Brown Nigel L, Stoyanov Jivko V, Kidd Stephen P, Hobman Jon L
School of Biosciences, The University of Birmingham, Edgbaston, Birmingham B15 2TT, UK.
FEMS Microbiol Rev. 2003 Jun;27(2-3):145-63. doi: 10.1016/S0168-6445(03)00051-2.
The MerR family is a group of transcriptional activators with similar N-terminal helix-turn-helix DNA binding regions and C-terminal effector binding regions that are specific to the effector recognised. The signature of the family is amino acid similarity in the first 100 amino acids, including a helix-turn-helix motif followed by a coiled-coil region. With increasing recognition of members of this class over the last decade, particularly with the advent of rapid bacterial genome sequencing, MerR-like regulators have been found in a wide range of bacterial genera, but not yet in archaea or eukaryotes. The few MerR-like regulators that have been studied experimentally have been shown to activate suboptimal sigma(70)-dependent promoters, in which the spacing between the -35 and -10 elements recognised by the sigma factor is greater than the optimal 17+/-1 bp. Activation of transcription is through protein-dependent DNA distortion. The majority of regulators in the family respond to environmental stimuli, such as oxidative stress, heavy metals or antibiotics. A subgroup of the family activates transcription in response to metal ions. This subgroup shows sequence similarity in the C-terminal effector binding region as well as in the N-terminal region, but it is not yet clear how metal discrimination occurs. This subgroup of MerR family regulators includes MerR itself and may have evolved to generate a variety of specific metal-responsive regulators by fine-tuning the sites of metal recognition.
MerR家族是一组转录激活因子,其N端螺旋-转角-螺旋DNA结合区域和C端效应物结合区域相似,这些区域对所识别的效应物具有特异性。该家族的特征是前100个氨基酸中的氨基酸相似性,包括一个螺旋-转角-螺旋基序,其后是一个卷曲螺旋区域。在过去十年中,随着对该类成员的认识不断增加,特别是随着细菌基因组快速测序的出现,已在广泛的细菌属中发现了MerR样调节因子,但在古细菌或真核生物中尚未发现。少数经过实验研究的MerR样调节因子已被证明可激活次优的σ70依赖性启动子,其中σ因子识别的-35和-10元件之间的间距大于最佳的17±1 bp。转录激活是通过蛋白质依赖性DNA扭曲实现的。该家族中的大多数调节因子对环境刺激作出反应,如氧化应激、重金属或抗生素。该家族的一个亚组响应金属离子激活转录。该亚组在C端效应物结合区域以及N端区域显示出序列相似性,但尚不清楚金属识别是如何发生的。MerR家族调节因子的这个亚组包括MerR本身,并且可能已经进化为通过微调金属识别位点来产生各种特定的金属响应调节因子。