| Literature DB >> 29164349 |
Roksana Wałęsa1, Małgorzata A Broda2.
Abstract
The conformational propensities of the Aib residue on the example of two model peptidesEntities:
Keywords: Conformational analysis; DFT calculations; N-methylation; Solvent effect; X-ray crystallography; α-Aminoisobutyric acid residue
Year: 2017 PMID: 29164349 PMCID: PMC5698364 DOI: 10.1007/s00894-017-3508-4
Source DB: PubMed Journal: J Mol Model ISSN: 0948-5023 Impact factor: 1.810
Fig. 1General formula, atom numbering and selected torsion angles of the studied compounds
Fig. 2The potential energy surfaces (PES) E = f(ϕ, ψ) of Ac-Aib-NHMe (1) and Ac-Aib-NMe2 (2) in vacuo and in water calculated by the M06-2X/6–31++G(d,p) method combined with the polarizable continuum model (PCM) solvent model. Energy contours are drawn every 1 kcal mol−1. Local minima are represented by ♦ and described by the general short hand letter notation [44]
Selected torsion angles (°), relative energies ∆E (kcal mol−1) and theoretical abundances p (%) of local minima for (1) and (2) in vacuo
| Conformer | ϕ | ψ | ∆E |
| ϕ | ψ | ∆E |
| |
|---|---|---|---|---|---|---|---|---|---|
| Ac-Aib-NHMe ( | Ac-Aib-NMe2 ( | ||||||||
| B3LYP/6–31++G(d,p) | |||||||||
| C | −73.0 | 55.2 | 0.00 | 66 | E | −180.0 | 180.0 | 0.00 | 99 |
| E | −180.0 | −180.0 | 0.42 | 32 | A | −52.4 | −45.2 | 3.00 | 1 |
| F | −57.4 | 126.4 | 2.59 | 1 | D | −176.8 | 42.6 | 3.18 | 0 |
| A | −69.3 | −21.6 | 2.61 | 1 | D2 | −118.5 | 52.7 | 3.75 | 0 |
| D | −173.2 | 34.5 | 4.50 | 0 | F | −61.1 | 126.6 | 3.78 | 0 |
| M06-2X/6–31++G(d,p) | |||||||||
| C | −75.2 | 57.0 | 0.00 | 62 | E | −178.7 | −174.1 | 0.00 | 80 |
| E | −180.0 | −179.9 | 0.41 | 31 | A | −48.3 | −45.8 | 1.05 | 14 |
| F | −51.6 | 128.9 | 1.67 | 4 | D | −177.5 | 40.7 | 2.08 | 2 |
| A | −65.0 | −25.9 | 1.79 | 3 | F | −54.2 | 131.9 | 2.18 | 2 |
| D | −175.0 | 35.0 | 4.02 | 0 | D2 | −118.5 | 46.5 | 2.31 | 2 |
| MP2/6–31++G(d,p) | |||||||||
| C | −74.3 | 54.3 | 0.00 | 77 | E | −179.6 | 175.2 | 0.00 | 45 |
| E | −180.0 | −179.9 | 1.31 | 9 | A | −47.7 | −50.6 | 0.04 | 42 |
| F | −50.2 | 131.3 | 1.38 | 8 | F | −52.1 | 134.5 | 1.07 | 7 |
| A | −63.7 | −31.0 | 1.44 | 7 | D | −178.0 | 36.7 | 1.44 | 4 |
| D | −176.1 | 33.2 | 4.26 | 0 | D2 | −119.0 | 41.2 | 2.29 | 1 |
| MP2/6–311++G(3df,2pd) | |||||||||
| C | −73.7 | 56.3 | 0.00 | 70 | E | 180.0 | −180.0 | 0.00 | 73 |
| E | −180.0 | −179.9 | 0.72 | 21 | A | −46.8 | −48.5 | 0.70 | 22 |
| F | −50.8 | 132.4 | 1.61 | 5 | D | −178.6 | 39.1 | 2.17 | 2 |
