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一种新的产生R系列代谢产物的哺乳动物异亮氨酸分解代谢途径的证明。

Demonstration of a new mammalian isoleucine catabolic pathway yielding an Rseries of metabolites.

作者信息

Mamer O A, Tjoa S S, Scriver C R, Klassen G A

出版信息

Biochem J. 1976 Dec 15;160(3):417-26. doi: 10.1042/bj1600417a.

Abstract
  1. Normal human urine contains small amounts (less than 4 mg/g of creatinine) of 2-ethylhydracrylic acid, formed, we believe, by a previously undisclosed endogenous catabolic pathway for the oxidation of a newly described series of R metabolites of isoleucine. 2. Urinary excretion of 2-ethylhydracrylic acid is variably increased in defects of isoleucine oxidation at distal steps in the catabolic pathway (3-oxoacyl-CoA thiolase deficiency and methylmalonyl-CoA mutase deficiency) and is diminished when proximal steps of the oxidative pathway are blocked as in branched-chain oxo acid decarboxylase deficiency ('maple-syrup-urine' disease). 3. Precursors of R-pathway metabolites [R(-)-2-methylbutyrate and 2-ethylacrylate ] lead to increased 2-ethylhydracrylate excretion in the mammal(rat, rabbit and dog); the corresponding S metabolites [S(+)-2-methylbutyric acid and tiglic acid ], when given in equimolar amounts, have little effect on its excretion, suggesting that little or no interconversion between S and R metabolites occurs in vivo. 4. Studies with 2H-labelled precursors indicate that conversion of R 2-methylbutyrate into 2-ethylhydracrylic acid occurs by a direct pathway (apparently via 2-ethylacrylic acid). 5. The further oxidation of 2-ethylhydracrylic acid to ethylmalonic acid was demonstrated, and may be analogous to S-metabolite oxidation via methyl malonate. 6. Valine metabolites do not interact with the R=isoleucine pathway under the conditions of these experiments in vivo.
摘要
  1. 正常人类尿液中含有少量(每克肌酐中少于4毫克)的2-乙基氢丙烯酸,我们认为它是由一条先前未被揭示的内源性分解代谢途径形成的,该途径用于氧化一组新描述的异亮氨酸R代谢产物。2. 在分解代谢途径的远端步骤(3-氧代酰基辅酶A硫解酶缺乏症和甲基丙二酰辅酶A变位酶缺乏症)中异亮氨酸氧化存在缺陷时,2-乙基氢丙烯酸的尿排泄量会有不同程度的增加;而当氧化途径的近端步骤如支链氧代酸脱羧酶缺乏症(“枫糖尿症”)被阻断时,其排泄量会减少。3. R途径代谢产物的前体[R(-)-2-甲基丁酸和2-乙基丙烯酸酯]会导致哺乳动物(大鼠、兔子和狗)中2-乙基氢丙烯酸酯的排泄增加;相应的S代谢产物[S(+)-2-甲基丁酸和惕各酸],当以等摩尔量给予时,对其排泄几乎没有影响,这表明体内S和R代谢产物之间很少或没有相互转化。4. 用2H标记的前体进行的研究表明,R 2-甲基丁酸转化为2-乙基氢丙烯酸是通过一条直接途径(显然是通过2-乙基丙烯酸)发生的。5. 已证实2-乙基氢丙烯酸进一步氧化为乙基丙二酸,这可能类似于通过甲基丙二酸对S代谢产物的氧化。6. 在这些体内实验条件下,缬氨酸代谢产物不与R=异亮氨酸途径相互作用。

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