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2,4-二硝基苯酚对脂肪组织代谢的影响。

The effect of 2,4-dinitrophenol on adipose-tissue metabolism.

作者信息

Rognstad R, Katz J

出版信息

Biochem J. 1969 Feb;111(4):431-44. doi: 10.1042/bj1110431.

Abstract
  1. The effect of dinitrophenol on the metabolism of glucose labelled with (14)C and tritium by epididymal fat-pad segments from fed rats was studied. Dinitrophenol at concentrations of 0.1-0.3mm: (a) had little effect on glucose utilization; (b) depressed synthesis of fatty acids and greatly increased that of lactate; (c) increased the T/(14)C ratio in fatty acids synthesized from [U-(14)C,3-T]glucose and decreased that in fatty acids synthesized from [U-(14)C,4-T]glucose; (d) abolished randomization of (14)C from [6-(14)C]glucose in lactate. 2. Dinitrophenol stimulated oxidation of pyruvate and greatly inhibited the oxidation of lactate. It inhibited lipogenesis from pyruvate and lactate. 3. From the isotope data it was calculated that: (a) dinitrophenol stimulates oxidation via the tricarboxylic acid cycle three- to six-fold; (b) dinitrophenol depresses markedly the operation of the pentose cycle; (c) in the presence of dinitrophenol, NADPH formed in the pentose cycle provides all the hydrogen equivalents for fatty acid reduction, whereas, in its absence, NADPH provides 50-70% of the hydrogen equivalents; (d) in the presence of dinitrophenol, there is an excess of ATP produced in the cytoplasm, which flows into the mitochondria. A reverse flow operates in the absence of dinitrophenol. 4. A balance of formation and utilization of reduced nicotinamide nucleotides in the cytoplasm was established. With dinitrophenol there is some excess of NADH. There are indications that this excess may be transferred into mitochondria in the form of malate. 5. Our results are interpreted to indicate the absence from adipose tissue of the alpha-glycerophosphate shuttle for transferring reducing equivalents from the cytoplasm to mitochondria. 6. The effects of dinitrophenol are accounted for in terms of decreased ATP concentrations in the cells, leading to marked decrease in pyruvate carboxylation in the mitochondria and depression of fatty acid synthesis in the cytoplasm.
摘要
  1. 研究了二硝基苯酚对喂食大鼠附睾脂肪垫切片代谢用(14)C和氚标记葡萄糖的影响。浓度为0.1 - 0.3mmol/L的二硝基苯酚:(a)对葡萄糖利用影响很小;(b)抑制脂肪酸合成并大幅增加乳酸合成;(c)增加由[U - (14)C,3 - T]葡萄糖合成的脂肪酸中的T/(14)C比值,并降低由[U - (14)C,4 - T]葡萄糖合成的脂肪酸中的该比值;(d)消除了[6 - (14)C]葡萄糖中(14)C在乳酸中的随机化。2. 二硝基苯酚刺激丙酮酸氧化并极大地抑制乳酸氧化。它抑制由丙酮酸和乳酸生成脂肪。3. 根据同位素数据计算得出:(a)二硝基苯酚刺激通过三羧酸循环的氧化三至六倍;(b)二硝基苯酚显著抑制戊糖循环的运行;(c)在二硝基苯酚存在下,戊糖循环中形成的NADPH为脂肪酸还原提供所有氢当量,而在其不存在时,NADPH提供50 - 70%的氢当量;(d)在二硝基苯酚存在下,细胞质中产生过量的ATP,其流入线粒体。在二硝基苯酚不存在时则发生反向流动。4. 建立了细胞质中还原型烟酰胺核苷酸形成与利用的平衡。有二硝基苯酚时,NADH有一定过量。有迹象表明这种过量可能以苹果酸的形式转移到线粒体中。5. 我们的结果被解释为表明脂肪组织中不存在用于将还原当量从细胞质转移到线粒体的α - 磷酸甘油穿梭。6. 二硝基苯酚的作用可以用细胞内ATP浓度降低来解释,这导致线粒体中丙酮酸羧化显著减少以及细胞质中脂肪酸合成受到抑制。

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