Literature DB >> 9392451

Cosubstrates involved in the reduction of cytosolic glutathione disulfide in rat heart.

J D Robertson1, J W Starnes, J P Kehrer.   

Abstract

The functionality of glutathione (GSH), which is present in separate mitochondrial and cytosolic pools, hinges on a steady supply of reducing equivalents, provided by NADPH, to convert glutathione disulfide (GSSG) to GSH. It is believed traditionally that glucose 6-phosphate (G6-P) via the pentose phosphate pathway is the main cellular source of NADPH. The current study examined the ability of NADH- and NADPH-linked cosubstrates to support cardiac cytosolic GSSG reduction. Exogenous NADP+ was added to the incubation mixtures because of the loss of this nucleotide during homogenization. Exogenous GSSG was added to all samples to levels that were approximately 60% of total glutathione. In both the 500 x g (with mitochondria) and 10,000 x g (without mitochondria) rat heart supernatants, isocitrate supported reduction of approximately 90% of available GSSG within 10 min. Malate, pyruvate and palmitoyl carnitine did not support GSSG reduction in either supernatant. G6-P yielded GSH levels within 10 min equal to 77% of total glutathione in the 1,0000 x g supernatant and 47% in the 500 x g supernatant. The current data indicate: (1) The pentose phosphate pathway, alone, is less efficient than isocitrate at supplying reducing equivalents for cytosolic GSSG reduction; and (2) some confounding factor(s) occur in the 500 x g and reconstituted 500 x g supernatants whereby G6-P-supported GSSG reduction is attenuated.

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Year:  1997        PMID: 9392451     DOI: 10.1016/s0300-483x(97)00126-1

Source DB:  PubMed          Journal:  Toxicology        ISSN: 0300-483X            Impact factor:   4.221


  1 in total

1.  Hepatic Transcriptomics Reveals that Lipogenesis Is a Key Signaling Pathway in Isocitrate Dehydrogenase 2 Deficient Mice.

Authors:  Jeong Hoon Pan; Jingsi Tang; Mersady C Redding; Kaleigh E Beane; Cara L Conner; Yun Jeong Cho; Jiangchao Zhao; Jun Ho Kim; Byungwhi C Kong; Jin Hyup Lee; Jae Kyeom Kim
Journal:  Genes (Basel)       Date:  2019-09-19       Impact factor: 4.096

  1 in total

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