| Literature DB >> 29564012 |
Yaochun Xu1, Isabelle Correia2, Tap Ha-Duong1, Nadjib Kihal1, Jean-Louis Soulier1, Julia Kaffy1, Benoît Crousse1, Olivier Lequin2, Sandrine Ongeri1.
Abstract
Pentapeptides having the sequence R-HN-Ala-Val-X-Val-Leu-OMe, where the central residue X is L-serine, L-threonine, (2S,3R)-L-CF3-threonine and (2S,3S)-L-CF3-threonine were prepared. The capacity of (2S,3S)- and (2S,3R)-CF3-threonine analogues to stabilize an extended structure when introduced in the central position of pentapeptides is demonstrated by NMR conformational studies and molecular dynamics simulations. CF3-threonine containing pentapeptides are more prone to mimic β-strands than their natural Ser and Thr pentapeptide analogues. The proof of concept that these fluorinated β-strand mimics are able to disrupt protein-protein interactions involving β-sheet structures is provided. The CF3-threonine containing pentapeptides interact with the amyloid peptide Aβ1-42 in order to reduce the protein-protein interactions mediating its aggregation process.Entities:
Keywords: aggregation; beta-sheet; fluorine; peptide; unnatural amino acid
Year: 2017 PMID: 29564012 PMCID: PMC5753055 DOI: 10.3762/bjoc.13.276
Source DB: PubMed Journal: Beilstein J Org Chem ISSN: 1860-5397 Impact factor: 2.883
Figure 1A) Natural threonine and its trifluoromethyl analogues sawhorse projections. B) Structure of Boc-protected pentapeptides 1a–4a and free amine pentapeptides 1b–4b.
Scheme 1Synthesis of (2S,3R)-Boc-CF3-Thr(Bzl) 9.
Scheme 2Synthesis of (2S,3S)-Boc-CF3-Thr 14.
Scheme 3Synthesis of pentapeptides 1a–4a and 1b–4b.
1Hα chemical shift deviations (CSD) of residues in pentapeptides 1a–4a and 1b–4b in CD3OH (298 K).
| Peptide | Boc-protected ( | Non-protected ( | ||||||||
| Ala1 | Val2 | Val4 | Leu5 | Ala1 | Val2 | Val4 | Leu5 | |||
| R-Ala-Val-Ser-Val-Leu-OMe ( | −0.23 | 0.09 | 0.15 | 0.09 | −0.35 | 0.14 | 0.15 | 0.08 | ||
| R-Ala-Val-Thr-Val-Leu-OMe ( | −0.20 | 0.13 | 0.13 | 0.11 | −0.41 | 0.14 | 0.12 | 0.07 | ||
| R-Ala-Val-(2 | −0.22 | 0.09 | 0.17 | 0.07 | −0.33 | 0.14 | 0.18 | 0.07 | ||
| R-Ala-Val-(2 | −0.19 | 0.13 | 0.15 | 0.09 | −0.35 | 0.22 | 0.17 | 0.08 | ||
13Cα chemical shift deviations (CSD) of residues in pentapeptides 1a–4a and 1b–4b in CD3OH (298 K).
| Peptide | Boc-Protected ( | Non-Protected ( | ||||||||
| Ala1 | Val2 | Val4 | Leu5 | Ala1 | Val2 | Val4 | Leu5 | |||
| R-Ala-Val-Ser-Val-Leu-OMe ( | −0.6 | -2.0 | −2.1 | −2.8 | −2.1 | −1.7 | −2.2 | −2.8 | ||
| R-Ala-Val-Thr-Val-Leu-OMe ( | −0.9 | −2.0 | −2.2 | −2.9 | −2.1 | −1.6 | −2.3 | −2.9 | ||
| R-Ala-Val-(2 | −0.8 | −2.5 | −2.4 | −2.7 | −2.2 | −2.0 | −2.4 | −2.7 | ||
| R-Ala-Val-(2 | −0.8 | −1.6 | −1.9 | −2.9 | −2.1 | −2.0 | −2.4 | −2.8 | ||
Coupling constants 3JHN–Hα (Hz) of residues in pentapeptides 1a–4a and 1b–4b in CD3OH (271 K for most residues, * indicates values measured at 298 K).
