| Literature DB >> 35516346 |
Mengliang Ye1, Wei Jia1,2, Chunhui Zhang1, Qingshan Shen1, Lingyu Zhu1,3, Lisha Wang1.
Abstract
The aim of this study was to isolate and identify osteogenic bioactive peptides from yak bones collagen, while simultaneously investigating their underlying mechanisms for promoting osteoblast proliferation. Response surface methodology (RSM) was employed to investigate the effect of hydrolysis variables on the production of peptides with osteoblast proliferation-promoting activity (OPPA). The concentration of soluble peptides reached 0.5169 mg mL-1, which was well matched with the value (0.5189 mg mL-1) predicted by the model, with the following optimized conditions: hydrolysis time, 3.6 h; pH, 6.12; hydrolysis temperature, 54 °C; E/S (enzyme to substrate) of 5637 U g-1. Hydrolysates were then separated using an ultrafiltration membrane system, and the peptides (<3 kDa) possessed excellent OPPA with a dose-response relationship. A total of 59 novel peptides were identified by HPLC-MS/MS with Mascot analysis. GPSGPAGKDGRIGQPG (GP-16) and GDRGETGPAGPAGPIGPV (GD-18) were selected for docking to investigate the underlying mechanisms of interaction. The molecular docking study revealed that osteoblast proliferation stimulation activity of GP-16 and GD-18 was mainly attributed to the formation of very strong hydrogen bonds with the epidermal growth factor receptor (EGFR). These results indicate that such peptides are promising in the discovery of potential candidates for the future industrial production of functional peptides, which could be used in the mediated treatment of osteoporosis. This journal is © The Royal Society of Chemistry.Entities:
Year: 2019 PMID: 35516346 PMCID: PMC9064140 DOI: 10.1039/c9ra00945k
Source DB: PubMed Journal: RSC Adv ISSN: 2046-2069 Impact factor: 4.036
Fig. 1Effect of hydrolysis time, pH, E/S and temperature on the CSP with OPPA.
ANOVA for response surface quadratic model analysis of variancea
| Source | Sum of squares | Coefficient estimate | Degree of freedom | Standard error | Mean square |
|
|
|---|---|---|---|---|---|---|---|
| Model | 0.073 | 0.49 | 14 | 2.765 × 10−3 | 5.204 × 10−3 | 136.14 |
|
|
| 0.010 | −0.029 | 1 | 1.785 × 10−3 | 0.010 | 270.12 | <0.0001 |
|
| 0.032 | 0.052 | 1 | 1.785 × 10−3 | 0.032 | 847.79 | <0.0001 |
|
| 1.070 × 10−3 | −9.442 × 10−3 | 1 | 1.785 × 10−3 | 1.070 × 10−3 | 27.99 | 0.0001 |
|
| 5.031 × 10−4 | −6.475 × 10−3 | 1 | 1.785 × 10−3 | 5.031 × 10−4 | 13.16 | 0.0027 |
|
| 5.176 × 10−4 | −0.011 | 1 | 3.091 × 10−3 | 5.176 × 10−4 | 13.54 | 0.0025 |
|
| 5.176 × 10−4 | 0.011 | 1 | 3.091 × 10−3 | 5.176 × 10−4 | 13.54 | 0.0025 |
|
| 8.151 × 10−4 | 0.014 | 1 | 3.091 × 10−3 | 8.151 × 10−4 | 21.32 | 0.0004 |
|
| 6.300 × 10−4 | 0.013 | 1 | 3.091 × 10−3 | 6.300 × 10−4 | 16.48 | 0.0012 |
|
| 1.257 × 10−3 | −0.018 | 1 | 3.091 × 10−3 | 1.257 × 10−3 | 32.88 | <0.0001 |
|
| 4.906 × 10−4 | 0.011 | 1 | 3.091 × 10−3 | 4.906 × 10−4 | 12.84 | 0.0030 |
|
| 7.707 × 10−3 | −0.034 | 1 | 2.428 × 10−3 | 7.707 × 10−3 | 201.63 | <0.0001 |
|
| 0.011 | −0.041 | 1 | 2.428 × 10−3 | 0.011 | 278.44 | <0.0001 |
|
| 0.015 | −0.048 | 1 | 2.428 × 10−3 | 0.015 | 385.82 | <0.0001 |
|
| 2.267 × 10−3 | −0.019 | 1 | 2.428 × 10−3 | 2.267 × 10−3 | 59.31 | <0.0001 |
| Residual | 5.351 × 10−4 | 14 | 3.822 × 10−5 | ||||
| Lack of fit | 3.496 × 10−4 | 10 | 3.496 × 10−5 | 0.75 |
| ||
| Pure error | 1.855 × 10−4 | 4 | 4.638 × 10−5 | ||||
| Cor total | 0.073 | 28 | |||||
| Std. Dev. | 6.183 × 10−3 |
| 0.9927 | ||||
| Mean | 0.44 | Adj | 0.9854 | ||||
| C.V. (%) | 1.42 |
| 0.9686 | ||||
| Press | 2.304 × 10−3 | Adeq precision | 44.755 | ||||
Std. Dev., standard deviation; C.V., coefficient of variation.
