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Characterization of VDAC1 as a plasma membrane NADH-oxidoreductase

机译:Vdac1作为血浆膜Nadh-氧化还原酶的表征

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We have recently demonstrated that voltage dependent anion selective channel 1 (porin, isoform 1) can function as a transplasma membrane NADH:ferricyanide-reductase. However, both the specific redox characteristics and the mechanism of electron transport in this enzyme presently remain unclear. Here we demonstrate that the redox capability of porin 1 is specific for ferricyanide as this same enzyme cannot reduce DCIP or cytochrome c in vitro. Furthermore, NADH-dependent ferricyanide reduction associated with VDAC1 is not sensitive to the anion channel inhibitors DIDS and dextran sulfate. However, this activity can be inhibited by thiol chelators, suggesting that at least one of the two cysteine groups present in VDAC1 are critical for electron transfer. We propose a model on how electron transport may occur in VDAC1.
机译:我们最近证明,电压依赖性阴离子选择性通道1(孔隙,同种型1)可以用作转膜膜NADH:铁氰化物还原酶。 然而,目前尚不清楚该酶中的特定氧化还原特性和电子传输机制。 在这里,我们证明孔隙1的氧化还原能力对于铁氰化物特异性,因为该相同的酶不能在体外减少DCIP或细胞色素C. 此外,与VDAC1相关的NADH依赖性铁氰化物还原对阴离子通道抑制剂并不敏感,并且硫酸葡聚糖抑制剂。 然而,硫醇螯合剂可以抑制该活性,表明Vdac1中存在的两个半胱氨酸基团中的至少一种对于电子转移至关重要。 我们提出了一种模型,即在VDAC1中如何发生电子传输。

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