| Literature DB >> 34209793 |
Michele Di Foggia1, Vitaliano Tugnoli1, Stefano Ottani2, Monica Dettin3, Annj Zamuner3, Santiago Sanchez-Cortes4, Daniele Cesini5, Armida Torreggiani2.
Abstract
The surface-enhanced Raman scattering (SERS) spectra of three amphiphilicEntities:
Keywords: DFT; SERS; amphiphilic oligopeptides; biomimetic coating; oligopeptide–surface interaction; oxidative stress
Year: 2021 PMID: 34209793 PMCID: PMC8301923 DOI: 10.3390/biom11070959
Source DB: PubMed Journal: Biomolecules ISSN: 2218-273X
Figure 1SERS spectra of the examined peptides (Pept2, Pept3, and Pept4) at 10−5 M concentration compared with the EAK parent peptide (Pept1). Asterisks (*) were used to indicate the bands attributed to FMOC used in the synthesis procedure.
Attribution of experimental SERS (Surface-Enhanced Raman Scattering) spectra of Pept1, 2, 3, and 4. In the “Assignment” column, the attributions obtained by the PED analysis on the most stable peptide–Ag2 geometry is reported (except for Pept4, whose attributions are not supported by PED analysis and are made in agreement with those of the other peptides). These attributions were further confirmed by those present in the literature. (Interpretation of vibrations: ν = stretching, δ = bending, τ = torsion, ω = wagging, ρ = rocking, sh = shoulder, br = broad, vs = very strong, s = strong, m = medium, w = weak, vw = very weak, as = anti-symmetric, s = symmetric).
| Assignment | Pept1 | Pept2 | Pept3 | Pept4 | ||||
|---|---|---|---|---|---|---|---|---|
| SERS | SERS | SERS | SERS | SERS | SERS | SERS | SERS | |
| ν CH (aliphatic) [ | 2968 sh | 2968 sh | 2968 sh | 2968 sh | 2968 sh | 2968 sh | 2968 sh | 2968 sh |
| Amide I [ | 1679 sh | 1677 sh | 1674 sh | 1668 m, sh | 1679 sh | 1666 m | 1672 m | 1671 m |
| δH2O [ | 1644 m | 1644 m | 1650 m | 1650 m | ||||
| νas COO− [ | 1600 m | 1603 m | 1602 sh | 1603 sh | ||||
| δ NH3+ (Lys) [ | 1579 sh | 1575 sh | 1567 sh | 1579 sh | 1577 sh | 1572 sh | 1575 sh | |
| νas COO− [ | 1530 sh | 1551 sh | 1555 br | 1542 br | 1568 sh | 1551 m | 1559 sh | 1559 sh 1548 br |
| δ CH2 [ | 1447 m | 1447 m | 1449 m | 1447 m | 1447 m | 1448 m | 1454 sh | 1450 m |
| νs COO− [ | 1393 m | 1392 m | 1414 sh | 1414 sh | 1420 sh | 1394 m | 1415 sh | 1417 sh |
| ω CH2(Lys) [ | 1329 m | 1325 m | 1328 m | 1326 m | 1327 w | 1323 m | 1326 m | 1326 br |
| Amide III [ | 1288 m | 1289 m | 1285 sh | 1283 sh | 1287 sh | |||
| Amide III [ | 1253 br | 1246 m | 1253 br | 1264 sh | 1265 m | 1258 sh | 1259 sh | |
| Amide III [ | 1238 sh | 1242 m | 1245 sh | 1245 m | 1243 m | 1242 m | ||
| νas CαCN [ | 1162 w | 1162 sh | 1164 sh | 1158 sh | 1158 sh | 1161 w | 1155 sh | |
| ν CC [ | 1125 w | 1122 w | 1131 sh | 1123 sh | 1121 m | 1121 m | 1125 sh | 1130 sh |
| τ NH3+ [ | 1102 sh | 1100 sh | 1101 m | 1100 m | 1106 sh | 1105 m | 1104 m | 1101 m |
| νas CαCN [ | 1086 m | 1085 m | 1077 sh | 1074 sh | 1085 sh | 1090 sh | 1086 sh | |
| ν CC [ | 1054 m | 1052 w | 1053 vw | 1048 sh | 1053 sh | 1053 m | 1055 sh | 1056 sh |
| ρ CH2 [ | 997 sh | 1018 sh | 1027 sh | 1001 w | 1001 w | 1032 sh | 1030 sh | |
