Bennett 2020 Methods Cell Biol: Difference between revisions
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{{Publication | {{Publication | ||
|title=Bennett MJ, Sheng F, Saada A (2020) Biochemical assays of TCA cycle and Ξ²-oxidation metabolites. | |title=Bennett MJ, Sheng F, Saada A (2020) Biochemical assays of TCA cycle and Ξ²-oxidation metabolites. Methods Cell Biol 155:83-120. https://doi.org/10.1016/bs.mcb.2019.11.021 | ||
|info=[https:// | |info=[https://pubmed.ncbi.nlm.nih.gov/32183978/ PMID: 32183978] | ||
|authors=Bennett MJ, Sheng F, Saada A | |authors=Bennett MJ, Sheng F, Saada A | ||
|year=2020 | |year=2020 | ||
|journal= | |journal=Methods Cell Biol | ||
|abstract=This chapter focuses on the methods to measure unique metabolites, specific enzymes, and metabolic flux in fatty acid Ξ²-oxidation, and on biochemical assays of tricarboxylic acid (TCA) cycle enzymes and the pyruvate dehydrogenase complex. These assays play an important role in the diagnosis of genetic diseases, newborn screening, and in cancer and metabolism research. The rationale, protocol, pros and cons, and alternative methods are discussed. Nevertheless, each laboratory should adapt the preferred method optimizing sample preparation and assay conditions for linearity and a low signal-to-noise ratio. The reader is also referred to the additional literature citing methods and clinical descriptions of the various diseases. | |abstract=This chapter focuses on the methods to measure unique metabolites, specific enzymes, and metabolic flux in fatty acid Ξ²-oxidation, and on biochemical assays of tricarboxylic acid (TCA) cycle enzymes and the pyruvate dehydrogenase complex. These assays play an important role in the diagnosis of genetic diseases, newborn screening, and in cancer and metabolism research. The rationale, protocol, pros and cons, and alternative methods are discussed. Nevertheless, each laboratory should adapt the preferred method optimizing sample preparation and assay conditions for linearity and a low signal-to-noise ratio. The reader is also referred to the additional literature citing methods and clinical descriptions of the various diseases. | ||
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{{Labeling}} | [[File:Rinaldo 2002 Annu Rev Physiol CORRECTION.png|right|300px]] | ||
{{Template:Correction FADH2 and S-pathway}} | |||
{{Labeling | |||
|enzymes=Complex II;succinate dehydrogenase | |||
|pathways=F | |||
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Latest revision as of 21:30, 16 September 2023
Bennett MJ, Sheng F, Saada A (2020) Biochemical assays of TCA cycle and Ξ²-oxidation metabolites. Methods Cell Biol 155:83-120. https://doi.org/10.1016/bs.mcb.2019.11.021 |
Bennett MJ, Sheng F, Saada A (2020) Methods Cell Biol
Abstract: This chapter focuses on the methods to measure unique metabolites, specific enzymes, and metabolic flux in fatty acid Ξ²-oxidation, and on biochemical assays of tricarboxylic acid (TCA) cycle enzymes and the pyruvate dehydrogenase complex. These assays play an important role in the diagnosis of genetic diseases, newborn screening, and in cancer and metabolism research. The rationale, protocol, pros and cons, and alternative methods are discussed. Nevertheless, each laboratory should adapt the preferred method optimizing sample preparation and assay conditions for linearity and a low signal-to-noise ratio. The reader is also referred to the additional literature citing methods and clinical descriptions of the various diseases.
Correction: FADH2 and Complex II
- FADH2 is shown as the substrate feeding electrons into Complex II (CII). This is wrong and requires correction - for details see Gnaiger (2024).
- Gnaiger E (2024) Complex II ambiguities β FADH2 in the electron transfer system. J Biol Chem 300:105470. https://doi.org/10.1016/j.jbc.2023.105470 - Β»Bioblast linkΒ«
Labels:
Enzyme: Complex II;succinate dehydrogenase
Pathway: F