Gaither L Alex
Novartis Institutes for Biomedical Research, Developmental & Molecular Pathways, Cambridge, MA 02139, USA.
Expert Rev Proteomics. 2007 Jun;4(3):411-9. doi: 10.1586/14789450.4.3.411.
Chemogenomics involves the combination of a compound's effect on biological targets together with modern genomics technologies. The merger of these two methodologies is creating a new way to screen for compound-target interactions, as well as map chemical and biological space in a parallel fashion. The challenge associated with mining complex databases has initiated the development of many novel in silico tools to profile and analyze data in a systematic way. The ability to analyze the combinatorial effects of chemical libraries on biological systems will aid the discovery of new therapeutic entities. Chemogenomics provides a tool for the rapid validation of novel targeted therapeutics, where a specific molecular target is modulated by a small molecule. Along with targeted therapies comes the ability to discovery pathway nodes where a single molecular target might be an essential component of more than one disease. Several disease areas will benefit directly from the chemogenomics approach, the most advanced being cancer. A genetic loss-of-function screen can be modulated in the presence of a compound to search for genes or pathways involved in the compound's activity. Several recent papers highlight how chemogenomics is changing with RNA interference-based screening and shaping the discovery of new targeted therapies. Together, chemical and RNA interference-based screens open the door for a new way to discovery disease-associated genes and novel targeted therapies.
化学基因组学涉及将化合物对生物靶点的作用与现代基因组学技术相结合。这两种方法的融合正在创造一种筛选化合物-靶点相互作用的新方法,同时以并行方式绘制化学和生物空间。与挖掘复杂数据库相关的挑战促使人们开发了许多新颖的计算机工具,以便系统地分析和分析数据。分析化学文库对生物系统的组合效应的能力将有助于发现新的治疗实体。化学基因组学为新型靶向疗法的快速验证提供了一种工具,其中特定的分子靶点由小分子调节。随着靶向疗法的出现,还能够发现单个分子靶点可能是多种疾病重要组成部分的通路节点。几个疾病领域将直接受益于化学基因组学方法,其中最先进的是癌症。可以在化合物存在的情况下调节基因功能丧失筛选,以寻找参与化合物活性的基因或通路。最近的几篇论文强调了化学基因组学如何随着基于RNA干扰的筛选而发生变化,并塑造了新的靶向疗法的发现。化学筛选和基于RNA干扰的筛选共同为发现疾病相关基因和新型靶向疗法开辟了一条新途径。