| Literature DB >> 31602398 |
Saki Shirako1, Yumi Kojima1, Naohiro Tomari2, Yasushi Nakamura3, Yasuki Matsumura4, Kaori Ikeda5, Nobuya Inagaki5, Kenji Sato1.
Abstract
PyroGlu-Leu is present in certain food protein hydrolysates and traditional Japanese fermented foods. Our previous study demonstrated that the oral administration of pyroGlu-Leu (0.1 mg/kg body weight) attenuates dysbiosis in mice with experimental colitis. The objective of this study was to elucidate why such a low dose of pyroGlu-Leu attenuates dysbiosis in different animal models. High fat diet extensively increased the ratio of Firmicutes/Bacteroidetes in feces of rats compared to control diet. Oral administration of pyroGlu-Leu (1 mg/kg body weight) significantly attenuated high fat diet-induced dysbiosis. By focusing on the production of intestinal antimicrobial peptides, we found that pyroGlu-Leu significantly increased the level of 4962 Da peptides, which identified as the propeptide of rattusin or defensin alpha 9, in ileum. We also observed increased tryptic fragment peptides from rattusin in the lumen. Here, we report that orally administered pyroGlu-Leu attenuates dysbiosis by increasing in the host antimicrobial peptide, rattusin.Entities:
Keywords: Nutrition; Peptides
Year: 2019 PMID: 31602398 PMCID: PMC6779755 DOI: 10.1038/s41538-019-0050-z
Source DB: PubMed Journal: NPJ Sci Food ISSN: 2396-8370
Fig. 1Effect of administration of pyroGlu-Leu (pEL) on the ratio of Firmicutes to Bacteroidetes in the feces. Control group (C), control + pEL group (C + pEL), high fat diet group (HF), high fat diet + pEL group (HF + pEL), respectively. The Y axis represents the ratio of Firmicutes/Bacteroidetes. Different letters indicate significant differences (p < 0.05) by Tukey’s test (n = 3). The results are presented as the mean ± SD
Summary of the peaks obtained by the LC-MS of the SEC fractions
| Peak no. | SEC Fr. | RT | Observed | Estimated molecular weight | SIM |
|---|---|---|---|---|---|
| 1 | 14-20, 32-34 (C), 14-21, 32-33 (CP), 14-26, 31-34 (HF), 14-26, 30-35 (HP) | 11.2 | 723.7, 761.8, 804.0, 851.2, 904.4, 964.6, 1033.4, 1112.9, 1205.4, 1315.0, 1446.4, 1607.0 | 14453 | ○ |
| 2 | 17-18 (C) | 11.8 | 775.7, 816.6, 861.8, 912.5, 969.4, 1034.0, 1107.7, 1192.9, 1292.2 | 15493 | ○ |
| 3 | 17-18 (C), 15-19 (HF), 14-19 (HP) | 11.7 | 796.2, 843.0, 895.6, 955.2, 1023.4, 1102.1, 1193.8, 1302.3, 1432.3, 1591.5 | 14312 | ○ |
