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DICARBOXYLIC ACID FLUXES DURING GLUCONEOGENESIS. NO CHANNELLING OF MITOCHONDRIAL OXALACETATE

机译:葡聚糖生成过程中的二羧酸通量。线粒体草酸酯的无通道

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摘要

A rather complete model of the gluconeogenic pathway was used, with the known separate pools of mitochondrial and cytosolic oxalacetate, malate and aspartate. The fumarase, malate dehydrogenase and glutamate oxalacetate transaminase reactions were assumed to be isotopically actively reversible, but none at isotopic equilibrium. Malate was assumed to exchange actively between the mitochondria and cytosol, while aspartate exchange was more limited, in agreement with the known electrogenic nature of aspartate export from the mitochondria. This model was fit to ~(14)C data obtained in hepatocyte studies, and to the whole rat ~(14)C data obtained by Heath and Rose (Biochem J. 227, 851-876,1985). The latter data were easily fit to our model, when a single mitochondrial oxalacetate pool was assumed. However, invoking two mitochondrial oxalacetate pools, as proposed by Heath and Rose, with the oxalacetate formed via pyruvate carboxylase preferentially channelled to gluconeogenesis, could not be fit with the known differences in scrambling in glucose and glutamate produced from L[3-~(14)C]lactate.
机译:使用了相当完整的糖异生途径的模型,具有已知的线粒体和胞浆草酰乙酸,苹果酸和天冬氨酸的单独库。富马酸酯酶,苹果酸脱氢酶和谷氨酸草酰乙酸转氨酶反应被认为是同位素活性可逆的,但在同位素平衡时没有。假定苹果酸在线粒体和细胞质之间活跃地交换,而天冬氨酸的交换更有限,这与线粒体中天门冬氨酸的已知成电特性一致。该模型适合于肝细胞研究中获得的〜(14)C数据,以及Heath和Rose(Biochem J. 227,851-876,1985)获得的整个大鼠的〜(14)C数据。当假定单个线粒体草酰乙酸池时,后面的数据很容易适合我们的模型。但是,如Heath和Rose所建议的那样,调用两个线粒体草酰乙酸库,并通过丙酮酸羧化酶形成的草酰乙酸优先引导至糖异生,这与L [3-〜(14)产生的葡萄糖和谷氨酸加扰之间的已知差异不符。 )C]乳酸。

著录项

  • 来源
    《Bulletin of Mathematical Biology》 |1995年第4期|p.557-568|共12页
  • 作者

    ROBERT ROGNSTAD;

  • 作者单位

    Whittier Diabetes Program, Department of Medicine, University of California, San Diego, La Jolla, CA 92093-0983, U.S.A.;

  • 收录信息 美国《科学引文索引》(SCI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 普通生物学;
  • 关键词

  • 入库时间 2022-08-18 00:19:55

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