| Literature DB >> 29644075 |
Fang Chen1,2, Shihai Zhang1,2, Zixiao Deng1, Qiqi Zhou1, Lin Cheng1, Sung Woo Kim3, Jun Chen1, Wutai Guan1,2.
Abstract
BACKGROUND: Milk protein is crucial for milk quality in sows and health of newborn piglets. Plasma amino acids (AA) in sows are important precursors for milk protein synthesis in the mammary gland. In order to study the regulation of AA transported in sow mammary glands and possible underlying mechanisms, we measured the expression of genes coding for milk proteins, AA transporter expressions, and plasma AA concentrations in sows at three different physiological stages (D-17, D1 and D17 of lactation), and then further investigated the regulation of AA transport across the cell membrane by adaptive mechanisms using pig mammary epithelial cells (PMEC) as an in vitro model. PMEC were cultured in DMEM:F12 with 4 amino acid concentrations (0 × AA complex, 1 × AA complex, 5 × AA complex, and 25 × AA complex). Classes of AA complexes evaluated in this study included neutral AAs (L-Ala + L-Ser + L-Cys), acidic AAs (L-Asp, L-Glu) and neutral + basic AAs (L-Ala + L-Ser + L-Cys + L-Lys).Entities:
Keywords: Amino acid transporter; Lactation; Mammary epithelial cell; Milk protein; Sow
Year: 2018 PMID: 29644075 PMCID: PMC5891945 DOI: 10.1186/s40104-018-0250-4
Source DB: PubMed Journal: J Anim Sci Biotechnol ISSN: 1674-9782
Ingredients of the sow diets (air-dry basis)
| Ingredients, % | Late stage of pregnancy | Lactation period |
|---|---|---|
| Corn | 65.60 | 62.30 |
| Soybean meal | 22.0 | 23.0 |
| Soybean oil | 1.00 | 3.00 |
| Wheat bran | 8.0 | 5.0 |
| Fish meal | 0.0 | 3.0 |
| Limestone | 0.9 | 1.0 |
| Calcium phosphate | 1.2 | 1.3 |
| Salt | 0.3 | 0.4 |
| Vitamin premixa | 0.5 | 0.5 |
| Mineral premixb | 0.5 | 0.5 |
| Total | 100.0 | 100.0 |
| Nutrition standards, % | ||
| DE, MJ/kg | 13.45 | 13.87 |
| CP | 16.05 | 17.71 |
| CF | 3.75 | 3.40 |
| EE | 4.12 | 5.76 |
| Ca | 0.86 | 0.84 |
| P | 0.63 | 0.68 |
| AP | 0.41 | 0.44 |
| Lys | 0.86 | 1.02 |
aProvided the following per kilogram of diet: 2,400 IU of vitamin A, 3,000 IU of vitamin D3, 60 mg of vitamin E, 5 mg of vitamin K, 5 mg of vitamin B1, 12.5 mg of vitamin B2, 24 mg of pantothenic acid, 50 mg of niacin, 5 mg of vitamin B6, 0.037 mg of vitamin B12, 2.2 mg of folacin, 0.1 mg of biotin
bProvided the following per kilogram of diet: 8 mg of Cu, 60 mg of Fe, 35 mg of Mn, 65 mg of Zn, 0.35 mg of I, 0.3 mg of Se
Primers for the genes of milk protein
| Gene name | Accession number | Primers (5'→3') | Size, bp |
|---|---|---|---|
|
| NM_001004029 | F: ACAAATGAGGACAAGCATACCC | 175 |
| R: GAGGGATGTTGGTGAATAATGG | |||
|
| NM_001004030 | F: GAAGTGGGATATGCCAGCAG | 148 |
| R: CCTGGAGATATTGGGGGAAC | |||
|
| NM_214434 | F: TCATCCTTGCCTGCTTCGT | 367 |
| R: GGCATTCCTTTACGCTTGG | |||
|
| NM_001004026 | F: GCCTATCCTGGCATTAACACTG | 286 |
| R: TGGGTAGACATTTGGCTGGTC |
Abbreviation: CSN1S1 αS1-casein, CSN1S2 αS2-casein, CSN2 β-casein, CSN3 κ-casein
Primers for the genes of AA transporters
| Gene name | Gene accession | Primers sequence (5′→3′) | Size, bp |
|---|---|---|---|
|
| NM_001164649 | F: TCCACTCCATTGTTATTCTGCC | 172 |
| R: TTGTCCACCTGGTTCTTCTCTTC | |||
|
| HSU03505 | F: AGCAGGTGGAAGTGCGAATG | 160 |
| R: CGAAGAAGCCCTCCACACACT | |||
|
| BC037310 | F: TCACGCAGTCATCGTCTTGC | 171 |
