Ovaa Huib, van Leeuwen Fred
Division of Cellular Biochemistry, Netherlands Cancer Institute, Amsterdam.
Chembiochem. 2008 Dec 15;9(18):2913-9. doi: 10.1002/cbic.200800454.
Understanding disease-associated cellular defects at a molecular level is critical for the development of pharmacological intervention strategies. Recent breakthroughs in microarray and sequencing technologies have provided powerful tools to rapidly reveal the cellular defects caused by alterations in the genome or transcriptome. However, the picture of how the cellular proteome is affected in a disease state and how changes in DNA and RNA affect protein function is often incomplete. This is perhaps not surprising because the functions of proteins are not just determined by primary sequence and abundance, but are under the control of many regulatory mechanisms. Here, we highlight several recent advances in proteomics technologies that are being developed to generate comprehensive human proteome maps and discuss them in the context of strategies that have been developed in simple model organisms. Chemical biology will play a critical role in drafting a map of the proteome with functional information. Chemical genetic approaches that use high-throughput small molecule screening have resulted in the public availability of small molecule datasets through web interfaces such as PubChem. With such approaches, the opportunities to investigate disease and to explore the proteome with chemistry are rapidly increasing. In addition, new tools are being developed to probe protein function. Here we highlight recent developments in chemical biology and the exciting opportunities that are arising with them.
在分子水平上理解与疾病相关的细胞缺陷对于药理学干预策略的开发至关重要。微阵列和测序技术的最新突破提供了强大的工具,可快速揭示基因组或转录组改变所导致的细胞缺陷。然而,关于疾病状态下细胞蛋白质组如何受到影响以及DNA和RNA的变化如何影响蛋白质功能的情况往往并不完整。这或许并不令人惊讶,因为蛋白质的功能不仅由一级序列和丰度决定,还受许多调控机制的控制。在此,我们重点介绍蛋白质组学技术的几项最新进展,这些技术正在被开发以生成全面的人类蛋白质组图谱,并在简单模式生物中已开发的策略背景下进行讨论。化学生物学将在绘制带有功能信息的蛋白质组图谱中发挥关键作用。使用高通量小分子筛选的化学遗传学方法已通过诸如PubChem等网络界面使小分子数据集可供公众使用。通过此类方法,利用化学研究疾病和探索蛋白质组的机会正在迅速增加。此外,正在开发新的工具来探测蛋白质功能。在此我们重点介绍化学生物学的最新进展以及随之而来的令人兴奋的机会。