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Structural and functional insight into the Mycobacterium tuberculosis protein PrpR reveals a novel type of transcription factor

机译:对结核分枝杆菌蛋白PrpR的结构和功能洞察揭示了一种新型的转录因子

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摘要

The pathogenicity of Mycobacterium tuberculosis depends upon its ability to catabolize host cholesterol. Upregulation of the methylcitrate cycle (MCC) is required to assimilate and detoxify propionyl-CoA, a cholesterol degradation product. The transcription of key genes prpC and prpD in MCC is activated by MtPrpR, a member of a family of prokaryotic transcription factors whose structures and modes of action have not been clearly defined. We show that MtPrpR has a novel overall structure and directly binds to CoA or short-chain acyl-CoA derivatives to form a homotetramer that covers the binding cavity and locks CoA tightly inside the protein. The regulation of this process involves a [4Fe4S] cluster located close to the CoA-binding cavity on a neighboring chain. Mutations in the [4Fe4S] cluster binding residues rendered MtPrpR incapable of regulating MCC gene transcription. The structure of MtPrpR without the [4Fe4S] cluster-binding region shows a conformational change that prohibits CoA binding. The stability of this cluster means it is unlikely a redox sensor but may function by sensing ambient iron levels. These results provide mechanistic insights into this family of critical transcription factors who share similar structures and regulate gene transcription using a combination of acyl-CoAs and [4Fe4S] cluster.
机译:结核分枝杆菌的致病性取决于它分解代谢宿主胆固醇的能力。需要柠檬酸甲酯循环(MCC)的上调来吸收和解毒胆固醇降解产物丙酰辅酶A。 Mt中的关键基因prpC和prpD的转录被MtPrpR激活,MtPrpR是一个原核转录因子家族的成员,其结构和作用方式尚未明确。我们表明,MtPrpR具有新颖的整体结构,并直接结合到CoA或短链酰基CoA衍生物,形成一个均四聚体,它覆盖了结合腔并将CoA紧密地锁定在蛋白质内部。此过程的调节涉及[4Fe4S]簇,该簇位于相邻链上靠近CoA结合腔的位置。 [4Fe4S]簇结合残基中的突变使MtPrpR无法调节MCC基因转录。没有[4Fe4S]簇结合区的MtPrpR的结构显示构象变化,禁止CoA结合。该簇的稳定性意味着它不太可能是氧化还原传感器,但可以通过检测周围的铁含量起作用。这些结果提供了对这一关键转录因子家族的机械洞察力,这些关键转录因子家族具有相似的结构,并结合使用酰基辅酶A和[4Fe4S]簇来调节基因转录。

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