Department of Biochemistry, Faculty of Medicine, Jawaharlal Nehru Medical College, Aligarh Muslim University, Aligarh, India.
Interdisciplinary Biotechnology Unit, Faculty of Life Sciences, Aligarh Muslim University, Aligarh, India.
J Biomol Struct Dyn. 2022;40(24):14176-14187. doi: 10.1080/07391102.2021.2001376. Epub 2021 Nov 11.
The deleterious impact of toxic constituents of hair dyes over the human health has gained immense attention in the recent past. Their oncogenicity, mutagenicity, role in protein modification, impact on cellular metabolism has been documented. There is little information on the mechanism of reactivity of hair dye components with the nucleic acids and its implications. This work, therefore, uses computational, biophysical/biochemical, microscopic and cell-based study to analyze the interaction of monocyclic aromatic amine and a hair dye component, 4-chloro-orthophenylenediamine (4-Cl-OPD) with the DNA, its impact on DNA structure and cell survival. The results suggest that 4-Cl-OPD binds with the DNA in minor groove of the duplex involving three base pairs preferentially the G-C residues, induces strand breaks and makes DNA thermally labile through loss of hydrogen bonding/base unstacking. 4-Cl-OPD causes fragmentation of DNA, reduction in size of the molecule, alters B-DNA conformation and disrupts its secondary structure. The modified DNA gives fragmented appearance, shows broken strands and aggregation in ultra-structural analysis. 4-Cl-OPD induces ROS generation in lymphocytes, increases the comet's average tail length and reduces the viability of lymphocytes. This study forms a base for establishing the direct toxicity of 4-Cl-OPD at the molecular and cellular level through direct production of superoxide radicalCommunicated by Ramaswamy H. Sarma.
近年来,染发剂中有毒成分对人类健康的有害影响引起了广泛关注。它们的致癌性、致突变性、对蛋白质修饰的作用、对细胞代谢的影响都有记录。关于染发剂成分与核酸的反应机制及其影响的信息很少。因此,这项工作使用计算、生物物理/生物化学、显微镜和基于细胞的研究来分析单环芳香胺和染发剂成分 4-氯邻苯二胺(4-Cl-OPD)与 DNA 的相互作用,及其对 DNA 结构和细胞存活的影响。结果表明,4-Cl-OPD 与 DNA 结合在双螺旋的小沟中,涉及三个碱基对,优先与 G-C 残基结合,诱导链断裂,并通过氢键/碱基解堆叠使 DNA 热不稳定。4-Cl-OPD 导致 DNA 片段化,分子大小减小,改变 B-DNA 构象并破坏其二级结构。修饰后的 DNA 呈现出碎片化的外观,在超微结构分析中显示出断裂的链和聚集。4-Cl-OPD 在淋巴细胞中诱导 ROS 生成,增加彗星的平均尾部长度,并降低淋巴细胞的活力。这项研究为在分子和细胞水平上通过直接产生超氧自由基来建立 4-Cl-OPD 的直接毒性奠定了基础。