Supplementing conjugated and non-conjugated L-methionine and acetate alters expression patterns ofCSN2, proteins and metabolites related to protein synthesis in bovine mammary cells

Author:

Jeon Seung-Woo,Conejos Jay Ronel,Kim Jungeun,Kim Min-Jeong,Lee Jeong-Eun,Lee Baek-Seok,Park Jin-Seung,Moon Jun-Ok,Lee Jae-Sung,Lee Hong-Gu

Abstract

AbstractThe experiments reported in this research paper aimed to determine the effect of supplementing different forms of L-methionine (L-Met) and acetate on protein synthesis in immortalized bovine mammary epithelial cell line (MAC-T cells). Treatments were Control, L-Met, conjugated L-Met and acetate (CMA), and non-conjugated L-Met and Acetate (NMA). Protein synthesis mechanism was determined by omics method. NMA group had the highest protein content in the media and CSN2 mRNA expression levels (P< 0.05). The number of upregulated and downregulated proteins observed were 39 and 77 in L-Met group, 62 and 80 in CMA group and 50 and 81 in NMA group from 448 proteins, respectively (P< 0.05). L-Met, NMA and CMA treatments stimulated pathways related to protein and energy metabolism (P< 0.05). Metabolomic analysis also revealed that L-Met, CMA and NMA treatments resulted in increases of several metabolites (P< 0.05). In conclusion, NMA treatment increased protein concentration and expression level ofCSN2mRNA in MAC-T cells compared to control as well as L-Met and CMA treatments through increased expression of milk protein synthesis-related genes and production of the proteins and metabolites involved in energy and protein synthesis pathways.

Publisher

Cambridge University Press (CUP)

Subject

Animal Science and Zoology,General Medicine,Food Science

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