| Literature DB >> 31614832 |
Daniele Florio1, Ilaria Iacobucci2,3, Giarita Ferraro4, Ahmed M Mansour5, Giancarlo Morelli6, Maria Monti7,8, Antonello Merlino9, Daniela Marasco10.
Abstract
The effect of analogue Pd(II)-,Entities:
Keywords: amyloid aggregation; anti-aggregation properties; gold(III) compounds; metallodrugs; palladium(II) compounds; platinum(II) compounds
Year: 2019 PMID: 31614832 PMCID: PMC6958441 DOI: 10.3390/ph12040154
Source DB: PubMed Journal: Pharmaceuticals (Basel) ISSN: 1424-8247
Figure 1Chemical structures of square-planar complexes investigated in this study.
Peptide sequences analyzed in this study.
| Peptide | Sequence | pI | Net Charge at pH7 |
|---|---|---|---|
| NPM1264–277 | VEAKFIN | 10.15 | 1.9 |
| Aβ21–40 | AEDVGSNKGAIIGLMVGGVV | 3.93 | −1 |
Figure 2Time-course of ThT fluorescence emission intensity of NPM1264–277 (panel A) and Aβ21–40 (panel B) in the presence of 1–3, upon incubation at 1:1 peptide to metal compound molar ratio. The peptides alone are reported as blue squares. Results are representative of two independent experiments.
Figure 3Time-course of ThT fluorescence emission intensity of NPM1264–277 (panel A) and Aβ21–40 (panel B) upon addition of 1 (red circle) and 2 (green triangle). The addition is indicated by an arrow. Results are representative of two independent experiments.
Figure 4Absorption spectra of 1 (panel A), 2 (panel B), and 3 (panel C) upon the addition of NPM1264–277 (top) and Aβ21–40 (bottom) at different equivalents. (0 eq fuchsia, 0.5 eq black, 1.0 eq orange, 1.5 eq blue, 2.0 eq violet, 2.5 eq yellow, 3.0 eq light blue, 3.5 eq green, 4.0 eq grey) Vertical arrows indicate changes in intensity, horizontal arrows indicate shifts of λmax.
Figure 5ESI-MS spectra of NPM1264–277 incubated with: (A) 1, at t = 0 (upper panel) and t = 17 h (lower panel), (B) 2, at t = 0 (upper panel) and t = 17 h (lower panel), (C) 3, at t = 0 (upper panel) and t = 17 h (lower panel). In panel A, the m/z range between 1500 and 1900 is 10 times magnified.
Results of the ESI-MS analysis of the adducts formed upon reaction of NPM1264–277 with 1–3. The experimental m/z values, the ion charge status, the experimental (Exp) and theoretical (Theor) monoisotopic mass values, the corresponding ion species and times of incubation are reported.
| Complex | Signal (m/z) | Charged Species | Exp MW (Da) | Theor MW (Da) | Species | Time (h) |
|---|---|---|---|---|---|---|
| 1 | 1772.02 | A (+1) | 1770.99 ± 0.02 | 1770.91 | Monomer | 0,3,17 |
| 1875.03 | B (+1) | 1874.02 ± 0.02 | 1873.91 | Monomer Adduct | 0,3,17 | |
| 1771.02 | C (+2) | 3540.22 ± 0.43 | 3539.82 | Dimer | 0,3,17 | |
| 1140.539 | D (+2) | 2278.81 ± 0.52 | 2281.45 | NPM1264–277(M) + (1)−2HCl | 0,3,17 | |
| 1396.095 | E (+2) | 2789.960 ± 0.31 | 2791.9 | NPM1264–277(M) + 2(1)−4HCl | 0,3,17 | |
| 3,17 | ||||||
| 1404.60 | F (+2) | 2806.96 ± 0.30 | 2807.9 | NPM1264–277(M) + 2(1)−4HCl + 1Ox † | 0,3,17 | |
| 3,17 | ||||||
| 1413.099 | G (+2) | 2824.98 ± 0.60 | 2823.9 | NPM1264–277(M) + 2(1)−4HCl + 2Ox | 0,3,17 | |
| 1521.75 | H (+2) | 4561.57 ± 1.00 | 4560.9 | NPM1264–277(D) +2(1)−4HCl | 0,3,17 | |
| 1704.337 | I (+3) | 5108.63 ± 0.50 | 5107.8 | NPM1264-277(D) + 3(1)−5HCl | 0,3 | |
| 0,3,17 | ||||||
| 1715.37 | J (+3) | 5143.11 * | 5144.25 | NPM1264–277(D) + 3(1)−4HCl | 0,3 | |
| 2 | 1772.146 | A (+1) | 1771.12 ± 0.02 | 1770.91 | Monomer | 0,3,17 |
