首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Coordinate regulation of tetrahydrobiopterin turnover and phenylalanine hydroxylase activity in rat liver cells.
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Coordinate regulation of tetrahydrobiopterin turnover and phenylalanine hydroxylase activity in rat liver cells.

机译:大鼠肝细胞中四氢生物蝶呤转换和苯丙氨酸羟化酶活性的协调调节。

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摘要

This work had two purposes: (i) to determine in vivo whether liver phenylalanine hydroxylase (PAH) is regulated by its substrates phenylalanine and tetrahydrobiopterin (BH4) as studies with purified enzyme suggest and (ii) to investigate in vivo the relationship between PAH activity and BH4 turnover. We found there are two BH4 pools in hepatocytes, one that is metabolically available (free BH4) and one that is not (bound BH4). Bound BH4 appears bound to PAH; the PAH-BH4 complex has much less catalytic activity and is less readily phenylalanine activated than uncomplexed enzyme. Interconversion of activated and unactivated PAH and bound and free BH4 is driven by phenylalanine; and free BH4 concentration is determined by the state of activation and activity of PAH. In hepatocytes, BH4 and PAH (subunit) concentrations are equal, all intracellular BH4 appears to be available to PAH, and free BH4 turns over rapidly (t1/2 approximately 1 hr). There is no evidence for feedback inhibition of BH4 synthesis; theBH4 synthetic rate appears high when free BH4 concentration is high and low when free BH4 is low. The data provide support in vivo that phenylalanine and BH4 are positive and negative regulators of the activity and activation state of PAH in the proposed manner; they also imply that regulation of BH4 turnover and PAH activity are linked processes, which are both controlled by phenylalanine concentration.
机译:这项工作有两个目的:(i)确定体内苯丙氨酸羟化酶(PAH)是否受其底物苯丙氨酸和四氢生物蝶呤(BH4)的调节,这与纯化酶的研究提示有关;以及(ii)体内研究PAH活性之间的关系和BH4营业额。我们发现肝细胞中有两个BH4库,一个是可代谢利用的(游离BH4),另一个不是(结合的BH4)。结合的BH4似乎与PAH结合;与未络合的酶相比,PAH-BH4络合物的催化活性低得多,苯丙氨酸活化的可能性也低。活化和未活化的PAH与结合的和游离的BH4的相互转化是由苯丙氨酸驱动的;游离BH4浓度取决于PAH的活化状态和活性。在肝细胞中,BH4和PAH(亚基)的浓度相等,所有细胞内BH4似乎都可用于PAH,并且游离BH4迅速翻转(t1 / 2约1小时)。没有证据表明反馈抑制了BH4的合成。当游离BH4浓度高时,BH4合成速率高,而游离BH4低时则低。数据为体内研究提供了支持,即苯丙氨酸和BH4是拟议的方式对PAH的活性和激活状态的正向和负向调节剂。他们还暗示对BH4转化和PAH活性的调节是相互联系的过程,均受苯丙氨酸浓度控制。

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