Department of Life Science and Technology, Tokyo Institute of Technology, Kanagawa, Japan.
Earth-Life Science Institute, Tokyo Institute of Technology, Tokyo, Japan.
Plant Cell Physiol. 2021 Mar 25;62(1):100-110. doi: 10.1093/pcp/pcaa144.
Reactive sulfur species (RSS) are involved in bioactive regulation via persulfidation of proteins. However, how cells regulate RSS-based signaling and RSS metabolism is poorly understood, despite the importance of universal regulation systems in biology. We previously showed that the persulfide-responsive transcriptional factor SqrR acts as a master regulator of sulfide-dependent photosynthesis in proteobacteria. Here, we demonstrated that SqrR also binds heme at a near one-to-one ratio with a binding constant similar to other heme-binding proteins. Heme does not change the DNA-binding pattern of SqrR to the target gene promoter region; however, DNA-binding affinity of SqrR is reduced by the binding of heme, altering its regulatory activity. Circular dichroism spectroscopy clearly showed secondary structural changes in SqrR by the heme binding. Incremental change in the intracellular heme concentration is associated with small, but significant reduction in the transcriptional repression by SqrR. Overall, these results indicate that SqrR has an ability to bind heme to modulate its DNA-binding activity, which may be important for the precise regulation of RSS metabolism in vivo.
活性硫物种 (RSS) 通过蛋白质的过硫化作用参与生物活性调节。然而,尽管普遍的调控系统在生物学中很重要,但细胞如何调节基于 RSS 的信号转导和 RSS 代谢仍知之甚少。我们之前曾表明,过硫化物响应转录因子 SqrR 作为原核生物中依赖硫化物的光合作用的主调控因子发挥作用。在这里,我们证明 SqrR 还以接近一比一的比例与其他血红素结合蛋白相似的结合常数结合到血红素上。血红素不会改变 SqrR 与靶基因启动子区域的 DNA 结合模式;然而,血红素的结合降低了 SqrR 的 DNA 结合亲和力,改变了其调节活性。圆二色性光谱清楚地表明血红素结合导致 SqrR 的二级结构发生变化。细胞内血红素浓度的微小变化与 SqrR 的转录抑制作用显著降低有关。总的来说,这些结果表明 SqrR 具有结合血红素以调节其 DNA 结合活性的能力,这对于体内 RSS 代谢的精确调节可能很重要。