Uttamchandani Mahesh, Wang Jun, Yao Shao Q
Department of Biological Sciences, National University of Singapore, Singapore.
Mol Biosyst. 2006 Jan;2(1):58-68. doi: 10.1039/b513935j. Epub 2005 Nov 25.
Advances in genomics and proteomics have opened up new possibilities for the rapid functional assignment and global characterization of proteins. Large-scale studies have accelerated this effort by using tools and strategies that enable highly parallel analysis of huge repertoires of biomolecules. Organized assortments of molecules on arrays have furnished a robust platform for rapid screening, lead discovery and molecular characterization. The essential advantage of microarray technology is attributed to the massive throughput attainable, coupled with a highly miniaturized platform--potentially driving discovery both as an analytical and diagnostic tool. The scope of microarrays has in recent years expanded impressively. Virtually every biological component--from diverse small molecules and macromolecules (such as DNA and proteins) to entire living cells--has been harnessed on microarrays in attempts to dissect the bewildering complexity of life. Herein we highlight strategies that address challenges in proteomics using microarrays of immobilized proteins and small molecules. Of specific interest are the techniques involved in stably immobilizing proteins and chemical libraries on slide surfaces as well as novel strategies developed to profile activities of proteins on arrays. As a rapidly maturing technology, microarrays pave the way forward in high-throughput proteomic exploration.
基因组学和蛋白质组学的进展为蛋白质的快速功能分配和全面表征开辟了新的可能性。大规模研究通过使用能够对大量生物分子进行高度并行分析的工具和策略,加速了这一进程。阵列上分子的有序排列为快速筛选、先导化合物发现和分子表征提供了一个强大的平台。微阵列技术的主要优势在于可实现大规模通量,以及高度小型化的平台——这有可能使其作为一种分析和诊断工具推动发现进程。近年来,微阵列的应用范围得到了显著扩展。几乎每一种生物成分——从各种小分子和大分子(如DNA和蛋白质)到整个活细胞——都已被应用于微阵列,以试图剖析生命中令人困惑的复杂性。在此,我们重点介绍利用固定化蛋白质和小分子微阵列应对蛋白质组学挑战的策略。特别值得关注的是将蛋白质和化学文库稳定固定在玻片表面所涉及的技术,以及为分析阵列上蛋白质的活性而开发的新策略。作为一项迅速成熟的技术,微阵列为高通量蛋白质组学探索铺平了道路。