Division of Human Biology, Fred Hutchinson Cancer Research Center, Seattle, WA 98109, USA.
BMC Genomics. 2011 Nov 15;12:561. doi: 10.1186/1471-2164-12-561.
Mammalian olfactory receptors (ORs) are subject to a remarkable but poorly understood regime of transcriptional regulation, whereby individual olfactory neurons each express only one allele of a single member of the large OR gene family.
We performed a rigorous search for enriched sequence motifs in the largest dataset of OR promoter regions analyzed to date. We combined measures of cross-species conservation with databases of known transcription factor binding sites and ab initio motif-finding algorithms. We found strong enrichment of binding sites for the O/E family of transcription factors and for homeodomain factors, both already known to be involved in the transcriptional control of ORs, but did not identify any novel enriched sequences. We also found that TATA-boxes are present in at least a subset of OR promoters.
Our rigorous approach provides a template for the analysis of the regulation of large gene families and demonstrates some of the difficulties and pitfalls of such analyses. Although currently available bioinformatics methods cannot detect all transcriptional regulatory elements, our thorough analysis of OR promoters shows that in the case of this gene family, experimental approaches have probably already identified all the binding factors common to large fractions of OR promoters.
哺乳动物嗅觉受体(OR)受到一种显著但尚未被充分理解的转录调控机制的控制,在此机制下,单个嗅觉神经元仅表达大量 OR 基因家族单一成员的一个等位基因。
我们对迄今为止分析的最大一组 OR 启动子区域数据集进行了严格的序列基序富集搜索。我们将跨物种保守性的衡量标准与已知转录因子结合位点数据库和从头发现算法相结合。我们发现 O/E 转录因子家族和同源域因子的结合位点有很强的富集,这两者都已经被证实参与了 OR 的转录调控,但没有发现任何新的富集序列。我们还发现 TATA 盒至少存在于一部分 OR 启动子中。
我们严格的方法为大基因家族调控的分析提供了模板,并展示了此类分析的一些困难和陷阱。尽管目前可用的生物信息学方法无法检测所有转录调控元件,但我们对 OR 启动子的彻底分析表明,在这种基因家族的情况下,实验方法可能已经鉴定了大量 OR 启动子所共有的所有结合因子。