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首页> 外文期刊>Proteins: Structure, Function, and Genetics >Mycobacterium tuberculosis Mycobacterium tuberculosis UvrB forms dimers in solution and interacts with UvrA in the absence of ligands
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Mycobacterium tuberculosis Mycobacterium tuberculosis UvrB forms dimers in solution and interacts with UvrA in the absence of ligands

机译:结核分枝杆菌分枝杆菌结核分枝杆菌UVRB在溶液中形成二聚体,并在没有配体的情况下与UVRA相互作用

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Abstract During its life cycle Mycobacterium tuberculosis (MTB) must face a variety of environmental and endogenous physical and chemical stresses that could produce genotoxic damage. However, MTB possesses efficient systems to counteract the harmful effects of DNA‐damaging assaults. The nucleotide excision repair (NER) is a highly conserved multi‐enzymatic cascade that is initiated by the concerted action of three core proteins, that is UvrA, UvrB, and UvrC. Although the functional roles of these enzymes are well characterized, the intra‐pathway coordination of the NER components and the dynamics of their association is still a matter of debate. In the presented study, we analyzed the hydrodynamic properties and the oligomeric state of the MTB UvrB protein ( Mt UvrB) that we expressed and purified to homogeneity in a tag‐free form. Our results show that, differently to what has been previously observed for the His‐tagged version of the protein, Mt UvrB forms dimers in solution, which are characterized by an elongated shape, as determined by small‐angle X‐ray scattering analysis. Moreover, to gain insights into the mycobacterial UvrA/UvrB lesion sensing/tracking complex we adopted a size‐exclusion chromatography‐based approach, revealing that the two proteins interact in the absence of ligands, leading to the assembling of A 2 B 2 hetero‐tetramers in solution. Surface plasmon resonance analysis showed that the dissociation constant of the Mt UvrA/ Mt UvrB complex falls in the low micromolar range that could represent the basis for a fine modulation of the complex architecture accompanying the multi‐step DNA repair activity of mycobacterial NER.
机译:摘要在其生命周期中,结核分枝杆菌(MTB)必须面对各种环境和内源性的物理和化学胁迫,可以产生遗传毒性损伤。然而,MTB具有有效的系统来抵消DNA损害侵犯的有害影响。核苷酸切除修复(ner)是一种高度保守的多酶级联,其由三个核心蛋白的齐节作用引发,即紫外线,UVRB和UVRC。虽然这些酶的功能作用表征得很好,但是NER组件的途中和其关联动态的途径协调仍然是辩论的问题。在呈现的研究中,我们分析了我们以无标签形式表达和纯化的MTB UVRB蛋白(MT UVRB)的流体动力学和低聚状态。我们的结果表明,与先前针对他标记的蛋白质版本的蛋白质,MT UVRB在溶液中形成二聚体的不同之处在于,通过小角度X射线散射分析确定的细长形状。此外,为了进入分枝杆菌UVRA / UVRB病变感测/跟踪复合物的见解,我们采用了一种基于尺寸排除的色谱法,揭示了两种蛋白质在不存在配体的情况下相互作用,导致2b 2异质的组装。溶液中的四分体。表面等离子体共振分析表明,MT UVRA / MT UVRB复合物的解离常数落入低微摩拉范围内,其可以代表伴随分泌分枝杆菌的多步DNA修复活性的复杂架构的精细调制的基础。

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