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4-氯-1,2-苯二胺诱导人血清白蛋白的结构扰动和遗传毒性聚集。

4-Chloro-1,2-phenylenediamine induced structural perturbation and genotoxic aggregation in human serum albumin.

作者信息

Warsi Mohd Sharib, Habib Safia, Talha Mohd, Khan Shifa, Singh Priyam, Mir Abdul Rouf, Abidi Minhal, Ali Asif

机构信息

Department of Biochemistry, Faculty of Medicine, Jawaharlal Nehru Medical College, Aligarh Muslim University, Aligarh, India.

出版信息

Front Chem. 2022 Sep 19;10:1016354. doi: 10.3389/fchem.2022.1016354. eCollection 2022.

Abstract

4-Chloro-1,2-phenylenediamine (4-Cl-OPD) is a halogenated aromatic diamine used as a precursor in permanent hair color production. Despite its well-documented mutagenic and carcinogenic effects in various and models, its role in fibrillar aggregate formation and their genotoxic effect in therapeutic proteins has received less attention. The significance of human serum albumin (HSA) arises from its involvement in bio-regulatory and transport processes. HSA misfolding and aggregation are responsible for some of the most frequent neurodegenerative disorders. We used various complementary approaches to track the formation of amyloid fibrils and their genotoxic effect. Molecular dynamics study demonstrated the complex stability. The impact of 4-Cl-OPD on the structural dynamics of HSA was confirmed by Raman spectroscopy, X-ray diffraction, HPLC and SDS-PAGE. Fibrilllar aggregates were investigated using Congo red assay, DLS, and SEM. The genotoxic nature of 4-Cl-OPD was confirmed using plasmid nicking assay and DAPI staining, which revealed DNA damage and cell apoptosis. 4-Cl-OPD provides a model system for studying fibrillar aggregation and their genotoxic potential in the current investigation. Future studies should investigate the inhibition of the aggregation/fibrillation process, which may yield valuable clinical insights.

摘要

4-氯-1,2-苯二胺(4-Cl-OPD)是一种卤代芳香二胺,用作永久性染发剂生产的前体。尽管其在各种体外和体内模型中具有充分记录的致突变和致癌作用,但其在纤维状聚集体形成中的作用及其对治疗性蛋白质的遗传毒性作用受到的关注较少。人血清白蛋白(HSA)的重要性源于其参与生物调节和运输过程。HSA的错误折叠和聚集是一些最常见神经退行性疾病的原因。我们使用了各种互补方法来追踪淀粉样纤维的形成及其遗传毒性作用。分子动力学研究证明了复合物的稳定性。拉曼光谱、X射线衍射、高效液相色谱和十二烷基硫酸钠-聚丙烯酰胺凝胶电泳证实了4-Cl-OPD对HSA结构动力学的影响。使用刚果红测定、动态光散射和扫描电子显微镜研究了纤维状聚集体。使用质粒切口测定和4',6-二脒基-2-苯基吲哚染色证实了4-Cl-OPD的遗传毒性性质,其揭示了DNA损伤和细胞凋亡。在当前研究中,4-Cl-OPD提供了一个用于研究纤维状聚集及其遗传毒性潜力的模型系统。未来的研究应调查聚集/纤维化过程的抑制作用,这可能会产生有价值的临床见解。

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