Gastrointestinal Laboratory, Department of Small Animal Clinical Sciences, College of Veterinary Medicine and Biomedical Sciences, Texas A&M University, College Station, TX, USA; Clinic for Swine, Vetsuisse Faculty, University of Bern, BE, CH, Switzerland; Institute of Agricultural and Nutritional Sciences, Martin Luther University Halle-Wittenberg, Halle (Saale), SA, GER, Germany.
The Roslin Institute, University of Edinburgh, Midlothian, UK; Department of Veterinary Diagnostic and Production Animal Medicine, Iowa State University, Iowa, IA, USA.
Res Vet Sci. 2020 Jun;130:59-67. doi: 10.1016/j.rvsc.2020.02.002. Epub 2020 Feb 11.
Folate (vitamin B) and cobalamin (vitamin B) play an important role in amino acid metabolism, nucleic acid synthesis, and methyl group transfer. Two intracellular enzymes, methionine synthase and methylmalonyl-CoA mutase, are folate and/or cobalamin-dependent, respectively. At the cellular level, a lack of folate and cobalamin leads to accumulation of serum homocysteine (HCY) and a lack of cobalamin leads to increased methylmalonic acid (MMA) concentrations. Altered serum HCY and MMA concentrations can influence amino acid metabolism and nucleic acid synthesis in pigs. Therefore, we aimed to evaluate serum folate, cobalamin, HCY, and MMA concentrations in postweaning pigs between 6 and 26 weeks of age. Serum samples from 12 pigs collected at week 6, 7, 8, 9, 10, 14, 18, 22, and 26 as part of an unrelated study were analyzed. Serum folate (p < .0001), cobalamin (p = .0001), HCY (p < .0001), and MMA (p < .0001) concentrations differed significantly during the postweaning period between 6 and 26 weeks of age; with significantly higher serum HCY (at weeks 6 and 7 compared to weeks 9, 14, 18, 22, and 26) and MMA concentrations (at weeks 6, 7, and 8 compared to weeks 14, 18, 22, and 26) and an overall decrease of serum MMA concentrations from week 6 to week 14 in the pigs studied. This study suggests age-dependent changes in intracellular folate- and cobalamin-dependent metabolites (i.e., HCY and MMA) in pigs between 6 and 26 weeks of age, possibly reflecting decreased availability of intracellular folate and/or cobalamin for amino acid metabolism, nucleic acid synthesis, and methyl group transfer.
叶酸(维生素 B)和钴胺素(维生素 B)在氨基酸代谢、核酸合成和甲基转移中发挥重要作用。两种细胞内酶,即蛋氨酸合成酶和甲基丙二酰辅酶 A 变位酶,分别依赖于叶酸和/或钴胺素。在细胞水平上,叶酸和钴胺素的缺乏会导致血清同型半胱氨酸(HCY)的积累,而钴胺素的缺乏会导致甲基丙二酸(MMA)浓度的增加。血清 HCY 和 MMA 浓度的改变会影响猪的氨基酸代谢和核酸合成。因此,我们旨在评估 6 至 26 周龄断奶后猪的血清叶酸、钴胺素、HCY 和 MMA 浓度。分析了作为一项无关研究的一部分,在第 6、7、8、9、10、14、18、22 和 26 周收集的 12 头猪的血清样本。在 6 至 26 周龄的断奶后期间,血清叶酸(p<0.0001)、钴胺素(p=0.0001)、HCY(p<0.0001)和 MMA(p<0.0001)浓度差异显著;与第 9、14、18、22 和 26 周相比,第 6 和 7 周的血清 HCY(和 MMA)浓度显著更高(p<0.0001),并且从第 6 周到第 14 周,猪的血清 MMA 浓度总体下降。本研究表明,6 至 26 周龄猪的细胞内叶酸和钴胺素依赖性代谢物(即 HCY 和 MMA)随年龄而变化,这可能反映了细胞内叶酸和/或钴胺素对氨基酸代谢、核酸合成和甲基转移的可用性降低。