| 4 | 22-27 (C), 21-25 (CP), 21-24 (HF), 21-24 (HP) | 10.5 | 879.9, 932.6, 989.7, 1055.6, 1131.0, 1217.7, 1319.2 | 15825 | ○ |
| 5 | 14-16 (CP) | 14.6 | 532.4, 576.4, 620.5 | ― | ― |
| 6 | 20, 23 (CP) | 12.8 | 787.2, 847.5, 885.5, 917.8, 972.0 | ― | ― |
| 7 | 14-19 (HF), 14-20 (HP) | 12.3 | 752.7, 792.2, 836.2, 885.3, 940.7, 1003.2, 1074.8, 1157.4, 1253.9, 1367.6, 1504.5, 1671.5 | 15033 | ○ |
| 8 | 30-32 (C), 29-31 (CP), 29-32 (HF), 29-31 (HP) | 10.7 | 739.9, 778.5, 821.9, 870.2, 924.5, 986.1, 1056.5, 1137.7 | 14779 | ○ |
| 9 | 30-33 (C), 29-31 (CP), 29-31 (HF), 29-31 (HP) | 11.4 | 721.8, 773.3, 832.6, 902.0, 983.9 | 10812 | ○ |
| 10 | 30-31 (C), 29-31 (CP), 28-31 (HF), 28-30 (HP) | 11.1 | 814.5, 862.3, 916.1, 977.1, 1046.9 | 14644 | ○ |
| 11 | 31 (C) | 11.3 | 782.4, 831.2, 886.5, 949.8, 1022.7 | 13289 | ○ |
| 12 | 33-35 (C), 34-35 (CP), 33-35 (HF), 33-35 (HP) | 10.9 | 765.5, 829.1, 904.4, 994.7, 1105.2, 1243.1 | 9941 | ○ |
| 13 | 31 (C), 25-27 (CP), 26 (HF) | 12.5 | 846.1, 890.2, 937.1, 989.0 | 17535 | ○ |
| 14 | 31-32 (C), 30-32 (CP), 30-32 (HF), 29-32 (HP) | 12.2 | 807.5, 846.0, 888.1, 934.8, 986.7, 1044.6 | 17748 | ○ |
| 15 | 26-27 (C), 25-27 (CP), 25-27 (HF), 25-26 (HP) | 9.2 | 973.7, 1459.8 | 2919 | ○ |
| 16 | 29-30 (C), 29-30 (CP), 28 (HF), 29-30 (HP) | 7.8 | 696.9, 1045.1 | 2086 | ○ |
| 17 | 29-30 (C), 29-30 (CP), 29-30 (HF), 28-30 (HP) | 8.7 | 749.3, 998.9 | 2991 | ○ |
| 18 | 28-30 (C), 28 (HF) | 9.5 | 564.3, 868.1, 1166.8 | ― | ― |
| 19 | 30-33 (C), 29-33 (CP), 29-33 (HF), 28-33 (HP) | 12.4 | 724.6, 760.8, 800.8, 845.3, 894.9, 950.8 | 15191 | ○ |
| 20 | 30-33 (C), 31-33 (CP), 31-33 (HF), 30-33 (HP) | 8.3 | 621.3, 710.0, 828.1, 993.5 | 4962 | ○ |
| 21 | 31 (C), 29-31 (CP), 30-31 (HF) | 7.5 | 555.1, 739.6 | 2218 | ○ |
| 22 | 31 (C), 31 (CP), 31 (HF) | 7.2 | 537.0, 715.5, 1032.6 | 2234 | ○ |
| 23 | 31 (C) | 8.5 | 536.9, 716.0 | 2139 | N.D. |
| 24 | 31-31 (C), 31-34 (CP), 30-34 (HF), 30-34 (HP) | 13.3 | 754.9, 792.6, 834.3, 880.6, 932.4 | 15823 | ○ |
| 25 | 32-34 (C), 32-33 (CP), 32-33 (HF), 32-33 (HP) | 12.0 | 726.0, 766.3, 811.3, 861.9 | 13777 | ○ |
| 26 | 32-33 (C), 32 (CP), 32 (HF), 31-32 (HP) | 8.0 | 712.3, 830.8, 996.9 | 4978 | ○ |
| 27 | 33-34 (C), 33-34 (CP), 33 (HF), 33 (HP) | 10.1 | 717.5, 789.2, 876.8, 986.3 | 7878 | ○ |
| 28 | 33-34 (C), 33-34 (CP), 33-34 (HF), 32-33 (HP) | 6.1 | 771.4, 841.8, 925.7, 1028.7, 1156.9 | 9239 | ○ |
| 29 | 33-34 (C), 32-33 (CP), 33 (HP) | 10.1 | 706.3, 734.5, 765.2, 798.4, 834.7, 874.3, 918.0 | 18330 | ○ |