| Peptide | Boc-protected ( | Non-protected ( | ||||||||
| Ala1 | Val2 | Val4 | Leu5 | Ala1 | Val2 | Val4 | Leu5 | |||
| R-Ala-Val-Ser-Val-Leu-OMe ( | 6.8 | 8.2 | 8.9 | 7.8 | – | 8.3 | 8.6* | 7.6* | ||
| R-Ala-Val-Thr-Val-Leu-OMe ( | 6.9* | 8.3* | 8.8* | 7.8* | – | broad peak | 8.7 | 7.7 | ||
| R-Ala-Val-(2 | 7.1 | 8.9 | 9.2 | 7.6 | – | 8.7 | 8.2 | 7.4 | ||
| R-Ala-Val-(2 | 6.8 | 7.7 | 9.0 | 7.7 | – | 8.9 | 8.9 | 7.6 | ||
3JHα–Hβ coupling constants (Hz) for peptides 1a–4a and 1b–4b in CD3OH. Coupling constants were extracted from 1D 1H spectra on multiplets of Hβ protons for Ala or Hα protons for other residues.
| Peptide | Boc-protected ( | Non-protected ( | ||||||||
| Ala1 | Val2 | Val4 | Leu5 | Ala1 | Val2 | Val4 | Leu5 | |||
| R-Ala-Val-Ser-Val-Leu-OMe ( | 7.1 | 6.7 | 6.6 | 5.1/10.6 | 7.2 | 6.6 | 6.6 | 5.3/10.3 | ||
| R-Ala-Val-Thr-Val-Leu-OMe ( | 7.2 | 7.3 | 6.9 | 5.0/10.6 | 7.2 | 7.1 | 7.1 | 5.6/10.0 | ||
| R-Ala-Val-(2 | 7.3 | 7.1 | 6.5 | 6/10 | 7.3 | 7.3 | 7.0 | 5.3/10.3 | ||
| R-Ala-Val-(2 | 7.0 | 7.0 | 7.1 | 5.0/10.5 | 7.2 | 8.2 | 7.5 | 5.4/10.5 | ||
Temperature coefficients Δδ/ΔT (ppb K−1) for HN protons in pentapeptides 1a–4a and 1b–4b in CD3OH (298 K).
| Peptide | Boc-protected ( | Non-protected ( | ||||||||
| Ala1 | Val2 | Val4 | Leu5 | Ala1 | Val2 | Val4 | Leu5 | |||
| R-Ala-Val-Ser-Val-Leu-OMe ( | −7.8 | −6.4 | −8.0 | −7.4 | − | −6.1 | −7.8 | −7.0 | ||
| R-Ala-Val-Thr-Val-Leu-OMe ( | −7.4 | −5.8 | −7.6 | −7.9 | − | −5.5 | −8.0 | −7.7 | ||
| R-Ala-Val-(2 | −6.5 | −5.3 | −7.4 | −5.0 | − | −6.6 | −9.0 | −6.0 | ||
| R-Ala-Val-(2 | −7.4 | −5.9 | −4.5 | −9.0 | − | −5.5 | −4.6 | −7.9 | ||
Figure 2Probability distribution of the peptide conformations as a function of end-to-end distance (defined as the distance between the nitrogen of residue Ala1 and the carbon of the C-terminal carbonyl).
Figure 3Probability distribution of the peptide dihedral angles ψ for the three central residues Val2 (black), X3 (red) and Val4 (green).
Probability (%) of the three central residues of the eight studied peptides to be in β-conformation. The column P indicates the probability for each peptide to have all its three central residues in β-conformation.
| peptide | Boc-protected ( | Non-protected ( | ||||||
| Val2 | Val4 | P | Val2 | Val4 | P | |||
| RNH-Ala-Val-Ser-Val-Leu-OMe ( | 59.9 | 51.4 | 55.8 | 76.5 | 50.3 | 64.9 | ||
| RNH-Ala-Val-Thr-Val-Leu-OMe ( | 53.5 | 91.1 | 61.0 | 64.8 | 73.5 | 59.1 | ||
| RNH-Ala-Val-(3 | 59.7 | 31.7 | 69.9 | 63.3 | 59.4 | 74.7 | ||
| RNH-Ala-Val-(3 | 67.1 | 82.7 | 75.6 | 77.9 | 85.6 | 74.8 | ||
Figure 4Effects of compounds 1–4 on Aβ1-42 fibrillization assessed by ThT-fluorescence spectroscopy at 10:1 compound/Aβ ratios (the concentration of Aβ1-42 is 10 μM) and compared to the values obtained for Aβ1-42 alone. (See Supporting Information File 1 for the calculation of the change of fluorescence intensity at the plateau).