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依托泊苷(VP - 16)的苯氧基自由基可直接氧化细胞内的硫醇:酚类抗氧化剂的保护作用与损伤作用

Phenoxyl radicals of etoposide (VP-16) can directly oxidize intracellular thiols: protective versus damaging effects of phenolic antioxidants.

作者信息

Tyurina Y Y, Tyurin V A, Yalowich J C, Quinn P J, Claycamp H G, Schor N F, Pitt B R, Kagan V E

机构信息

Department of Environmental and Occupational Health, University of Pittsburgh, Pennsylvania 15238, USA.

出版信息

Toxicol Appl Pharmacol. 1995 Apr;131(2):277-88. doi: 10.1006/taap.1995.1070.

Abstract

Phenolic compounds can act as radical scavengers due to their ability to donate a mobile hydrogen to peroxyl radicals producing a phenoxyl radical if the phenoxyl radical formed in the radical scavenging reaction efficiently interacts with vitally important biomolecules, then this interaction may result in cytotoxic effects rather than in antioxidant protection. In the present work we have chosen two model compounds--a phenolic antitumor drug, VP-16, known to be highly cytotoxic, and a homolog of vitamin E, 2,2,5,7,8-pentamethyl-6-hydroxychromane (PMC)--as typical representatives of phenoxyl radicals to study interactions of their phenoxyl radicals with intracellular thiols. Using a water-soluble source of peroxyl radicals, the azo-initiator 2,2'-azobis(2-aminodinopropane) (AAPH), we found that both PMC and VP-16 are very efficient scavengers of peroxyl radicals as evidenced by their ability to inhibit AAPH-induced chemiluminescence of luminol and oxidation of PnA incorporated into DOPC liposomes. Both PMC and VP-16 were also able to protect against AAPH-induced oxidative degradation of DNA in nuclei from human leukemic K562 cells. In contrast, there was a dramatic difference in the ability of VP-16 and PMC to protect GSH against AAPH-induced oxidation: while PMC inhibited AAPH-induced oxidation of GSH in a concentration-dependent manner, VP-16 did not protect GSH against oxidation. We hypothesized that this was due to different reactivities of the phenoxyl radicals formed by AAPH-derived peroxyl radicals from VP-16 and PMC toward GSH. To substantiate this hypothesis, we compared interactions of the phenoxyl radicals generated from VP-16 and PMC with intracellular thiols in K562 cell homogenates. While the PMC phenoxyl radicals were only slightly affected by thiols, the VP-16 phenoxyl radicals were reduced by thiols. This is evidenced by (i) a significant inhibition of the tyrosinase-induced VP-16 consumption upon addition of K562 cell homogenates, (ii) a depletion of endogenous thiols in K562 cell homogenates induced by VP-16+tyrosinase, (iii) a transient disappearance of the VP-16 phenoxyl radical signal from the ESR spectra and its reappearance after depletion of endogenous thiols, and (iv) elimination of the lag period for the appearance of the VP-16 phenoxyl radical ESR signal subsequent to depletion of thiols by mersalyl acid. To evaluate the contribution of GSH and protein thiols to reduction of the VP-GSH-peroxidase + cumeme hydroperoxide to specifically deplete endogenous GSH.(ABSTRACT TRUNCATED AT 400 WORDS)

摘要

酚类化合物可作为自由基清除剂,因为它们能够向过氧自由基提供一个可移动的氢,从而产生苯氧自由基。如果在自由基清除反应中形成的苯氧自由基与至关重要的生物分子有效相互作用,那么这种相互作用可能导致细胞毒性效应,而非抗氧化保护作用。在本研究中,我们选择了两种模型化合物——一种已知具有高细胞毒性的酚类抗肿瘤药物VP - 16,以及维生素E的同系物2,2,5,7,8 - 五甲基 - 6 - 羟基色满(PMC)——作为苯氧自由基的典型代表,来研究它们的苯氧自由基与细胞内硫醇的相互作用。使用过氧自由基的水溶性来源偶氮引发剂2,2'-偶氮双(2 - 氨基二丙烷)(AAPH),我们发现PMC和VP - 16都是非常有效的过氧自由基清除剂,这可通过它们抑制AAPH诱导的鲁米诺化学发光以及掺入二油酰磷脂酰胆碱(DOPC)脂质体中的对硝基苯胺(PnA)氧化的能力得以证明。PMC和VP - 16还都能够保护人白血病K562细胞核中的DNA免受AAPH诱导的氧化降解。相比之下,VP - 16和PMC在保护谷胱甘肽(GSH)免受AAPH诱导的氧化方面能力存在显著差异:虽然PMC以浓度依赖的方式抑制AAPH诱导的GSH氧化,但VP - 16并不能保护GSH免受氧化。我们推测这是由于VP - 16和PMC中AAPH衍生的过氧自由基形成的苯氧自由基对GSH的反应性不同。为证实这一推测,我们比较了VP - 16和PMC产生的苯氧自由基与K562细胞匀浆中细胞内硫醇的相互作用。虽然PMC苯氧自由基仅受到硫醇的轻微影响,但VP - 16苯氧自由基会被硫醇还原。这可通过以下几点得以证明:(i)加入K562细胞匀浆后酪氨酸酶诱导的VP - 16消耗显著受到抑制;(ii)VP - 16 + 酪氨酸酶诱导K562细胞匀浆中内源性硫醇的消耗;(iii)电子顺磁共振(ESR)光谱中VP - 16苯氧自由基信号短暂消失,内源性硫醇耗尽后又重新出现;(iv)用汞撒利酸耗尽硫醇后,VP - 16苯氧自由基ESR信号出现的延迟期消除。为评估GSH和蛋白质硫醇对将VP - GSH - 过氧化物酶 + 枯烯过氧化氢还原以特异性耗尽内源性GSH的贡献。(摘要截断于400字)

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