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Differential effect of biotin on carboxylase activity and mice skeletal muscle metabolism
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作者 Marco Antonio Parra Montes de Oca Gabriel Gutierrez-Ospina +4 位作者 Pablo Hofmann Salcedo Alma Lilia Fuentes-Farias Esperanza Melendez-Herrera Margarita Gomez-Chavarin Armida Baez-Saldana 《Advances in Bioscience and Biotechnology》 2013年第7期43-50,共8页
In mammalian skeletal muscle there are four carboxylases involved in several biochemical processes like gluconeogenesis, tricarboxylic acid cycle anaplerosis, metabolism of fatty acids and metabolism of various amino ... In mammalian skeletal muscle there are four carboxylases involved in several biochemical processes like gluconeogenesis, tricarboxylic acid cycle anaplerosis, metabolism of fatty acids and metabolism of various amino acids. It has been shown that biotin deficiency reduces body weight at the expense of muscular mass. When necessary, the liver uses skeletal muscle protein to provide glucose and amino acids to organs in need of such compounds. In this paper we analyzed carboxylase specific activities in hind limb skeletal muscle of 3 weeks old BALB/c male mice, at 0, 1, 4, 7, and 14 days of a specific diet with different biotin concentrations. Biotin was used at 0.0, 1.8 or 98.2 mg per kg of food;and was referred to as biotin deficient, sufficient and supplemented, respectively. Water and food supply and consumption by the three groups of mice were the same. Therefore, the observed effects were directly related to biotin ingestion. The body weight of biotin supplemented mice was the same as the body weight of mice in the biotin sufficient group, while biotin deficiency caused body weight reduction after 7 days of biotin depletion. We found that the total protein concentration in the vastus lateralis muscle is associated with the biotin content in the diet. After 7 days, the muscle total protein content was lower in mice of the biotin deficient group while it was higher in the mice from the biotin supplemented group 展开更多
关键词 Biotin Deficiency Biotin Supplementation Biotin Sufficiency Skeletal Muscle Carboxylases body growth
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Essential roles of stat5.1/stat5b in controlling fish somatic growth 被引量:4
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作者 Shuting Xiong Jie Mei +4 位作者 Peipei Huang Jing Jing Zhi Li Jingliang Kang Jian-Fang Gui 《Journal of Genetics and Genomics》 SCIE CAS CSCD 2017年第12期577-585,共9页
Signal transducer and activator of transcription 5b(STAT5b) has been identified as a key downstream mediator of growth hormone(GH) signaling in somatic growth of mammalian. However, the corresponding homologue gen... Signal transducer and activator of transcription 5b(STAT5b) has been identified as a key downstream mediator of growth hormone(GH) signaling in somatic growth of mammalian. However, the corresponding homologue gene of Stat5b is unknown in fish species. In this study, we generated loss-offunction mutants in stat5.1 and stat5.2, two stat5 homologues existing in zebrafish. In stat5.1-deficient zebrafish, a significant reduction of body length and body weight was detected in the embryos/larvae and adults compared with the wild-type control fish, and sexual size dimorphism in adult zebrafish was also eliminated. However, the stat5.2-deficient zebrafish displayed a normal developmental phenotype during all lifespan. Chromatin immunoprecipitation combined with deep sequencing(Ch IP-seq) method was adopted to further investigate the potential transcriptional targets of Stat5 protein and cast much light upon the biological function of Stat5. We identified more than 800 genes as transcriptional targets of Stat5 during zebrafish embryogenesis. KEGG analysis indicated that the Stat5 target gene network is predominantly linked to the metabolic pathways, neuroactive ligand-receptor interaction and JAK-STAT signaling pathways. Further validation studies suggested that Stat5.1 protein could directly regulate the expression of gh1, and stat5.1-mutated zebrafish showed a reduction of gh1 mRNA level. In the present study, stat5.1 was revealed as the corresponding homologue gene of Stat5b in fish species. Additionally,we found a novel molecular interaction between Stat5.1/Stat5b and GH, and unraveled a positive feedback loop Stat5.1-GH-Stat5.1 which is necessary for somatic growth and body development in zebrafish. 展开更多
关键词 ZEBRAFISH STAT5 body growth Sexual size dimorphism growth hormone
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