Ji Yinduo, Yu Chuanxin, Liang Xudong
Department of Veterinary and Biomedical Sciences, College of Veterinary Medicine, University of Minnesota, St Paul, MN, USA.
Methods Enzymol. 2007;423:502-13. doi: 10.1016/S0076-6879(07)23024-1.
The two-component signal transduction system plays an important role for bacteria to adapt to diverse niches by sensing the environmental stimuli and modulating gene expression. In Staphylococcus aureus, at least 16 pairs of two-component systems have been discovered and some of them coordinate with different regulators to modulate the expression of virulence factors. The availability of complete genome sequences, and transcriptome and proteome, enables us to identify the genes mediated by different regulators. The RT-PCR-based method and microarray technology have made it feasible for high throughput screening of genomewide transcription profiles. These techniques have been used to investigate different TCS in S. aureus and to identify the regulons of regulators in different bacterial systems. Therefore, combined with the inactivation of gene expression, microarray technology should be more useful to identify genes transcriptionally controlled by the TCS system. We propose that similar approaches can be used to understand the regulon of ArlRS two-component signaling by the comparison of gene expression profiles between wild type and arlR mutant. This chapter provides detailed protocols for identification of arlRS regulon using Affymetrix S. aureus chips and describes general considerations of microarray assay.
双组分信号转导系统在细菌通过感知环境刺激和调节基因表达来适应不同生态位方面发挥着重要作用。在金黄色葡萄球菌中,已发现至少16对双组分系统,其中一些与不同的调节因子协同作用以调节毒力因子的表达。完整基因组序列、转录组和蛋白质组的可得性,使我们能够鉴定由不同调节因子介导的基因。基于逆转录聚合酶链反应的方法和微阵列技术使得高通量筛选全基因组转录谱成为可能。这些技术已被用于研究金黄色葡萄球菌中的不同双组分系统,并鉴定不同细菌系统中调节因子的调控子。因此,结合基因表达的失活,微阵列技术在鉴定由双组分系统转录控制的基因方面应该更有用。我们建议通过比较野生型和arlR突变体之间的基因表达谱,使用类似的方法来了解ArlRS双组分信号的调控子。本章提供了使用Affymetrix金黄色葡萄球菌芯片鉴定arlRS调控子的详细方案,并描述了微阵列分析的一般注意事项。