Goutam Kapil, Gupta Arvind K, Gopal Balasubramanian
Molecular Biophysics Unit, Indian Institute of Science, Bangalore 560012, Karnataka, India.
Nucleic Acids Res. 2017 Sep 19;45(16):9760-9772. doi: 10.1093/nar/gkx609.
Extra-cytoplasmic function (ECF) σ-factors are widespread in bacteria, linking environmental stimuli with changes in gene expression. These transcription factors span several phylogenetically distinct groups and are remarkably diverse in their activation and regulatory mechanisms. Here, we describe the structural and biochemical features of a Mycobacterium tuberculosis ECF factor σJ that suggests that the SnoaL_2 domain at the C-terminus can modulate the activity of this initiation factor in the absence of a cognate regulatory anti-σ factor. M. tuberculosis σJ can bind promoter DNA in vitro; this interaction is substantially impaired by the removal of the SnoaL_2 domain. This finding is consistent with assays to evaluate σJ-mediated gene expression. Structural similarity of the SnoaL_2 domain with epoxide hydrolases also suggests a novel functional role for this domain. The conserved sequence features between M. tuberculosis σJ and other members of the ECF41 family of σ-factors suggest that the regulatory mechanism involving the C-terminal SnoaL_2 domain is likely to be retained in this family of proteins. These studies suggest that the ECF41 family of σ-factors incorporate features of both-the σ70 family and bacterial one-component systems thereby providing a direct mechanism to implement environment-mediated transcription changes.
胞质外功能(ECF)σ因子在细菌中广泛存在,将环境刺激与基因表达变化联系起来。这些转录因子跨越几个系统发育上不同的组,其激活和调节机制非常多样。在这里,我们描述了结核分枝杆菌ECF因子σJ的结构和生化特征,这表明C末端的SnoaL_2结构域在没有同源调节性抗σ因子的情况下可以调节这个起始因子的活性。结核分枝杆菌σJ能够在体外结合启动子DNA;去除SnoaL_2结构域后,这种相互作用会受到显著损害。这一发现与评估σJ介导的基因表达的实验结果一致。SnoaL_2结构域与环氧化物水解酶的结构相似性也表明了该结构域的一种新功能作用。结核分枝杆菌σJ与ECF41家族其他σ因子成员之间保守的序列特征表明,涉及C末端SnoaL_2结构域的调节机制可能在该蛋白质家族中得以保留。这些研究表明,ECF41家族的σ因子兼具σ70家族和细菌单组分系统的特征,从而提供了一种直接机制来实现环境介导的转录变化。