核受体信号通路定量实时PCR分析方案。

Nuclear receptor signaling Pub Date : 2003-01-01 Epub Date: 2003-12-23 DOI:10.1621/nrs.01012
Angie L Bookout, David J Mangelsdorf
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引用次数: 418

摘要

核受体信号图谱(NURSA)的一个主要目标是阐明核受体在体内的生化和生理作用。表征个体受体及其靶基因在不同药理学条件和基因型下的全动物组织表达模式是这一目标的重要组成部分。在这里,我们描述了一种高通量定量、实时、反转录PCR (QPCR)方法,用于测量特定转录物在给定组织或细胞类型中的相对表达水平,以及在药理学或基因型操作后特定转录物表达的相对变化。该方法为核受体领域的研究人员提供了一种标准化的方案。它是一种简化的、易于使用的方案,用于快速、高通量地测量大量样本中的转录物水平。随后的报告将为整个小鼠和人类核受体超家族提供有效的引物和探针序列信息。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Quantitative real-time PCR protocol for analysis of nuclear receptor signaling pathways.

Quantitative real-time PCR protocol for analysis of nuclear receptor signaling pathways.

Quantitative real-time PCR protocol for analysis of nuclear receptor signaling pathways.

Quantitative real-time PCR protocol for analysis of nuclear receptor signaling pathways.

A major goal of the Nuclear Receptor Signaling Atlas (NURSA) is to elucidate the biochemical and physiological roles of nuclear receptors in vivo. Characterizing the tissue expression pattern of individual receptors and their target genes in whole animals under various pharmacological conditions and genotypes is an essential component of this aim. Here we describe a high-throughput quantitative, real-time, reverse-transcription PCR (QPCR) method for the measurement of both the relative level of expression of a particular transcript in a given tissue or cell type, and the relative change in expression of a particular transcript after pharmacologic or genotypic manipulation. This method is provided as a standardized protocol for those in the nuclear receptor field. It is meant to be a simplified, easy to use protocol for the rapid, high-throughput measurement of transcript levels in a large number of samples. A subsequent report will provide validated primer and probe sequence information for the entire mouse and human nuclear receptor superfamily.

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