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T细胞激活过程中的基因表达调控:mRNA转录和mRNA稳定性的交替调节

Control of gene expression during T cell activation: alternate regulation of mRNA transcription and mRNA stability.

作者信息

Cheadle Chris, Fan Jinshui, Cho-Chung Yoon S, Werner Thomas, Ray Jill, Do Lana, Gorospe Myriam, Becker Kevin G

机构信息

Basic Research Laboratory, Center for Cancer Research, National Cancer Institute, NIH, 9000 Rockville Pike, Bethesda, MD 20892, USA.

出版信息

BMC Genomics. 2005 May 20;6:75. doi: 10.1186/1471-2164-6-75.

Abstract

BACKGROUND

Microarray technology has become highly valuable for identifying complex global changes in gene expression patterns. The effective correlation of observed changes in gene expression with shared transcription regulatory elements remains difficult to demonstrate convincingly. One reason for this difficulty may result from the intricate convergence of both transcriptional and mRNA turnover events which, together, directly influence steady-state mRNA levels.

RESULTS

In order to investigate the relative contribution of gene transcription and changes in mRNA stability regulation to standard analyses of gene expression, we used two distinct microarray methods which individually measure nuclear gene transcription and changes in polyA mRNA gene expression. Gene expression profiles were obtained from both polyA mRNA (whole-cell) and nuclear run-on (newly transcribed) RNA across a time course of one hour following the activation of human Jurkat T cells with PMA plus ionomycin. Comparative analysis revealed that regulation of mRNA stability may account for as much as 50% of all measurements of changes in polyA mRNA in this system, as inferred by the absence of any corresponding regulation of nuclear gene transcription activity for these groups of genes. Genes which displayed dramatic elevations in both mRNA and nuclear run-on RNA were shown to be inhibited by Actinomycin D (ActD) pre-treatment of cells while large numbers of genes regulated only through altered mRNA turnover (both up and down) were ActD-resistant. Consistent patterns across the time course were observed for both transcribed and stability-regulated genes.

CONCLUSION

We propose that regulation of mRNA stability contributes significantly to the observed changes in gene expression in response to external stimuli, as measured by high throughput systems.

摘要

背景

微阵列技术对于识别基因表达模式中复杂的全局变化已变得极具价值。然而,要令人信服地证明观察到的基因表达变化与共享转录调控元件之间的有效相关性仍然很困难。造成这种困难的一个原因可能是转录和mRNA周转事件的复杂交织,它们共同直接影响稳态mRNA水平。

结果

为了研究基因转录和mRNA稳定性调控变化对基因表达标准分析的相对贡献,我们使用了两种不同的微阵列方法,分别测量核基因转录和多聚腺苷酸(polyA)mRNA基因表达的变化。在用佛波酯(PMA)加离子霉素激活人Jurkat T细胞后的一小时时间进程中,从多聚腺苷酸mRNA(全细胞)和核延伸转录(新转录)RNA中获得了基因表达谱。比较分析表明,在该系统中,mRNA稳定性调控可能占多聚腺苷酸mRNA变化所有测量值的50%,这是通过对这些基因组的核基因转录活性缺乏任何相应调控推断出来的。在mRNA和核延伸转录RNA中均显示出显著升高的基因被放线菌素D(ActD)预处理细胞所抑制,而大量仅通过改变mRNA周转(上调和下调)进行调控的基因对ActD具有抗性。在转录基因和稳定性调控基因的时间进程中均观察到一致的模式。

结论

我们提出,通过高通量系统测量,mRNA稳定性调控对响应外部刺激时观察到的基因表达变化有显著贡献。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/632b/1156890/79492287bf96/1471-2164-6-75-1.jpg

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