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Redox-sensitive structural change in the A-domain of HMGB1 and its implication for the binding to cisplatin modified DNA

机译:HMGB1域的氧化氧敏感结构变化及其对Cisplatin改性DNA结合的影响

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摘要

HMGB1 (high-mobility group B1) is a ubiquitously expressed bifunctional protein that acts as a nuclear protein in cells and also as an inflammatory mediator in the extracellular space. HMGB1 changes its functions according to the redox states in both intra- and extra-cellular environments. Two cysteines, Cys23 and Cys45, in the A-domain of HMGB1 form a disulfide bond under oxidative conditions. The A-domain with the disulfide bond shows reduced affinity to cisplatin modified DNA. We have solved the oxidized A-domain structure by NMR. In the structure, Phe38 has a flipped ring orientation from that found in the reduced form; the phenyl ring in the reduced form intercalates into the platinated lesion in DNA. The phenyl ring orientation in the oxidized form is stabilized through intramolecular hydrophobic contacts. The reorientation of the Phe38 ring by the disulfide bond in the A-domain may explain the reduced HMGB1 binding affinity towards cisplatinated DNA.
机译:HMGB1(高迁移率组B1)是一种普遍表达的双官能蛋白,其作为细胞中的核蛋白质,也是细胞外空间中的炎症介质。 HMGB1根据edrox状态在内部和蜂窝间环境中改变其功能。 在HMGB1的A结构域中的两个半胱氨酸,Cys23和Cys45在氧化条件下形成二硫键。 具有二硫键的A结构域显示出对顺铂改性DNA的亲和力。 我们通过NMR解决了氧化的A域结构。 在该结构中,PHE38具有从缩小形式发现的翻转环取向; 苯环中的苯环嵌入DNA中的浸渍病变中。 通过分子内疏水触点稳定氧化形式的苯环取向。 通过域中的二硫键的PHE38环的重新定位可以解释对顺铂DNA的降低的HMGB1结合亲和力。

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