| 30 | 33 (C), 33 (CP), 33 (HF), 33 (HP) | 8.5 | 706.1, 759.9, 823.6 | 9872 | ○ |
| 31 | 34 (C) | 13.4 | 895.3, 995.2, 1119.6, 1279.3 | 8931 | ○ |
| 32 | 34-35 (C), 35 (HF) | 8.7 | 577.8, 720.6, 957.0, 1063.1, 1196.1 | ― | ― |
| 33 | 34-35 (C), 34-35 (CP), 33-35 (HF), 34-35 (HP) | 7.4 | 566.9, 708.4, 944.0 | 2830 | ○ |
| 34 | 34 (C) | 9.2 | 636.0, 684.2, 739.0, 769.7, 839.4, 923.4 | ― | ― |
| 35 | 34-35 (C), 34-35 (CP) | 9.5 | 712.1, 745.8, 783.2, 824.3, 870.0 | 15653 | N.D. |
| 36 | 34-35 (C), 34-35 (CP), 34-35 (HF), 34 (HP) | 12.2 | 701.3, 738.2, 779.1, 824.8 | 14013 | ○ |
| 37 | 35 (C) | 9.8 | 736.1, 809.6, 899.4, 1011.6, 1156.0 | 8087 | N.D. |
| 38 | 25-26 (CP), 24-26 (HF), 25-27 (HP) | 8.6 | 1019.1, 1273.4 | 5094 | ○ |
| 39 | 27 (CP) | 8.9 | 674.9, 911.8 | 2590 | ○ |
| 40 | 28 (CP) | 8.3 | 654.3, 980.9 | 1960 | ○ |
| 41 | 30-31 (CP), 30 (HF) | 8.4 | 699.3, 932.3 | 2791 | ○ |
| 42 | 30 (CP) | 10.1 | 644.3, 664.3, 685.7, 708.6, 732.9, 759.1 | 21240 | N.D. |
| 43 | 31 (CP), 31 (HF), 31 (HP) | 6.8 | 695.6, 834.5 | 4168 | ○ |
| 44 | 31 (CP), 30 (HP) | 10.4 | 942.1, 1046.7, 1177.4, 1345.5, 1569.1 | 9414 | N.D. |
| 45 | 32 (CP), 31-32 (HP) | 9.0 | 681.8, 749.7, 833.0, 936.9, 1070.4, 1248.7 | 7491 | ○ |
| 46 | 33 (CP) | 9.5 | 672.6, 691.9, 712.2, 733.8, 756.7 | 24138 | N.D. |
| 47 | 32 (CP) | 10.3 | 828.5, 887.5, 935.2, 1168.9, 1335.9, 1580.0 | ― | ― |
| 48 | 33 (CP) | 10.9 | 726.0, 760.7, 798.7, 840.6 | 15934 | N.D. |
| 49 | 34 (CP) | 7.6 | 607.6, 708.8, 850.5, 1062.9 | 4244 | ○ |
| 50 | 34 (CP) | 8.8 | 664.6, 691.4, 720.1, 751.4, 785.5, 822.8, 864.0 | 17232 | N.D. |
| 51 | 34 (CP) | 7.7 | 626.4, 730.7, 876.8, 1095.4 | 4377 | N.D. |
| 52 | 34 (CP) | 11.1 | 761.8, 821.4, 851.3, 904.4, 964.6, 1058.6, 1164.3, 1293.7 | ― | ― |
| 53 | 35 (CP), 35 (HF) | 7.9 | 617.0, 649.7, 685.7, 725.8, 771.2, 822.4, 881.2 | 12314 | N.D. |
| 54 | 34-35 (CP), 35 (HF), 34-35 (HP) | 13.5 | 841.9, 912.1, 994.9, 1094.2, 1215.7 | 10930 | ○ |
| 55 | 35 (CP), 35 (HF), 35 (HP) | 12.9 | 889.2, 957.6, 1037.3, 1131.7, 1244.6, 1382.7 | 12433 | ○ |
| 56 | 28 (HF), 28 (HP) | 9.2 | 520.3 | 520 | ○ |
| 57 | 29 (HF) | 7.5 | 672.9, 779.5 | 4906 | ○ |
| 58 | 29-30 (HF) | 7.8 | 697.0 | 697 | ○ |
| 59 | 29 (HF) | 7.0 | 819.7, 983.8 | 4903 | ○ |
| 60 | 35 (HF) | 8.1 | 524.9, 655.9, 1454.1, 1595.4, 1963.1 | ― | ― |
| 61 | 35 (HF), 35 (HP) | 12.3 | 703.2, 739.4, 781.3, 827.1, 878.9, 937.4, 1003.3, 1157.3, 1671.6 | ― | ― |
