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硫氧还蛋白和硫氧还蛋白还原酶通过巯基氧化还原依赖的机制控制组织因子活性。

Thioredoxin and thioredoxin reductase control tissue factor activity by thiol redox-dependent mechanism.

机构信息

College of Life Sciences, University of Chinese Academy of Sciences, 100049 Beijing, China.

出版信息

J Biol Chem. 2013 Feb 1;288(5):3346-58. doi: 10.1074/jbc.M112.418046. Epub 2012 Dec 7.

Abstract

Abnormally enhanced tissue factor (TF) activity is related to increased thrombosis risk in which oxidative stress plays a critical role. Human cytosolic thioredoxin (hTrx1) and thioredoxin reductase (TrxR), also secreted into circulation, have the power to protect against oxidative stress. However, the relationship between hTrx1/TrxR and TF remains unknown. Here we show reversible association of hTrx1 with TF in human serum and plasma samples. The association is dependent on hTrx1-Cys-73 that bridges TF-Cys-209 via a disulfide bond. hTrx1-Cys-73 is absolutely required for hTrx1 to interfere with FVIIa binding to purified and cell-surface TF, consequently suppressing TF-dependent procoagulant activity and proteinase-activated receptor-2 activation. Moreover, hTrx1/TrxR plays an important role in sensing the alterations of NADPH/NADP(+) states and transducing this redox-sensitive signal into changes in TF activity. With NADPH, hTrx1/TrxR readily facilitates the reduction of TF, causing a decrease in TF activity, whereas with NADP(+), hTrx1/TrxR promotes the oxidation of TF, leading to an increase in TF activity. By comparison, TF is more likely to favor the reduction by hTrx1-TrxR-NADPH. This reversible reduction-oxidation reaction occurs in the TF extracellular domain that contains partially opened Cys-49/-57 and Cys-186/-209 disulfide bonds. The cell-surface TF procoagulant activity is significantly increased after hTrx1-knockdown. The response of cell-surface TF procoagulant activity to H(2)O(2) is efficiently suppressed through elevating cellular TrxR activity via selenium supplementation. Our data provide a novel mechanism for redox regulation of TF activity. By modifying Cys residues or regulating Cys redox states in TF extracellular domain, hTrx1/TrxR function as a safeguard against inappropriate TF activity.

摘要

异常增强的组织因子 (TF) 活性与血栓形成风险增加有关,其中氧化应激起着关键作用。人细胞质硫氧还蛋白 (hTrx1) 和硫氧还蛋白还原酶 (TrxR) 也分泌到循环中,具有抵抗氧化应激的能力。然而,hTrx1/TrxR 与 TF 之间的关系尚不清楚。在这里,我们显示 hTrx1 与人类血清和血浆样品中的 TF 可逆结合。这种结合依赖于 hTrx1-Cys-73,它通过二硫键桥接 TF-Cys-209。hTrx1-Cys-73 对于 hTrx1 干扰 FVIIa 与纯化和细胞表面 TF 的结合、从而抑制 TF 依赖性促凝血活性和蛋白酶激活受体-2 激活是绝对必需的。此外,hTrx1/TrxR 在感知 NADPH/NADP(+) 状态的变化并将这种氧化还原敏感信号转导为 TF 活性的变化方面起着重要作用。有 NADPH 时,hTrx1/TrxR 容易促进 TF 的还原,导致 TF 活性降低,而有 NADP(+) 时,hTrx1/TrxR 促进 TF 的氧化,导致 TF 活性增加。相比之下,TF 更有可能有利于 hTrx1-TrxR-NADPH 的还原。这种可逆的氧化还原反应发生在包含部分打开的 Cys-49/-57 和 Cys-186/-209 二硫键的 TF 细胞外结构域中。hTrx1 敲低后,细胞表面 TF 的促凝血活性显著增加。通过硒补充提高细胞内 TrxR 活性,有效地抑制了细胞表面 TF 促凝血活性对 H(2)O(2)的反应。我们的数据提供了 TF 活性氧化还原调节的新机制。通过修饰 TF 细胞外结构域中的 Cys 残基或调节 Cys 氧化还原状态,hTrx1/TrxR 作为防止 TF 活性不当的保护剂。

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