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Human Vitamin K 2,3-Epoxide Reductase Complex Subunit 1-like 1 (VKORC1L1) Mediates Vitamin K-dependent Intracellular Antioxidant Function*

机译:人类维生素K 2,3-环氧还原酶复合物亚基1-like 1(VKORC1L1)介导维生素K依赖的细胞内抗氧化功能*

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摘要

Human vitamin K 2,3-epoxide reductase complex subunit 1-like 1 (VKORC1L1), expressed in HEK 293T cells and localized exclusively to membranes of the endoplasmic reticulum, was found to support both vitamin K 2,3-epoxide reductase (VKOR) and vitamin K reductase enzymatic activities. Michaelis-Menten kinetic parameters for dithiothreitol-driven VKOR activity were: Km (μm) = 4.15 (vitamin K1 epoxide) and 11.24 (vitamin K2 epoxide); Vmax (nmol·mg−1·hr−1) = 2.57 (vitamin K1 epoxide) and 13.46 (vitamin K2 epoxide). Oxidative stress induced by H2O2 applied to cultured cells up-regulated VKORC1L1 expression and VKOR activity. Cell viability under conditions of no induced oxidative stress was increased by the presence of vitamins K1 and K2 but not ubinquinone-10 and was specifically dependent on VKORC1L1 expression. Intracellular reactive oxygen species levels in cells treated with 2,3-dimethoxy-1,4-naphthoquinone were mitigated in a VKORC1L1 expression-dependent manner. Intracellular oxidative damage to membrane intrinsic proteins was inversely dependent on VKORC1L1 expression and the presence of vitamin K1. Taken together, our results suggest that VKORC1L1 is responsible for driving vitamin K-mediated intracellular antioxidation pathways critical to cell survival.
机译:发现人类维生素K 2,3-环氧还原酶复合物亚基1-like 1(VKORC1L1)在HEK 293T细胞中表达并且仅定位于内质网膜上,同时支持两种维生素K 2,3-环氧还原酶(VKOR)和维生素K还原酶的酶活性。二硫苏糖醇驱动的VKOR活性的Michaelis-Menten动力学参数为:Km(μm)= 4.15(维生素K1环氧)和11.24(维生素K2环氧); Vmax(nmol·mg-1·hr-1)= 2.57(维生素K1环氧化物)和13.46(维生素K2环氧化物)。 H2O2诱导的氧化应激作用于培养细胞,上调了VKORC1L1的表达和VKOR活性。维生素K1和K2而不是ubinquinone-10的存在会增加无诱导氧化应激条件下的细胞活力,并且具体取决于VKORC1L1表达。以VKORC1L1表达依赖的方式减轻了用2,3-二甲氧基-1,4-萘醌处理过的细胞中细胞内活性氧的水平。膜内在蛋白的细胞内氧化损伤反过来取决于VKORC1L1表达和维生素K1的存在。两者合计,我们的结果表明VKORC1L1负责驱动维生素K介导的细胞内抗氧化途径,对细胞存活至关重要。

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