够快速分析数千个蛋白质功能和蛋白质相互作用事件,推动了这一重要领域的发展。在此,我们回顾微阵列技术的最新进展,特别关注肽微阵列、小分子微阵列和蛋白质微阵列。这些技术已成为蛋白质组学中的重要力量,并给生命科学和生物医学研究领域带来了重大变革。我们将详细阐述它们的性能、优势、挑战及未来发展方向。

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