Fig. 2Response surface plots (3D) for the effects of variables on OPPA: (A) pH and time; (B) E/S and temperature; (C) pH and E/S; (D) pH and temperature; (E) temperature and time; (F) E/S and time.
Fig. 3Molecular weight distribution and proportion of YBCP (<3 kDa).
Fig. 4Peptides sequences identified from YBCP (<3 kDa) by HPLC-MS/MS and Swiss-Prot database search.
Molecular docking of peptides (belonging to α1 chain) profile of the fraction from yak bone collagen peptides (YBCP) identified by HPLC-MS/MSa
| Rank | Amino acid sequence | Mr Calc. | Site range | Length | Score | -CE (kcal mol−1) |
|---|---|---|---|---|---|---|
| 1 | GKSGDRGETGPAGPAGPIGPVGAR | 2160.1036 | 1060–1083 | 24 | 75.43 | 158.080 |
| 2 | GKSGDRGETGPAGPAGPIGPVGA | 2004.0025 | 1060–1082 | 23 | 63.23 | 132.928 |
| 3 | SGDRGETGPAGPAGPIGPVGA | 1818.8861 | 1062–1082 | 21 | 75.10 | 131.953 |
| 4 | GKSGDRGETGPAGPAGPIGP | 1776.8755 | 1060–1079 | 20 | 42.04 | 119.609 |
| 5 | GKSGDRGETGPAGPAGPIGPV | 1875.9439 | 1060–1080 | 21 | 69.04 | 117.383 |
| 6 | GADGAPGKDGVRGL | 1268.6473 | 751–764 | 14 | 42.97 | 117.184 |
| 7 | GDRGETGPAGPAGPIGPVGA | 1731.8540 | 1063–1082 | 20 | 69.81 | 108.143 |
| 8 | SGDRGETGPAGPAGPIGPV | 1690.8275 | 1062–1080 | 19 | 91.32 | 107.348 |
| 9 | KSGDRGETGPAGPAGPIGPV | 1818.9224 | 1061–1080 | 20 | 77.53 | 105.362 |
| 10 | GDRGETGPAGPAGPIGPV | 1603.7955 | 1063–1080 | 18 | 99.84 | 98.992 |
| 11 | GPPGPAGPAGERGEQGPA | 1600.7594 | 619–636 | 18 | 56.78 | 98.003 |
| 12 | GAPGADGPAGAPGTPGPQG | 1530.7063 | 934–952 | 19 | 62.80 | 89.869 |
| 13 | DRGETGPAGPAGPIGPV | 1546.7740 | 1064–1080 | 17 | 76.90 | 86.238 |
| 14 | STGISVPGPMGPSGPR | 1511.7403 | 171–186 | 16 | 58.51 | 85.072 |
| 15 | RGETGPAGPAGPIGPVGA | 1559.8056 | 1065–1082 | 18 | 45.22 | 83.832 |
| 16 | TGPAGPAGPIGPVGA | 1217.6405 | 1068–1082 | 15 | 51.32 | 75.836 |
| 17 | RGETGPAGPAGPIGPV | 1431.7470 | 1065–1080 | 16 | 56.63 | 65.216 |
| 18 | GERGFPGLPGPS | 1169.5829 | 967–978 | 12 | 45.82 | 62.140 |
| 19 | GISVPGPMGPSGPR | 1307.6656 | 173–186 | 14 | 73.13 | 59.186 |
| 20 | ISVPGPMGPSGPR | 1266.6391 | 174–186 | 13 | 76.32 | 58.233 |
| 21 | TGPAGPAGPIGPV | 1089.5819 | 1068–1080 | 13 | 50.86 | 54.586 |
| 22 | SVPGPMGPSGPR | 1153.5550 | 175–186 | 12 | 60.96 | 48.188 |
| 23 | GISVPGPMGPS | 997.4903 | 173–183 | 11 | 41.83 | 46.853 |
| 24 | GPAGPAGPIGPV | 988.5342 | 1069–1080 | 12 | 63.19 | 45.080 |
| 25 | GPAGPPGPIGNV | 1031.5400 | 844–855 | 12 | 93.84 | 42.997 |
| 26 | GPAGPIGPV | 763.4229 | 1072–1080 | 9 | 42.18 | 34.299 |
| 27 | ISVPGPM | 715.3575 | 174–180 | 7 | 51.80 | 29.412 |
| 28 | GLPGPPGAPGPQ | 1043.5400 | 187–198 | 12 | 47.00 | 29.395 |
Mr Calc., molecular calculation; CE, CDOCKER_energy.
