差异基因表达的高通量分析。

J P Carulli, M Artinger, P M Swain, C D Root, L Chee, C Tulig, J Guerin, M Osborne, G Stein, J Lian, P T Lomedico
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引用次数: 0

摘要

阐明与生物过程相关的基因表达变化是生物学中的一个核心问题。分子生物学和计算生物学的进步导致了分析差异基因表达的强大、高通量方法的发展。这些工具为从细胞和发育生物学到药物开发和药物基因组学等学科开辟了新的机会。本文综述了五种常用的差异基因表达方法的特点:表达序列标签(EST)测序、cDNA微阵列杂交、减法克隆、差异显示和基因表达序列分析(SAGE)。通过发现与成骨细胞分化相关的新基因,说明了EST测序和微阵列杂交的应用。应用减法克隆技术鉴定体内受转录因子pax-6调控的基因。这些和其他例子说明了基因组学在发现生物学中重要的新基因方面的力量,这些基因也代表了药物开发的新目标。这篇综述的中心主题是,每一种识别差异表达基因的方法都是有用的,实验背景和对差异表达基因的后续评估是决定成功的关键特征。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
High throughput analysis of differential gene expression.

Elucidation of the changes in gene expression associated with biological processes is a central problem in biology. Advances in molecular and computational biology have led to the development of powerful, high-throughput methods for the analysis of differential gene expression. These tools have opened up new opportunities in disciplines ranging from cell and developmental biology to drug development and pharmacogenomics. In this review, the attributes of five commonly used differential gene expression methods are discussed: expressed sequence tag (EST) sequencing, cDNA microarray hybridization, subtractive cloning, differential display, and serial analysis of gene expression (SAGE). The application of EST sequencing and microarray hybridization is illustrated by the discovery of novel genes associated with osteoblast differentiation. The application of subtractive cloning is presented as a tool to identify genes regulated in vivo by the transcription factor pax-6. These and other examples illustrate the power of genomics for discovering novel genes that are important in biology and which also represent new targets for drug development. The central theme of the review is that each of the approaches to identifying differentially expressed genes is useful, and that the experimental context and subsequent evaluation of differentially expressed genes are the critical features that determine success.

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