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首页> 外文期刊>The biochemical journal >Oxidized low-density lipoprotein impairs the anti-coagulant function of tissue-factor-pathway inhibitor through oxidative modification by its high association and accelerated degradation in cultured human endothelial cells
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Oxidized low-density lipoprotein impairs the anti-coagulant function of tissue-factor-pathway inhibitor through oxidative modification by its high association and accelerated degradation in cultured human endothelial cells

机译:氧化的低密度脂蛋白通过其在人体内皮细胞中的高缔合和加速降解,通过氧化修饰而损害组织因子途径抑制剂的抗凝功能。

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pWe have examined whether oxidized low-density lipoprotein (ox-LDL) affects the function of tissue-factor-pathway inhibitor (TFPI), an anti-coagulant regulator in the extrinsic pathway of coagulation, in cultured human umbilical vein endothelial cells (HUVEC). Treatment of culture medium of HUVEC with ox-LDL, but not with native or acetylated LDLs, drastically decreased the reactivity of TFPI to its antibody specific for Kunitz domain 1 or one specific for the conformation between Kunitz 1 and 2 of TFPI, and caused a rapid, concentration-dependent decrease in the functional activity of TFPI to inhibit Factor X activation. When 5ng of recombinant TFPI (rTFPI) was mixed with 10iμ/ig of ox-LDL for 30min, almost all of the rTFPI was detected in the ox-LDL fraction and no free rTFPI was observed on non-denaturing PAGE, in contrast with the virtual absence of rTFPI in the native LDL fraction. Ox-LDL decreased the antigen level of TFPI in the lysate of HUVEC in a time-dependent manner. It did not affect the mRNA level, but ox-LDL-dependent reduction of the TFPI antigen level in HUVEC was reversed by the simultaneous treatment of ox-LDL with bafilomycin A1, an inhibitor of the lysosomal proton pump. These results indicate that ox-LDL lessens the anti-coagulant function of TFPI through both oxidative modification and accelerated degradation of the molecule outside and inside HUVEC respectively./p
机译:>我们已经研究了氧化的低密度脂蛋白(ox-LDL)是否会影响培养的人脐静脉内皮细胞组织因子途径抑制剂(TFPI)的功能,TFPI是凝结外源性途径中的一种抗凝调节剂。 (HUVEC)。用ox-LDL处理HUVEC培养基,但不使用天然或乙酰化LDL处理,大大降低了TFPI与其针对Kunitz域1的抗体或针对TFPI Kunitz 1和2的构象的抗体的反应性,并导致TFPI抑制因子X激活的功能活性快速,浓度依赖性降低。当将5ng重组TFPI(rTFPI)与10μgox-LDL混合30分钟时,几乎所有rTFPI都在ox-LDL级分中检测到,而在非LDL级分中未观察到游离rTFPI与天然LDL部分中实际上不存在rTFPI相比,变性PAGE。 Ox-LDL以时间依赖性方式降低HUVEC裂解液中TFPI的抗原水平。它不影响mRNA水平,但通过溶酶体质子泵抑制剂巴氟霉素A1同时处理ox-LDL,可以逆转HUVEC中ox-LDL依赖性的TFPI抗原水平降低。这些结果表明ox-LDL分别通过HUVEC内外分子的氧化修饰和加速降解而降低了TFPI的抗凝功能。

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