首页> 美国卫生研究院文献>Biochemical Journal >Biochemical effects of the hypoglycaemic compound pent-4-enoic acid and related non-hypoglycaemic fatty acids. Effects of the free acids and their carnitine esters on coenzyme A-dependent oxidations in rat liver mitochondria
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Biochemical effects of the hypoglycaemic compound pent-4-enoic acid and related non-hypoglycaemic fatty acids. Effects of the free acids and their carnitine esters on coenzyme A-dependent oxidations in rat liver mitochondria

机译:低血糖化合物戊-4-烯酸和相关的非低血糖脂肪酸的生化作用。游离酸及其肉碱对大鼠肝线粒体中辅酶A依赖性氧化的影响

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摘要

1. The synthesis of pent-4-enoyl-l-carnitine, cyclopropanecarbonyl-l-carnitine and cyclobutanecarbonyl-l-carnitine is described. 2. Pent-4-enoate strongly inhibits palmitoyl-l-carnitine oxidation in coupled but not in uncoupled mitochondria. Pent-4-enoyl-l-carnitine strongly inhibits palmitoyl-l-carnitine oxidation in uncoupled mitochondria. Prior intramitochondrial formation of pent-4-enoyl-CoA is therefore necessary for inhibition. 3. There was a small self-limiting pulse of oxidation of pent-4-enoyl-l-carnitine during which the ability to inhibit the oxidation of subsequently added palmitoyl-l-carnitine developed. 4. Pent-4-enoate and pent-4-enoyl-l-carnitine are equally effective inhibitors of the oxidation of all even-chain acylcarnitines of chain length C4–C16. Pent-4-enoyl-l-carnitine also inhibits the oxidation of pyruvate and of 2-oxoglutarate. 5. Pent-4-enoate strongly inhibits the oxidation of palmitate but not that of octanoate. This is presumably due to competition between octanoate and pent-4-enoate for medium-chain acyl-CoA ligase. 6. There was less inhibition of the oxidation of pyruvate by pent-4-enoyl-l-carnitine, and of palmitoyl-l-carnitine by cyclopropanecarbonyl-l-carnitine, after pre-incubation with 10mm-arsenate. This suggests that these inhibitions were caused either by depletion of free CoA or by increase of acyl-CoA concentrations, since arsenate deacylates intramitochondrial acyl-CoA. There was little effect on the inhibition of palmitoyl-l-carnitine oxidation by pent-4-enoyl-l-carnitine. 7. Penta-2,4-dienoate strongly inhibited palmitoyl- class="small-caps">l-carnitine oxidation in coupled mitochondria; acrylate only inhibited slightly. 8. Pent-4-enoate (0.1m class="small-caps">m) caused a rapid and almost complete decrease in free CoA and a large increase in acid-soluble acyl-CoA when incubated with coupled mitochondria. Cyclopropanecarboxylate caused a similar decrease in CoA, with an equivalent rise in acid-soluble acyl-CoA concentrations. n-Pentanoate caused extensive lowering of CoA and a large increase in acid-soluble acyl-CoA and acetyl-CoA concentrations. Octanoate caused a 50% lowering of CoA and an increase in acid-soluble acyl-CoA and acetyl-CoA concentrations. 9. Cyclopropanecarboxylate and n-pentanoate were less potent inhibitors of palmitate oxidation than was pent-4-enoate. 10. It is concluded that pent-4-enoate causes a specific inhibition of β-oxidation after the formation intramitochondrially of its metabolites.
机译:1.描述了戊-4-烯丙基-1-肉碱,环丙烷羰基-1-肉碱和环丁烷羰基-1-肉碱的合成。 2. Pent-4-enoate在结合的线粒体中强烈抑制棕榈酰-1-肉碱的氧化,而在未结合的线粒体中则没有。 Pent-4-enoyl-1-carnitine在未偶联的线粒体中强烈抑制棕榈酰-1-carnitine的氧化。因此,抑制作用之前必须存在线粒体内五-4-烯酰基-CoA的形成。 3.在戊-4-烯丙基-1-肉碱的氧化过程中,有一个小的自限氧化脉冲,在此期间,抑制了随后加入的棕榈酰-1-肉碱的氧化。 4. Pent-4-enoate和pent-4-enoyl-l-carnitine同样有效地抑制链长为C4-C16的所有偶链酰基肉碱的氧化。 Pent-4-enoyl-1-carnitine还抑制丙酮酸和2-oxoglutarate的氧化。 5. Pent-4-enoate强烈抑制棕榈酸酯的氧化,但不能抑制辛酸酯的氧化。据推测这是由于辛酸和戊4烯酸之间竞争中链酰基辅酶A连接酶。 6.与10mm砷酸盐预孵育后,戊-4-烯丙基-1-肉碱对丙酮酸的氧化抑制作用较小,而环丙烷羰基-1-肉碱对棕榈酰-1-肉碱的抑制作用较小。这表明这些抑制作用是由于游离CoA的耗尽或酰基CoA浓度的增加引起的,因为砷酸根使线粒体内的酰基CoA脱酰基。对戊-4-烯丙基-1-肉碱抑制棕榈酰-1-肉碱氧化的作用很​​小。 7. Penta-2,4-dinoateate强烈抑制线粒体中的棕榈酰- class =“ l-span>-肉碱”氧化。丙烯酸酯仅被轻微抑制。 8. Pent-4-enoate(0.1m class =“ small-caps”> m )与之孵育时,导致游离CoA迅速且几乎完全降低,而酸溶性酰基CoA则大幅增加。耦合线粒体。环丙烷羧酸盐引起了类似的CoA下降,酸溶性酰基CoA浓度也相应上升。戊酸正丁酯导致CoA大量降低,酸溶性酰基CoA和乙酰基CoA浓度大幅增加。辛酸导致CoA降低50%,酸溶性酰基CoA和乙酰基CoA浓度增加。 9.环丙烷羧酸酯和正戊酸酯比戊-4-烯酸酯对棕榈酸酯氧化的抑制作用更弱。 10.得出结论,戊-4-烯酸酯在其代谢产物的线粒体内形成后会特异性抑制β-氧化。

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