| R: TTGTCCACGCCATTGTTCTC | |||
|
| XM_003125088 | F: AGACCTCTCTTTGATCCTGGC | 190 |
| R: TGTTTCCTCCTCTGATTTGCA | |||
|
| XM_003127237 | F: AAGGAGTCGGTTCTGTGATGG | 108 |
| R: TAAAAGTCGGCGAGGGTGA | |||
|
| EU587017 | F: TGCATGACATTGTCCGCAG | 140 |
| R: TTGGATAAAAGGCAACCCG | |||
|
| XM_003353809 | F: TGAACAGCAGCGTGACTGTG | 162 |
| R: ACTGGCGGATGTAGGAGAAGA | |||
|
| GQ387269 | F: TCCAGAAGCTCTAGCCCAACT | 190 |
| R: CAAAACCAAGCAGCAACCC | |||
|
| NM_018057 | F: GCTTCTTGGGCTTTGTGATG | 232 |
| R: GGTGAGTCCGTGCTTGTTTC | |||
|
| NM_001012613 | F: GCCTGAGAGCAAGACCAAAC | 166 |
| R: GCCGTAGCCGAAGTAGATGA | |||
|
| EU155140 | F: GCCCCAGAATCAGCAAAAAGTA | 97 |
| F: GATGCTGAAGGCTGGCAAAA | |||
|
| NM_003486 | F: CTCTTCCTGATCGCCGTCTC | 165 |
| R: CTTCTGACACAGGACGGTCGT | |||
|
| NM_003983 | F: CTGCCGCCTGCATGTGT | 78 |
| R: TGTGCCCCACTTGACATAGG | |||
|
| EU047705 | F: TTTGGTTCCCAAGGTTGCA | 95 |
| R: GCAGCTTCCTGGCATTGC | |||
|
| AF135830 | F: TCGCTGTGACTTTTGGAGAGA | 112 |
| R: CGGGAGGAGGTGAAGAGG | |||
|
| XM_003127014 | F: TGGACCCTCGAAAGAACCTAC | 216 |
| R: TGATCCCTCCGAAAGTGGA | |||
|
| AB271957 | F: AATGTGGCCTACTTCACGACC | 193 |
| R: CCTCCCGAGATGCAACATAGA | |||
|
| XM_003355629 | F: AAGAACCTGGGCTATCTCGG | 138 |
| R: TGTTGCGTTAGGACTCGTTG | |||
|
| NM_018976 | F: GTTACCTTTGGTGATCCAGGC | 96 |
| R: ACCAATGACACCAGCAGAACC | |||
|
| XM_003355630 | F:GTTCTTTGCCTTCACTCACTA | 186 |
| R: GACCCAAGCCTCCAGATT | |||
|
| AY610067 | F: CAAAAGAGAACCTACATTCCTTCACA | 100 |
| R: TCTAATGCCACTTTTGCTTCAACT |
The component analysis of colostrum and milk
| Item, % | Colostrum | Milk | |
|---|---|---|---|
| Lactose | 9.38 ± 0.19A | 11.29 ± 0.37B | 0.00 |
| Milk fat | 2.61 ± 0.32B | 9.45 ± 1.59A | 0.00 |
| Milk protein | 8.06 ± 0.23A | 3.55 ± 0.39B | 0.00 |
| Solids-not-fat | 19.32 ± 0.56 | 17.86 ± 1.04 | 0.27 |
Note: All data shown as means ± SEM, values with different capital letter superscripts differ (P < 0.01)
The relative mRNA abundance of CSN1S1, CSN2, CSN1S2 and CSN3
| Gene | D-17 | D1 | D17 | |
|---|---|---|---|---|
|
| 69.56 ± 10.55A | 497.22 ± 24.23B | 1179.49 ± 74.96C | 0.00 |
|
| 7.45 ± 1.46A | 224.86 ± 52.09B | 1673.83 ± 190.20C | 0.00 |
|
| 1.10 ± 0.17A | 69.31 ± 11.44B | 170.75 ± 19.44C | 0.00 |
|
| 12.73 ± 1.55A | 394.18 ± 49.17B | 1193.37 ± 132.85C | 0.00 |
Note: All data shown as means ± SEM, values with different capital letter superscripts differ (P < 0.01)
Comparison of free AA in sow blood plasma at different physiological stages
| AA, μmol/L | D − 17 | D 1 | D 17 | |
|---|---|---|---|---|
| Thr | 21.03 ± 2.00A | 47.44 ± 4.31B | 15.26 ± 1.28A | 0.00 |
| Ser | 15.99 ± 1.73a | 22.27 ± 2.14b | 14.42 ± 1.09a | 0.02 |
| Glu | 22.35 ± 0.65a | 27.19 ± 3.33b | 23.15 ± 1.56ab | 0.03 |
| Gly | 70.11 ± 3.48B | 47.34 ± 1.49Aa | 56.40 ± 1.26Ab | 0.00 |
| Ala | 34.30 ± 3.00A | 56.75 ± 5.44B | 25.91 ± 0.86A | 0.00 |
| Val | 1.77 ± 0.11A | 5.14 ± 0.68B | 2.63 ± 0.26A | 0.00 |
| Cys | 13.26 ± 0.99A | 18.71 ± 1.60B | 11.20 ± 0.67A | 0.00 |
| Met | 27.15 ± 1.22A | 37.87 ± 3.98B | 26.54 ± 0.85A | 0.01 |
| Ile | 20.14 ± 1.33A | 30.82 ± 3.73B | 21.32 ± 0.81A | 0.01 |
| Leu | 18.33 ± 0.44 | 22.46 ± 2.68 | 17.92 ± 1.85 | 0.24 |
| Tyr | 22.08 ± 1.49Aa | 32.05 ± 2.95B | 28.18 ± 0.92Ab | 0.01 |
| Phe | 12.74 ± 1.03Aa | 18.25 ± 2.36Ab | 20.01 ± 1.09B | 0.03 |
