Department of Biochemistry, Federal University of Technology, Akure, Ondo State, Nigeria.
Chem Biol Interact. 2013 Oct 25;206(1):27-36. doi: 10.1016/j.cbi.2013.07.014. Epub 2013 Aug 7.
The antioxidant mechanism of ebselen in rats brain is largely linked with its glutathione peroxidase (GPx) rather than its peroxiredoxin mimicry ability. However, the precise molecular dynamics between the GPx-mimicry of ebselen and thiol utilization is yet to be fully clarified and thus still open. Herein, we investigated the influence of dithiothreitol (DTT) on the antioxidant action of ebselen against oxidant-induced cerebral lipid peroxidation and deoxyribose degradation. Furthermore, the critical inhibitory concentrations of ebselen on the activities of sulphydryl enzymes such as cerebral sodium pump, δ-aminolevulinic acid dehydratase (δ-ALAD) and lactate dehydrogenase (LDH) were also investigated. We observe that ebselen (at ≥42 μM) markedly inhibited lipid peroxidation in the presence and absence of DTT, whereas it inhibited deoxyribose degradation only in the presence of DTT. Furthermore, under in vitro conditions, ebselen inhibited the thiol containing enzymes; cerebral sodium pump (at ≥40 μM), δ-ALAD (≥10 μM) and LDH (≥1 μM) which were either prevented or reversed by DTT. However, the inhibition of the activities of these sulphydryl proteins in diabetic animals was prevented by ebselen. Summarily, it is apparent that the effective in vitro inhibitory doses of ebselen on the activity of the sulphydryl proteins are far less than its antioxidant doses. In addition, the presence of DTT is evidently a critical requirement for ebselen to effect its antioxidant action against deoxyribose degeradation and not lipid peroxidation. Consequently, we conclude that ebselen possibly utilizes available thiols on sulphydryl proteins to effect its GPx mimicry antioxidant action against lipid peroxidation in rat brain homogenate.
依布硒啉在大鼠脑内的抗氧化机制主要与其谷胱甘肽过氧化物酶 (GPx) 模拟能力有关,而与其过氧化物酶模拟能力关系不大。然而,依布硒啉的 GPx 模拟与巯基利用之间的确切分子动力学尚未完全阐明,因此仍然存在争议。在此,我们研究了二硫苏糖醇 (DTT) 对依布硒啉对抗氧化剂诱导的脑脂质过氧化和脱氧核糖降解的抗氧化作用的影响。此外,还研究了依布硒啉对脑钠泵、δ-氨基酮戊酸脱水酶 (δ-ALAD) 和乳酸脱氢酶 (LDH) 等巯基酶活性的关键抑制浓度。我们观察到,依布硒啉(≥42 μM)在存在和不存在 DTT 的情况下均可显著抑制脂质过氧化,而仅在存在 DTT 的情况下抑制脱氧核糖降解。此外,在体外条件下,依布硒啉抑制含巯基的酶;脑钠泵(≥40 μM)、δ-ALAD(≥10 μM)和 LDH(≥1 μM),这些酶被 DTT 预防或逆转。然而,DTT 可预防糖尿病动物中这些巯基蛋白活性的抑制。总之,很明显,依布硒啉对巯基蛋白活性的体外有效抑制剂量远低于其抗氧化剂量。此外,DTT 的存在显然是依布硒啉发挥其抗氧化作用(对抗脱氧核糖降解而不是脂质过氧化)的关键要求。因此,我们得出结论,依布硒啉可能利用存在于巯基蛋白上的可用巯基来发挥其 GPx 模拟抗氧化作用,以对抗大鼠脑匀浆中的脂质过氧化。