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研究超氧化物歧化酶的活性响应及与生物蓄积性邻苯二甲酸酯及其关键代谢物的相关结合相互作用。

Study on active response of superoxide dismutase and relevant binding interaction with bioaccumulated phthalates and key metabolites in Eisenia fetida.

机构信息

CAS Key Laboratory of Soil Environment and Pollution Remediation, Institute of Soil Science, Chinese Academy of Sciences, Nanjing 210008, PR China; University of the Chinese Academy of Sciences, Beijing 100049, PR China.

CAS Key Laboratory of Soil Environment and Pollution Remediation, Institute of Soil Science, Chinese Academy of Sciences, Nanjing 210008, PR China; University of the Chinese Academy of Sciences, Beijing 100049, PR China.

出版信息

Ecotoxicol Environ Saf. 2021 Oct 15;223:112559. doi: 10.1016/j.ecoenv.2021.112559. Epub 2021 Jul 29.

Abstract

Phthalic acid esters (PAEs) are a group of widespread persistent organic pollutants in the environment. Though the harmful effect of PAEs including activity inhibition of superoxide dismutase (SOD) to arouse oxidative stress were well documented, the deep insights into mechanisms that are relevant with SOD activity are still lacking. By 7d-cultivation of Eisenia fetida in artificially-polluted soil, the different active responses of SOD in earthworm were shown to PAE congeners. Despite the less bioaccumulation and bioavailability, the di-butyl phthalate (DBP) etc. structurally coupled with longer ester-chains appeared more effective to trigger the up-regulation and then the slight decline of SOD activity. Given the remarkable biotransformation especially for short-chain PAEs, the SOD activity response in earthworm should be regarded as joint effect with their metabolites, e.g. monophthalates (MAEs) and phthalic acid (PA). The in vitro SOD activity was shown with the obvious inhibition of 21.31% by DBP, 88.93% by MBP, and 58.57% by PA respectively when the concentrations were elevated up to 0.03 mM. The SOD activity inhibition confirmed the molecular binding with pollutants as an essential event besides the biological regulation for activity. The binding interaction was thermodynamically exothermic, spontaneous and strengthened primarily by Van der Waals force and hydrogen bonds, and was spectrally diagnosed with the conformational changes including diminution of α-helix content and spatial reorientation of fluorophore tryptophan. As coherently illustrated with the larger fluorescence quenching constants (3.6510-4.4710/mol) than DBP, the metabolites should be the priority concern due to stronger activity inhibition and toxicological risks.

摘要

邻苯二甲酸酯(PAEs)是环境中广泛存在的持久性有机污染物。尽管 PAEs 的有害影响,包括对超氧化物歧化酶(SOD)活性的抑制作用引起氧化应激,已经得到了很好的证明,但对于与 SOD 活性相关的机制的深入了解仍然缺乏。通过在人工污染土壤中培养 7d 的赤子爱胜蚓,显示了 SOD 在蚯蚓体内对 PAE 同系物的不同活性响应。尽管生物蓄积性和生物可利用性较低,但与较长酯链结构偶联的邻苯二甲酸二丁酯(DBP)等物质更有效地引发 SOD 活性的上调,然后略有下降。鉴于其显著的生物转化能力,特别是对于短链 PAEs,蚯蚓体内的 SOD 活性反应应被视为与其代谢物(如单邻苯二甲酸酯(MAEs)和邻苯二甲酸(PA))的联合效应。当浓度升高至 0.03 mM 时,体外 SOD 活性显示 DBP、MBP 和 PA 分别对 SOD 活性有明显的抑制作用,抑制率分别为 21.31%、88.93%和 58.57%。SOD 活性抑制作用证实了污染物的分子结合是除了活性的生物调节之外的一个必要事件。这种结合相互作用是热力学放热、自发的,主要由范德华力和氢键加强,并通过构象变化进行光谱诊断,包括α-螺旋含量的减少和荧光团色氨酸的空间重定向。正如与 DBP 相比更大的荧光猝灭常数(3.6510-4.4710/mol)一致表明,代谢物由于更强的活性抑制和毒理学风险,应成为优先关注的对象。

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