| Orn | 6.43 ± 0.69 | 8.59 ± 1.46 | 6.68 ± 0.61 | 0.27 |
| Lys | 18.86 ± 2.08A | 34.41 ± 2.77B | 20.31 ± 2.17A | 0.00 |
| His | 8.75 ± 1.09a | 13.16 ± 1.62b | 10.36 ± 1.49a | 0.02 |
| Arg | 42.28 ± 3.61 | 40.86 ± 3.61 | 42.01 ± 5.85 | 0.31 |
| Asp | 1.03 ± 0.17a | 1.96 ± 0.21b | 1.44 ± 0. 15ab | 0.04 |
Note: All data shown as means ± SEM, values with the same lower case letter superscripts do not differ (P > 0.05), with different lower case letter superscripts differ (P < 0.05), and with different capital letter superscripts differ (P < 0.01)
Fig. 1The mRNA abundance of anionic AA transporters at different stages in porcine mammary gland. Gene expression of anionic AA transporters in sow mammary gland tissues at D-17, D1 and D17 of lactation. All data are shown as means ± SEM. In the histogram of the same gene, values with different lower case letter superscripts differ (P < 0.05)
Fig. 2The mRNA abundance of cationic AA transporters at different stages in porcine mammary gland. Gene expression of cationic AA transporters in sow mammary gland tissues at D-17, D1 and D17 of lactation. All data are shown as means ± SEM. In the histogram of the same gene, values with different lower case letter superscripts differ (P < 0.05)
Fig. 3The mRNA abundance of neutral AA transporters at different stages in porcine mammary gland. Gene expression of neutral AA transporters in sow mammary gland tissues at D-17, D1 and D17 of lactation. All data are shown as means ± SEM. In the histogram of the same gene, values with different lower case letter superscripts differ (P < 0.05)
Fig. 4The mRNA abundance of neutral cationic AA transporters and Heavy subunit (HSHAT) AA transporters at different stages in porcine mammary gland. Gene expression of neutral cationic AA transporters and Heavy HSHAT AA transporters in sow mammary gland tissues at D-17, D1 and D17 of lactation. All data are shown as means ± SEM. In the histogram of the same gene, values with different lower case letter superscripts differ (P < 0.05); those with different capital letter superscripts differ (P < 0.01)
Fig. 5Protein abundance of ASCT1, EAAT3 and SNAT2 at different stages in porcine mammary gland. Protein expression of AA transporters, including ASCT1 (a), EAAT3 (b) and SNAT2 (c) in sow mammary gland tissues at D-17, D1 and D17 of lactation. All data are shown as means ± SEM. In the histogram of the same gene, values with different lower case letter superscripts differ (P < 0.05); those with different capital letter superscripts differ (P < 0.01)
Fig. 6The gene expression of SLC38A2, SLC1A4, SLC1A1, SLC6A14 in PMEC cells cultured with different concentration of AAs. Cells were assigned to 4 concentrations of AA complex in each of 2 mediums for each of 3 classes of AA complexes (Neutral AAs complex: L-Ala + L-Ser + L-Cys; Acidic AA complex: L-Asp + L-Glu; Neutral + basic AAs complex: L-Ala + L-Ser + L-Cys + L-Lys). Gene expression of SLC38A2 and SLC1A4 were detected in those cells treated with neutral AA complexes, SLC1A1 were detected in those cells treated with acidic AA complex, and SLC6A14 were detected in those cells treated with Neutral + basic AAs complex. All data are shown as means ± SEM. In the histogram of the same gene, values with different lower case letter superscripts differ (P < 0.05)