| 62 | 29 (HP) | 8.8 | 504.3, 1276.1 | ― | ― |
| 63 | 28 (HP) | 14.5 | 532.4, 576.3, 620.4, 664.5, 708.4, 1425.5, 1613.9, 1828.1 | ― | ― |
| 64 | 29 (HP) | 8.8 | 504.3, 648.9 | 2255 | ○ |
| 65 | 32 (HP) | 10.6 | 765.0, 834.5, 917.9, 1019.7, 1147.1, 1310.8 | 9167 | N.D. |
| 66 | 33-34 (HP) | 8.7 | 761.8, 888.5 | 5329 | N.D. |
| 67 | 34 (HP) | 9.8 | 904.4, 1033.7, 1205.6 | 7225 | N.D. |
| 68 | 35 (HP) | 6.4 | 549.7, 584.0, 603.0, 667.3, 718.8, 778.7, 849.2 | ― | ― |
| 69 | 35 (HP) | 8.1 | 599.0, 718.4, 897.9 | 3588 | ○ |
The aliquots of the size exclusion chromatography fractions (SEC Fr.) were subjected to LC-MS
RT = retention time of LC-MS
The molecular weights were calculated using the observed multivalent ions
“―“ represents Molecular weight could not be calculated
“○”represents Peak was observed by selected ion monitoring (SIM) for the top 2 or 3 divalent ions.
“N.D.“ represents Peak could not be detected by SIM analysis
Fig. 2Effect of pyroGlu-Leu on the peak area of the peptides in the 30% acetic acid extract of ileum. Refer the figure legend of Fig. 1 for affiliation of animal groups. The Y axis represents peak area of LC-MS. Asterisks (**) and (*) represent p < 0.01 and p < 0.05, respectively, compared with the vehicle (C vs. C + pEL, HF vs. HF + pEL, respectively) by Student’s t-test (n = 3). The results are presented as the mean ± SD
Fig. 3Detection of tryptic peptides from the active form of rattusin and defensin alpha 9. Refer the figure legend of Fig. 1 for affiliation of animal groups. The amino acid sequence of rattusin and defensin alpha 9 precursors, respectively. The sequence of known active form is underlined. Arrows indicate the trypsin cleavage sites a. Comparison of peak area of fragment peptides–rattusin b and defensin alpha 9 c. The Y axis represents peak area of LC-MS/MS. Asterisks (**) and (*) represent p < 0.01 and p < 0.05, respectively, compared with the vehicle (C vs. C + pEL, HF vs. HF + pEL, respectively) by Student’s t-test (n = 3). The results are presented as the mean ± SD
Fig. 4Mass chromatograms of RP-HPLC-MS of SEC Fr. 32 of HF + pEL group and mass spectra of the peak marked with arrowhead. Total ion monitoring mode a and selected (m/z = 710.0, 828.1, 993.5) ion monitoring mode b, respectively. The peptides whose molecular weight could be estimated were detected by LC-MS in SIM mode for the highest 2 or 3 multivalent ions. The Y axis represents ion intensity