Endoplasmic reticulum (ER) thiol oxidases initiate a disulfide relay to oxidatively fold secreted proteins. We found that combined loss-of-function mutations in genes encoding the ER thiol oxidases ERO1α, ERO1β, and PRDX4 compromised the extracellular matrix in mice and interfered with the intracellular maturation of procollagen. These severe abnormalities were associated with an unexpectedly modest delay in disulfide bond formation in secreted proteins but a profound, 5-fold lower procollagen 4-hydroxyproline content and enhanced cysteinyl sulfenic acid modification of ER proteins. Tissue ascorbic acid content was lower in mutant mice, and ascorbic acid supplementation improved procollagen maturation and lowered sulfenic acid content in vivo. In vitro, the presence of a sulfenic acid donor accelerated the oxidative inactivation of ascorbate by an H(2)O(2)-generating system. Compromised ER disulfide relay thus exposes protein thiols to competing oxidation to sulfenic acid, resulting in depletion of ascorbic acid, impaired procollagen proline 4-hydroxylation, and a noncanonical form of scurvy.

译文

内质网 (ER) 硫醇氧化酶启动二硫键中继氧化折叠分泌的蛋白质。我们发现,编码ER硫醇氧化酶ERO1α,ERO1β 和PRDX4的基因的联合功能丧失突变损害了小鼠的细胞外基质,并干扰了前胶原的细胞内成熟。这些严重的异常与分泌蛋白中二硫键形成的意外适度延迟有关,但前胶原4-羟基脯氨酸含量大大降低了5倍,并且ER蛋白的半胱氨酰亚砜酸修饰增强。突变小鼠的组织抗坏血酸含量较低,补充抗坏血酸可改善胶原蛋白的成熟并降低体内的亚砜酸含量。在体外,亚磺酸供体的存在加速了H(2)O(2) 生成系统对抗坏血酸的氧化失活。因此,受损的ER二硫键中继使蛋白质硫醇暴露于竞争氧化为亚磺酸,导致抗坏血酸耗竭,前胶原脯氨酸4-羟基化受损以及坏血病的非规范形式。

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