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苯丙氨酸对体内酪氨酸代谢的贡献。对禁食及摄入苯丙氨酸的大鼠的研究。

The contribution of phenylalanine to tyrosine metabolism in vivo. Studies in the post-absorptive and phenylalanine-loaded rat.

作者信息

Moldawer L L, Kawamura I, Bistrian B R, Blackburn G L

出版信息

Biochem J. 1983 Mar 15;210(3):811-7. doi: 10.1042/bj2100811.

Abstract
  1. Rates of appearance and oxidation of plasma L-leucine, L-phenylalanine and L-tyrosine, as well as conversion of plasma phenylalanine into plasma tyrosine, were determined in 90-120 g rats after overnight starvation and while receiving 115-120 mumol of L-phenylalanine/h. 2. In the post-absorptive state, plasma tyrosine and phenylalanine appearances were similar, despite the fact that 22% of plasma tyrosine appearance could be attributed to the hydroxylation of phenylalanine. 3. A constant infusion of 115-120 mumol of L-phenylalanine/h did not significantly alter plasma leucine kinetics, but increased appearance of plasma phenylalanine and tyrosine. The percentage of phenylalanine and tyrosine appearance that was oxidized increased from 12.1% and 24.4% to 37.3% and 48.0% respectively. In phenylalanine-loaded rats, 72% of plasma tyrosine appearance could be attributed to the conversion of phenylalanine. 4. Whole-body tyrosine oxidation measured from a continuous infusion of either L-[14C]tyrosine or L-[14C]phenylalanine differed by 165%. 5. It can be concluded that, in the post-absorptive state, phenylalanine hydroxylation makes a substantial contribution to the plasma appearance of tyrosine and is significantly increased when phenylalanine is administered. The disposal of excess infused phenylalanine is a result of a greater percentage of plasma phenylalanine being converted into tyrosine and a greater proportion of tyrosine being further oxidized. However, apparent tyrosine oxidation rates estimated from plasma tyrosine specific radioactivities and appearance of expired 14CO2 during administration of [14C]tyrosine are underestimates of true rates, in part because tyrosine generated from phenylalanine hydroxylation is catabolized without freely equilibrating with the plasma compartment.
摘要
  1. 在禁食过夜且每小时接受115 - 120 μmol L - 苯丙氨酸的90 - 120 g大鼠中,测定了血浆L - 亮氨酸、L - 苯丙氨酸和L - 酪氨酸的出现率及氧化率,以及血浆苯丙氨酸向血浆酪氨酸的转化。2. 在吸收后状态下,尽管血浆酪氨酸出现率的22%可归因于苯丙氨酸的羟化作用,但血浆酪氨酸和苯丙氨酸的出现率相似。3. 每小时持续输注115 - 120 μmol L - 苯丙氨酸并未显著改变血浆亮氨酸动力学,但增加了血浆苯丙氨酸和酪氨酸的出现率。被氧化的苯丙氨酸和酪氨酸出现率的百分比分别从12.1%和24.4%增加到37.3%和48.0%。在苯丙氨酸负荷的大鼠中,血浆酪氨酸出现率的72%可归因于苯丙氨酸的转化。4. 通过连续输注L - [14C]酪氨酸或L - [14C]苯丙氨酸测得的全身酪氨酸氧化率相差165%。5. 可以得出结论,在吸收后状态下,苯丙氨酸羟化对血浆酪氨酸的出现有很大贡献,当给予苯丙氨酸时,该贡献显著增加。过量输注苯丙氨酸的代谢是由于血浆中更大比例的苯丙氨酸转化为酪氨酸以及更大比例的酪氨酸被进一步氧化。然而,根据血浆酪氨酸比放射性和在给予[14C]酪氨酸期间呼出的14CO2出现率估算的表观酪氨酸氧化率低估了真实率,部分原因是苯丙氨酸羟化产生的酪氨酸在未与血浆室自由平衡的情况下就被分解代谢了。

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