Molecular docking of peptides (belonging to α2 chain) profile of the fraction from yak bone collagen peptides (YBCP) identified by HPLC-MS/MSa
| Rank | Amino acid sequence | Mr Calc. | Site range | Length | Score | -CE (kcal mol−1) |
|---|---|---|---|---|---|---|
| 1 | LAGHHGDQGAPGAVGPAGPR | 1820.9030 | 1032–1051 | 20 | 47.16 | 156.365 |
| 2 | GPAGPSGPAGKDGRIGQPG | 1674.8438 | 1052–1070 | 19 | 94.54 | 124.349 |
| 3 | LAGHHGDQGAPGAVGPA | 1510.7277 | 1032–1048 | 17 | 44.03 | 123.166 |
| 4 | GPAGPSGPAGKDGRIGQPGA | 1745.8809 | 1052–1071 | 20 | 75.30 | 119.225 |
| 5 | GPSGPAGKDGRIGQPG | 1449.7325 | 1055–1070 | 16 | 63.63 | 112.205 |
| 6 | GDRGEAGPAGPAGPAGPR | 1588.7706 | 689–706 | 18 | 47.26 | 104.467 |
| 7 | GEKGETGLR | 945.4879 | 653–661 | 9 | 49.29 | 96.716 |
| 8 | GPAGKDGRIGQPG | 1208.6262 | 1058–1070 | 13 | 57.87 | 91.074 |
| 9 | LRGPRGDQGPVGR | 1363.7433 | 816–828 | 13 | 42.69 | 86.889 |
| 10 | GFDGDFYR | 975.4087 | 1109–1116 | 8 | 48.05 | 84.994 |
| 11 | ARGSDGSVGPVGPA | 1225.6051 | 231–244 | 14 | 55.10 | 82.368 |
| 12 | GDQGAPGAVGPAGPR | 1305.6426 | 1037–1051 | 15 | 45.42 | 78.154 |
| 13 | GARGSDGSVGPVGPA | 1282.6266 | 230–244 | 15 | 63.71 | 74.196 |
| 14 | RGSDGSVGPVGPA | 1154.5680 | 232–244 | 13 | 47.55 | 73.005 |
| 15 | AVGPAGPRGPAGPS | 1189.6204 | 1044–1057 | 14 | 51.75 | 69.936 |
| 16 | GSDGSVGPVGPA | 998.4669 | 233–244 | 12 | 40.73 | 69.381 |
| 17 | GAAGPTGPIGSR | 1039.5411 | 596–607 | 12 | 62.81 | 65.858 |
| 18 | GSDGSVGPVGPAGPI | 1265.6252 | 233–247 | 15 | 46.84 | 62.994 |
| 19 | AAGPTGPIGSR | 982.5196 | 597–607 | 11 | 49.21 | 60.065 |
| 20 | GIDGRPGPIGPA | 1105.5880 | 470–481 | 12 | 40.33 | 56.523 |
| 21 | GPVGPVGKH | 846.4712 | 965–973 | 9 | 43.32 | 53.582 |
| 22 | GPSGLPGER | 868.4403 | 635–643 | 9 | 47.00 | 52.185 |
| 23 | AGPTGPIGSR | 911.4825 | 598–607 | 10 | 45.83 | 52.097 |
| 24 | GPTGPIGSR | 840.4454 | 599–607 | 9 | 45.82 | 51.547 |
| 25 | VGPAGPRGPAGPS | 1118.5833 | 1045–1057 | 13 | 46.23 | 48.694 |
| 26 | VGPRGPSGPQ | 950.4934 | 991–1000 | 10 | 41.21 | 47.609 |
| 27 | GPRGPAGPSGPA | 1019.5148 | 1049–1060 | 12 | 53.78 | 43.976 |
| 28 | VGPAGPRGPAGP | 1031.5512 | 1045–1056 | 12 | 49.80 | 43.232 |
| 29 | GPAGPRGPAGPS | 1019.5148 | 1046–1057 | 12 | 46.12 | 43.228 |
| 30 | VGPAGPRGPA | 877.4770 | 1045–1054 | 10 | 49.71 | 42.472 |
| 31 | GPAGPAGPR | 778.4086 | 698–706 | 9 | 53.21 | 35.436 |
Mr Calc., molecular calculation; CE, CDOCKER_energy.
Fig. 5Docking for the interaction of YBCP with EFGR (PDB: 1IVO). (A) 3D structure of GP-16 and EFGR complex after docking; (B) 3D structure of GD-18 and EFGR complex after docking; (A1, B1), (A2, B2) and (A3, B3) represented H-bonds interaction, interpolated charge interaction and hydrophobic interaction, respectively.