Shandong Province Key Laboratory of Applied Mycology, College of Life Sciences, Qingdao Agricultural University, Qingdao 266109, China.
Shandong Province Key Laboratory of Applied Mycology, College of Life Sciences, Qingdao Agricultural University, Qingdao 266109, China.
Spectrochim Acta A Mol Biomol Spectrosc. 2024 May 15;313:124118. doi: 10.1016/j.saa.2024.124118. Epub 2024 Mar 6.
As the most universally used anionic surfactant, ubiquitous existence and accumulation of sodium dodecyl benzene sulfonate (SDBS) in the environment has inevitably imposed the associated harmful impacts to plants due to producing excessive reactive oxygen species. However, the underlying hazardous mechanism of the SDBS-induced oxidative stress to plants at molecular level has never been reported. Here, the molecular interaction of AtPrxQ with SDBS was explored for the first time. The intrinsic fluorescence of AtPrxQ was quenched based on static quenching, and a single binding site of AtPrxQ towards SDBS and the potential interaction forces driven by hydrophobic interactions were predicted from thermodynamic parameters and molecular docking results. Besides, the interaction pattern of AtPrxQ and SDBS was also confirmed by the bio-layer interferometry with moderate binding affinity. Moreover, the structural changes of AtPrxQ along with the destructions of the protein framework and the hydrophobic enhancement around aromatic amino acids were observed upon binding with SDBS. At last, the toxic effects produced by SDBS on peroxidase activities and Arabidopsis seedlings growth were also characterized. Thus this work may provide insights on the molecular interactions of AtPrxQ with SDBS and assessments on the biological hazards of SDBS to plants even for the agriculture.
作为最普遍使用的阴离子表面活性剂,十二烷基苯磺酸钠(SDBS)在环境中的普遍存在和积累,不可避免地由于产生过多的活性氧而对植物造成了相关的有害影响。然而,SDBS 诱导植物氧化应激的潜在危险机制在分子水平上从未被报道过。在这里,首次探索了 AtPrxQ 与 SDBS 的分子相互作用。基于静态猝灭,AtPrxQ 的固有荧光被猝灭,从热力学参数和分子对接结果预测了 AtPrxQ 对 SDBS 的单一结合位点和由疏水相互作用驱动的潜在相互作用力。此外,通过生物层干涉仪也证实了 AtPrxQ 与 SDBS 的相互作用模式,具有中等的结合亲和力。此外,在与 SDBS 结合时,还观察到 AtPrxQ 的结构变化,包括蛋白质框架的破坏和芳香族氨基酸周围疏水性的增强。最后,还对 SDBS 对过氧化物酶活性和拟南芥幼苗生长的毒性作用进行了表征。因此,这项工作可以深入了解 AtPrxQ 与 SDBS 的分子相互作用,以及评估 SDBS 对植物甚至农业的生物危害。