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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Stimulation of the brain NO/cyclic GMP pathway by peripheral administration of tetrahydrobiopterin in the hph-1 mouse.
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Stimulation of the brain NO/cyclic GMP pathway by peripheral administration of tetrahydrobiopterin in the hph-1 mouse.

机译:通过在hph-1小鼠中外周给予四氢生物蝶呤刺激大脑NO /环GMP途径。

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Mutations in GTP-cyclohydrolase I (GTP-CH) have been identified as causing a range of inborn errors of metabolism, including dopa-responsive dystonia. GTP-CH catalyses the first step in the biosynthesis of tetrahydrobiopterin (BH4), a cofactor necessary for the synthesis of catecholamines and serotonin. Current therapy based on monoamine neurotransmitter replacement may be only partially successful in correcting the neurological deficits. The reason might be that BH4 is also a cofactor for nitric oxide synthase. Using a strain of mutant GTP-CH-deficient (hph-1) mice, we demonstrate that in addition to impaired monoamine metabolism, BH4 deficiency is also associated with diminished nitric oxide synthesis in the brain (as evaluated by measuring the levels of cyclic GMP), when compared with wild-type animals. We have found a decline in the levels of BH4 with age in all animals, but no gender-related differences. We found a strong association between the levels of BH4 and cyclic GMP in hph-1 mice but not in wild-type animals. We also demonstrate that acute peripheral administration of BH4 (100 micromol/kg s.c.) in hph-1 mice significantly elevated the brain BH4 concentration and subsequently cyclic GMP levels in cerebellum, with peaks at 2 and 3 h, respectively. We suggest that BH4 administration should be considered in BH4 deficiency states in addition to monoamine replacement therapy.
机译:GTP-环水解酶I(GTP-CH)中的突变已被确定为引起一系列先天性代谢错误,包括多巴反应性肌张力障碍。 GTP-CH催化四氢生物蝶呤(BH4)生物合成的第一步,四氢生物蝶呤(BH4)是合成儿茶酚胺和5-羟色胺所必需的辅助因子。基于单胺神经递质替代的当前疗法在纠正神经功能缺陷方面可能仅部分成功。原因可能是BH4也是一氧化氮合酶的辅因子。使用突变的GTP-CH缺陷型(hph-1)小鼠品系,我们证明除了单胺代谢受损外,BH4缺乏症还与大脑中一氧化氮合成减少有关(通过测量循环GMP的水平进行评估),与野生型动物相比。我们发现所有动物中BH4的水平均随着年龄的增长而下降,但没有性别相关的差异。我们发现hph-1小鼠中BH4和环状GMP的水平之间有很强的联系,而野生型动物中却没有。我们还证明了在hph-1小鼠中急性外周给予BH4(100 micromol / kg s.c.)显着提高了脑BH4浓度,并随后升高了小脑中的循环GMP水平,分别在2 h和3 h达到峰值。我们建议除了单胺替代疗法外,还应考虑在BH4缺乏状态下服用BH4。

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