首页> 美国卫生研究院文献>The Journal of Biological Chemistry >GTP Cyclohydrolase I Expression Protein and Activity Determine Intracellular Tetrahydrobiopterin Levels Independent of GTP Cyclohydrolase Feedback Regulatory Protein Expression
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GTP Cyclohydrolase I Expression Protein and Activity Determine Intracellular Tetrahydrobiopterin Levels Independent of GTP Cyclohydrolase Feedback Regulatory Protein Expression

机译:GTP环水解酶I的表达蛋白质和活性决定 细胞内四氢生物蝶呤水平独立于GTP环水解酶 反馈调节蛋白表达

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摘要

GTP cyclohydrolase I (GTPCH) is a key enzyme in the synthesis of tetrahydrobiopterin (BH4), a required cofactor for nitricoxide synthases and aromatic amino acid hydroxylases. Alterations of GTPCH activity and BH4 availability play an important role in human disease. GTPCH expression is regulated by inflammatory stimuli, in association with reduced expression of GTP cyclohydrolase feedback regulatory protein (GFRP). However, the relative importance of GTPCH expression versus GTPCH activity and the role of GFRP in relation to BH4 bioavailability remain uncertain. We investigated these relationships in a cell line with tet-regulated GTPCH expression and in the hph-1 mouse model of GTPCH deficiency. Doxycycline exposure resulted in a dose-dependent decrease in GTPCH protein and activity, with a strong correlation between GTPCH expression and BH4 levels (r2 = 0.85, p < 0.0001). These changes in GTPCH and BH4 had no effect on GFRP expression or protein levels. GFRP overexpression and knockdown in tet-GCH cells did not alter GTPCH activity or BH4 levels, and GTPCH-specific knockdown in sEnd.1 endothelial cells had no effect on GFRP protein. In mouse liver we observed a graded reduction of GTPCH expression, protein, and activity, from wild type, heterozygote, to homozygote littermates, with a striking linear correlation between GTPCH expression and BH4 levels (r2 = 0.82, p < 0.0001). Neither GFRP expression nor protein differed between wild type, heterozygote, nor homozygote mice, despite the substantial differences in BH4. We suggest that GTPCH expression is the primary regulator of BH4 levels, and changes in GTPCH or BH4 are not necessarily accompanied by changes in GFRP expression.
机译:GTP环水解酶I(GTPCH)是四氢生物蝶呤(BH4)合成中的关键酶,BH4是一氧化氮合酶和芳香族氨基酸羟化酶的必需辅助因子。 GTPCH活性和BH4可用性的改变在人类疾病中起重要作用。 GTPCH的表达受炎症刺激的调节,与GTP环水解酶反馈调节蛋白(GFRP)的表达降低有关。但是,GTPCH表达相对于GTPCH活性的相对重要性以及GFRP在BH4生物利用度方面的作用仍然不确定。我们调查了tet调节的GTPCH表达的细胞系和GTPCH缺乏的hph-1小鼠模型中的这些关系。强力霉素的暴露导致GTPCH蛋白和活性的剂量依赖性降低,并且GTPCH表达与BH4水平之间具有很强的相关性(r 2 = 0.85,p <0.0001)。 GTPCH和BH4的这些变化对GFRP表达或蛋白质水平没有影响。 tet-GCH细胞中的GFRP过度表达和敲低不会改变GTPCH活性或BH4水平,而sEnd.1内皮细胞中的GTPCH特异性敲低对GFRP蛋白没有影响。在小鼠肝脏中,我们观察到GTPCH逐渐降低 从野生型,杂合子到纯合子的表达,蛋白质和活性 幼仔,在GTPCH表达与 BH4水平(r 2 = 0.82,p <0.0001)。都没有 GFRP表达或蛋白质在野生型,杂合子或 纯合子小鼠,尽管在BH4方面存在实质性差异。我们建议 GTPCH表达是BH4水平和GTPCH变化的主要调节因子 或BH4不一定伴有GFRP表达的变化。

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