首页> 美国卫生研究院文献>Acta Crystallographica Section F: Structural Biology and Crystallization Communications >Structure of the carboxy-terminal domain of Mycobacterium tuberculosis CarD protein: an essential rRNA transcriptional regulator
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Structure of the carboxy-terminal domain of Mycobacterium tuberculosis CarD protein: an essential rRNA transcriptional regulator

机译:结核分枝杆菌CarD蛋白羧基末端结构域的结构:必不可少的rRNA转录调节剂。

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摘要

The CarD protein is highly expressed in mycobacterial strains under basal conditions and is transcriptionally induced during multiple types of genotoxic stress and starvation. The CarD protein binds the β subunit of RNA polymerase and influences gene expression. The disruption of interactions between CarD and the β subunit of RNA polymerase has a significant effect on mycobacterial survival, resistance to stress and pathogenesis. To understand the structure of CarD and its interaction with the β subunit of RNA polymerase, Mycobacterium tuberculosis CarD (MtbCarD) and the Thermus aquaticus RNA polymerase β subunit were recombinantly expressed and purified. Secondary-structure analysis using circular-dichroism spectroscopy indicated that MtbCarD contains ∼60% α-­helix, ∼7% β-sheet and ∼33% random-coil structure. The C-terminal domain of MtbCarD (CarD83–161) was crystallized and its X-ray structure was determined at 2.1 Å resolution. CarD83–161 forms a distorted Y-shaped structure containing bundles of three helices connected by a loop. The residues forming the distorted Y-shaped structure are highly conserved in CarD sequences from other mycobacterial species. Comparison of the CarD83–161 structure with the recently determined full-length M. tuberculosis and T. thermophilus CarD crystal structures revealed structural differences in residues 141–161 of the C-­terminal domain of the CarD83–161 structure. The structural changes in the CarD83–161 structure occurred owing to proteolysis and crystallization artifacts.
机译:CarD蛋白在碱性条件下在分枝杆菌菌株中高表达,并在多种类型的遗传毒性胁迫和饥饿中被转录诱导。 CarD蛋白与RNA聚合酶的β亚基结合并影响基因表达。 CarD和RNA聚合酶的β亚基之间相互作用的破坏对分枝杆菌的存活,抗压力和发病机理具有重要影响。为了了解CarD的结构及其与RNA聚合酶的β亚基的相互作用,重组表达和纯化了结核分枝杆菌CarD(MtbCarD)和水生栖热菌RNA聚合酶β亚基。使用圆二色性光谱的二级结构分析表明,MtbCarD含有约60%的α-­螺旋,约7%的β-折叠和约33%的无规螺旋结构。 MtbCarD(CarD83–161)的C末端结构域结晶,并以2.1Å分辨率确定其X射线结构。 CarD83–161形成扭曲的Y形结构,其中包含由环连接的三个螺旋束。形成扭曲的Y形结构的残基在其他分枝杆菌物种的CarD序列中高度保守。将CarD83–161结构与最近确定的全长结核分枝杆菌和嗜热链球菌CarD晶体结构进行比较,发现CarD83–161结构C-­末端结构域的残基141–161中存在结构差异。 CarD83–161结构的结构变化是由于蛋白水解和结晶伪影而发生的。

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