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Differential control of Bradyrhizobium japonicum iron stimulon genes through variable affinity of the iron response regulator (Irr) for target gene promoters and selective loss of activator function

机译:通过铁反应调节剂(Irr)对靶基因启动子的可变亲和力和激活功能的选择性丧失来控制日本根瘤菌铁刺激基因的差异性控制

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摘要

Bradyrhizobium japonicum Irr is a conditionally stable transcriptional activator and repressor that accumulates in cells under iron- limited, manganese-replete conditions, but degrades in a heme-dependent manner under high iron conditions, manganese limitation or upon exposure to H2O2. Here, we identified Irr-regulated genes that were relatively unresponsive to factors that promote Irr degradation. The promoters of those genes bound Irr with at least 200-fold greater affinity than promoters of the responsive genes, resulting in maintenance of promoter occupancy over a wide cellular Irr concentration range. For Irr-repressible genes, promoter occupancy correlated with transcriptional repression, resulting in differential levels of expression based on Irr affinity for target promoters. However, inactivation of positively controlled genes required neither promoter vacancy nor loss of DNA-binding activity by Irr. Thus, activation and repression functions of Irr may be uncoupled from each other under certain conditions. Abrogation of Irr activation function was heme-dependent, thus heme has two functionally separable roles in modulating Irr activity. The findings imply a greater complexity of control by Irr than can be achieved by conditional stability alone. We suggest that these regulatory mechanisms accommodate the differing needs for Irr regulon genes in response to the prevailing metabolic state of the cell.
机译:缓生根瘤菌(Bradyrhizobium japonicum Irr)是一种条件稳定的转录激活因子和阻遏物,在铁受限,锰充足的条件下在细胞中积累,但在高铁条件,锰受限或暴露于H2O2时会以血红素依赖性的方式降解。在这里,我们确定了对Irr调控的基因,这些基因对促进Irr降解的因子相对无反应。这些基因的启动子以比响应基因的启动子大200倍以上的亲和力与Irr结合,导致在较宽的细胞Irr浓度范围内维持启动子的占有率。对于可抑制Irr的基因,启动子的占用与转录抑制相关,从而导致基于Irr对靶标启动子的亲和力导致表达水平的差异。但是,使阳性对照基因失活既不需要启动子空缺也不需要Irr丧失DNA结合活性。因此,在某些条件下,Irr的激活和抑制功能可能会彼此分离。 Irr激活功能的废除取决于血红素,因此血红素在调节Irr活性方面具有两个功能上可分离的作用。这些发现暗示着Irr控制的复杂性要比单独的条件稳定性要复杂得多。我们建议这些调节机制适应对Irr regulon基因的不同需求,以响应细胞的主要代谢状态。

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