Literature DB >> 10539772

Histidine-imbalanced diets stimulate hepatic histidase gene expression in rats.

N Torres1, L Beristain, H Bourges, A R Tovar.   

Abstract

A high protein concentration in the diet induces the gene expression of several amino acid degrading enzymes such as histidase (Hal) in rats. It is important to understand whether the amino acid pattern of the dietary protein affects the gene expression of these enzymes. The purpose of the present work was to study the effect of a histidine-imbalanced diet on the activity and mRNA concentration of rat hepatic histidase. Seven groups of six rats were fed one of the following diets: 1) 6% casein (basal), 2) 20% casein, 3) 35% casein, 4) an imbalance diet containing 6% casein plus a mixture of indispensable amino acids (IAA) equivalent to a 20% casein diet without histidine (I-20), 5) 6% casein plus a mixture of IAA equivalent to a 35% casein diet without histidine (I-35), 6) a corrected diet containing 6% casein plus IAA including histidine equivalent to a 20% casein diet, 7) a corrected diet containing 6% casein plus IAA including histidine equivalent to a 35% casein diet. Serum histidine concentration was inversely proportional to the protein content of the diet, and it was significantly higher in rats fed the corrected diets compared to their respective imbalanced diet groups. Hal activity increased as the protein content of the diet increased. Greater histidine imbalance resulted in lower food intake and higher Hal activity. Rats fed histidine-corrected diets had lower activity than their respective imbalanced groups. Differences in Hal activity were associated with differences in the concentration of Hal mRNA. These results indicate that rats fed a histidine-imbalanced diet exhibit reduced food intake and weight gain and increased Hal gene expression as a consequence of an increased amino acid catabolism.

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Year:  1999        PMID: 10539772     DOI: 10.1093/jn/129.11.1979

Source DB:  PubMed          Journal:  J Nutr        ISSN: 0022-3166            Impact factor:   4.798


  3 in total

1.  PPARα via HNF4α regulates the expression of genes encoding hepatic amino acid catabolizing enzymes to maintain metabolic homeostasis.

Authors:  Alejandra V Contreras; Claudia Rangel-Escareño; Nimbe Torres; Gabriela Alemán-Escondrillas; Victor Ortiz; Lilia G Noriega; Ivan Torre-Villalvazo; Omar Granados; Laura A Velázquez-Villegas; Sandra Tobon-Cornejo; Diana González-Hirschfeld; Félix Recillas-Targa; Elizabeth Tejero-Barrera; Frank J Gonzalez; Armando R Tovar
Journal:  Genes Nutr       Date:  2015-01-10       Impact factor: 5.523

2.  Histidine: A Systematic Review on Metabolism and Physiological Effects in Human and Different Animal Species.

Authors:  Joanna Moro; Daniel Tomé; Philippe Schmidely; Tristan-Chalvon Demersay; Dalila Azzout-Marniche
Journal:  Nutrients       Date:  2020-05-14       Impact factor: 5.717

3.  Plasma and Urinary Amino Acid-Derived Catabolites as Potential Biomarkers of Protein and Amino Acid Deficiency in Rats.

Authors:  Joanna Moro; Nadezda Khodorova; Daniel Tomé; Claire Gaudichon; Catherine Tardivel; Thierry Berton; Jean-Charles Martin; Dalila Azzout-Marniche; Delphine Jouan-Rimbaud Bouveresse
Journal:  Nutrients       Date:  2021-05-07       Impact factor: 5.717

  3 in total

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