| 1875.100 | B (+1) | 1874.11 ± 0.02 | 1873.91 | Monomer Adduct | 0,3,17 | |
| 1771.14 | C (+2) | 3540.47 ± 0.44 | 3539.82 | Dimer | 0,3,17 | |
| 1148.026 | D (+2) | 2294.11 ± 0.09 | 2295.96 | NPM1264–277(Madd) + 1(2)−2HCl | 0,3,17 | |
| 989.476 | E (+2) | 1976.952 * | 1976.32 | NPM1264–277(Madd) + 1Pd | 0,3,17 | |
| 1095.587 | F (+2) | 2189.17 * | 2192.79 | NPM1264–277(M) + 1(2)−2HCl | 0,3,17 | |
| 1306.606 | G (+2) | 2611.21 * | 2614.58 | NPM1264–277(M) + 2(2)-4HCl | 0,3,17 | |
| 1201.721 | H (+3) | 3602.19 ± 0.04 | 3604.00 | NPM1264–277(D) + 4Ox | 3,17 | |
| 1250.694 | I (+3) | 3749.082 * | 3748.84 | NPM1264–277(D) + 2Pd | 0,3,17 | |
| 3 | 1772.03 | A (+1) | 1771.02 ± 0.01 | 1770.91 | Monomer | 0,3,17 |
| 938.00 | B (+2) | 1874.98 ± 0.05 | 1873.91 | Monomer Adduct | 0,3,17 | |
| 1771.52 | C (+2) | 3540.35 ± 0.48 | 3539.82 | Dimer (NPM1264–277(D)) | 0,3,17 | |
| 893.51 | D (+2) | 1785.02 * | 1786.91 | NPM1264–277(M) +1Ox | 0,3,17 | |
| 902.50 | E (+2) | 1803.00 * | 1802.91 | NPM1264–277(M) +2Ox | 0,3,17 | |
| 910.51 | F (+2) | 1819.02 * | 1818.91 | NPM1264–277(M) +3Ox | 0,3,17 |
* Error not available. † Ox refers to the presence of oxygen atoms on cysteine residues.
Figure 6ESI-MS spectra of Aβ21–40 incubated with: (A) 1, at t = 0 (upper panel) and t = 17 h (lower panel), (B) 2, at t = 0 (upper panel) and t = 17 h (lower panel), (C) 3, at t = 0 (upper panel) and t = 17 h (lower panel). In all panels, signals belonging to the fragmentation b series of Aβ21–40 are indicated. b series fragmentation signals deriving from Aβ21–40 complexed with metal compounds are indicated with an asterisk.
Results of the ESI-MS analysis of the adducts formed by the reaction of Aβ21–40 with 1, 2 and 3. The experimental m/z values, the ion charge status, the experimental (Exp) and theoretical (Theor) monoisotopic mass values, the corresponding ion species and times of incubation are reported.
| Complex | Signal (m/z) | Charged Species | Exp MW (Da) | Theor MW (Da) | Species | Time (h) |
|---|---|---|---|---|---|---|
| 1 | 1927.48 | A (+1) | 1926.50 ± 0.02 | 1926.00 | Aβ21–40 | 0,3,17 |
| 1943.49 | B (+1) | 1942.35 ± 0.13 | 1942.00 | Aβ21–40+ 1Ox † | 0,3,17 | |
| 1218.583 | C (+2) | 2435.59 ± 0.56 | 2436.45 | Aβ21–40 + 1(1)-2HCl | 0,3,17 | |
| 1236.599 | D (+2) | 2471.54 ± 0.36 | 2472.9 | Aβ21–40 + 1(1)-1HCl | 0,3,17 | |
| 0,3 | ||||||
| 2 | 1927.09 | A (+1) | 1926.07 ± 0.02 | 1926.00 | Aβ21–40 | 0,3,17 |
| 1943.07 | B (+1) | 1941.50 ± 0.56 | 1942.00 | Aβ21–40 + 1Ox | 0,3,17 | |
| 2030.029 | C (+1) | 2029.00 ± 0.02 | 2028.42 | Aβ21–40 + 1 Pd | 0,3,17 | |
| 1174.035 | D (+2) | 2346.03 ± 0.02 | 2347.79 | Aβ21–40 + 1(2)-2HCl | 0,3,17 | |
| 3 | 1927.31 | A (+1) | 1925.74 ± 0.56 | 1926.00 | Aβ21–40 | 0,3,17 |
| 1943.28 | B (+1) | 1941.68 ± 0.58 | 1942.00 | Aβ21–40 +1Ox | 0,3,17 |
† Ox refers to the presence of an oxygen atom on the methionine residue.
Figure 7Schematic representation of the different mechanisms of action of compounds 1, 2, and 3 in the modulation of the aggregation of amyloid peptides analyzed in this study. Pt and Pd compounds interact with the peptides forming adducts with Pt- and Pd-containing fragments directly coordinated to residue side chains, while the Au compound does not directly interact with the peptides, but it alters the oxidation state of specific residues. In the figure, residues are indicated as cyan spheres. They are colored in yellow when present an altered oxidation state.