| ν CC [ | 949 m | 945 m | 971 w | 969 sh | 948 m | 945 m | 969 w | 970 w |
| ν COO− [ | 909 m | 907 m | 900 m | 900 m | 910 m | 909 m | 899 m | 899 m |
| ν CC [ | 882 sh | 884 sh | 885 sh | 886 sh | ||||
| ν CC [ | 838 sh | 840 sh | 851 vw | 837 vw | 835 vw | 835 vw | ||
| ν CC [ | 816 w | 818 vw | 812 vw | 801 vw | 818 vw | 818 vw | 815 vw | |
| Amide V [ | 760 w, br | 759 w, br | 760 br | 759 br | 752 br | 763 m | 758 w | 757 w |
| δ COO− [ | 709 sh | 701 sh | 701 vw | 717 vw | 707 sh | 711 sh | ||
| Amide IV [ | 655 br | 651 br | 681 sh | 663 br | 658 br | 667 sh | 669 sh | 669 vw |
| ω COO− [ | 609 sh | 594 sh | 608 w | 600 vw | 577 vw | |||
| Amide VI [ | 563 br | 563 br | 563 m, br | 563 br | 541 vw | 552 w | 554 w | |
| τ NH3+ [ | 525 sh | 517 vw | 517 vw | 517 vw | 520 sh | |||
| τ CN [ | 473 vw | 463 vw | 465 vw | 468 vw | 466 vw | |||
| δ CN [ | 429 vw | 425 vw | 414 vw | 424 vw | ||||
Selected parameters of SERS bands involving CH vibrations before and after exposure to free radical stress (obtained by gamma irradiation): Full Width at Half Maximum (FWHM) of the νCH band, I2930/I2870 and I1060/I1130 intensity ratios indicating the order degree of aliphatic side chains of the oligopeptides [58].
| Sample | Not Treated | under Oxidative | ||||
|---|---|---|---|---|---|---|
| FWHM νCH/cm−1 | I2930/I2870 | I1060/I1130 | FWHM νCH/cm−1 | I2930/I2870 | I1060/I1130 | |
| Pept1 | 49 | 3.0 | 1.4 | 48 | 3.0 | 1.4 |
| Pept2 | 46 | 3.2 | 0.9 | 47 | 3.7 | 0.5 |
| Pept3 | 46 | 3.2 | 2.0 | 46 | 3.3 | 2.4 |
| Pept4 | 43 | 3.2 | 0.9 | 45 | 3.9 | 0.6 |
Figure 2(a) Comparison of the Raman spectrum (A) and SERS spectra of Pept2 as-synthesized (B) and after irradiation (C); (b) second derivative SERS spectra of Pept2 before (A) and after (B) irradiation.
Figure 3Comparison of the Raman spectrum (A) and SERS spectra of Pept4 as-synthesized (B) and after irradiation (C). Asterisks (*) were used to indicate the bands attributed to FMOC or a contaminant of the solution.
Figure 4Comparison of the Raman spectrum (A) and SERS spectra of Pept3 as-synthesized (B) and after irradiation (C). Asterisks (*) were used to indicate the bands attributed to FMOC or the solution’s contaminant.
Figure 5Comparison of the Raman spectrum (A) and SERS spectra of the parent peptide (Pept1) as-synthesized (B) and after irradiation (C).
Comparison of the relative stability for the interactions of the Ag2 cluster with different peptide groups. Eet is the sum of electronic and thermal energies (kJ mol−1). Lower values of ∆E correspond to more favorable interactions.
| Peptide-Ag2 Conformations | |
|---|---|
| Pept1-r: Ag2/-COO− 1st setting | Pept1-r: Ag2/-COO− 2nd setting |
| Pept1-r: Ag2/-C=Ochain | Pept1-r: Ag2/-NH |
| Pept1-r: Ag2/-C=Oterminal, | |
| Pept2-r: Ag2/-COO−, | Pept2-r: Ag2/-C=Ochain 1st setting, |
| Pept2-r: Ag2/-C=Ochain 2nd setting, | Pept2-r: Ag2/-C=Oterminal, |
| Pept3-r: Ag2/-COO−Glu, | Pept3-r: Ag2/-C=Ochain 2nd setting, |
| Pept3-r: Ag2/-C=Ochain 1st setting, | Pept3-r: Ag2/-C=Oterminal, |