University of Manchester, Manchester, M13 9PT, UK.
Nat Prod Rep. 2010 May;27(5):668-80. doi: 10.1039/b906682a. Epub 2010 Mar 25.
Detecting deficiency and excess of different metal ions is fundamental for every organism. Our understanding of how metals are detected by bacteria is exceptionally well advanced, and multiple families of cytoplasmic DNA-binding, metal-sensing transcriptional regulators have been characterised(ArsR-SmtB, MerR, CsoR-RcnR, CopY, DtxR, Fur, NikR). Some of the sensors regulate a single gene while others act globally controlling transcription of regulons. They not only modulate the expression of genes directly associated with metal homeostasis, but can also alter metabolism to reduce the cellular demand for metals in short supply. Different representatives of each of the sensor families can regulate gene expression in response to different metals, and the residues that form the sensory metal-binding sites have been defined in a number of these proteins. Indeed, in the case of theArsR-SmtB family, multiple distinct metal-sensing motifs (and one non-metal-sensing motif) have been identified which correlate with the detection of different metals. This review summarises the different families of bacterial metal-sensing transcriptional regulators and discusses current knowledge regarding the mechanisms of metal-regulated gene expression and the structural features of sensory metal-binding sites focusing on the ArsR-SmtB family. In addition, recent progress in understanding the principles governing the ability of the sensors to detect specific metals within a cell and the coordination of the different sensors to control cellular metal levels is discussed.
检测不同金属离子的缺乏和过剩对每个生物体都是至关重要的。我们对细菌如何检测金属的理解已经非常先进,并且已经描述了多个细胞质 DNA 结合、金属感应转录调节因子家族(ArsR-SmtB、MerR、CsoR-RcnR、CopY、DtxR、Fur、NikR)。一些传感器调节单个基因,而另一些则全局调节调节子的转录。它们不仅调节与金属稳态直接相关的基因表达,还可以改变代谢以减少对稀缺金属的细胞需求。每个传感器家族的不同代表都可以响应不同的金属来调节基因表达,并且在许多这些蛋白质中已经定义了形成感应金属结合位点的残基。事实上,在 ArsR-SmtB 家族中,已经确定了多个不同的金属感应基序(和一个非金属感应基序),这些基序与不同金属的检测相关。 本综述总结了细菌金属感应转录调节因子的不同家族,并讨论了关于金属调节基因表达的机制和感应金属结合位点的结构特征的当前知识,重点介绍了 ArsR-SmtB 家族。此外,还讨论了最近在理解传感器检测细胞内特定金属的能力的原理以及协调不同传感器以控制细胞内金属水平方面的进展。