| A | −63.2 | −29.3 | 1.71 | 4 | F | −53.5 | 133.5 | 2.21 | 2 |
| D | −176.0 | 32.7 | 3.65 | 0 | D2 | −119.0 | 47.5 | 2.58 | 1 |
Selected torsion angles (°), relative energies ∆E (kcal mol−1) and theoretical abundances p (%) of local minima for Ac-Aib-NHNe (1) in chloroform or water
| Conformer | ϕ | ψ | ∆E |
| ϕ | ψ | ∆E |
| |
|---|---|---|---|---|---|---|---|---|---|
| Chloroform | Water | ||||||||
| B3LYP/PCM | |||||||||
| C | −73.6 | 54.6 | 0.00 | 49 | A | −62.9 | −33.8 | 0.00 | 48 |
| E | −180.0 | −180.0 | 0.15 | 38 | C | −73.8 | 53.5 | 0.48 | 22 |
| A | −66.3 | −28.8 | 0.97 | 10 | E | −179.8 | −177.7 | 0.48 | 22 |
| F | −56.9 | 135.9 | 1.57 | 3 | F | −56.7 | 139.2 | 1.04 | 8 |
| D | −171.8 | 36.7 | 3.52 | 0 | D | −170.7 | 36.2 | 3.26 | 0 |
| B3LYP/SMD | |||||||||
| E | −179.8 | −177.1 | 0.00 | 43 | F | −54.9 | 140.0 | 0.00 | 54 |
| C | −73.3 | 53.5 | 0.08 | 38 | A | −59.8 | −35.7 | 0.29 | 33 |
| A | −65.3 | −28.6 | 0.76 | 12 | E | −179.4 | −179.9 | 1.02 | 10 |
| F | −57.0 | 137.0 | 1.10 | 7 | C | −74.1 | 48.2 | 1.60 | 4 |
| D | −171.9 | 38.4 | 3.26 | 0 | D | −170.4 | 39.3 | 3.79 | 0 |
| M062X/PCM | |||||||||
| C | −75.9 | 57.3 | 0.00 | 36 | A | −59.5 | −36.1 | 0.00 | 76 |
| A | −62.1 | −32.4 | 0.12 | 30 | F | −53.3 | 138.5 | 1.19 | 10 |
| E | −179.2 | −176.4 | 0.25 | 24 | C | −76.3 | 54.1 | 1.38 | 8 |
| F | −52.2 | 135.8 | 0.79 | 10 | E | 179.2 | −176.5 | 1.54 | 6 |
| D | −173.3 | 36.8 | 3.17 | 0 | D | −172.2 | 36.9 | 3.88 | 0 |
| M062X/SMD | |||||||||
| A | −62.0 | −32.5 | 0.00 | 33 | F | −51.8 | 140.3 | 0.00 | 58 |
| C | −75.7 | 54.5 | 0.14 | 26 | A | −56.8 | −37.1 | 0.23 | 39 |
| E | −178.5 | −177.3 | 0.17 | 25 | E | −179.1 | −179.8 | 2.09 | 2 |
| F | −52.4 | 137.2 | 0.43 | 16 | C | −76.5 | 48.7 | 2.47 | 1 |
| D | −173.3 | 38.5 | 3.01 | 0 | D | −170.7 | 38.2 | 4.45 | 0 |
Selected torsion angles (°), relative energies ∆E (kcal mol−1) and theoretical abundances p (%) of local minima for Ac-Aib-NMe2 (2) in chloroform or water
| Conformer | ϕ | ψ | ∆E |
| ϕ | ψ | ∆E |
| |
|---|---|---|---|---|---|---|---|---|---|
| Cchloroform | Water | ||||||||
| B3LYP/PCM | |||||||||
| E | −180.0 | 180.0 | 0.00 | 82 | A | −53.9 | −45.0 | 0.00 | 76 |
| A | −54.4 | −43.6 | 0.98 | 16 | E | −180.0 | −180.0 | 0.41 | 22 |
| D | −175.7 | 44.2 | 2.30 | 2 | D | −175.1 | 44.6 | 2.55 | 1 |
| D2 | −120.2 | 48.2 | 3.26 | 0 | D2 | −121.2 | 46.0 | 4.12 | 0 |
| F | −59.1 | 128.6 | 3.61 | 0 | F | −57.5 | 130.1 | 4.19 | 0 |
| B3LYP/SMD | |||||||||
| E | 179.3 | 175.2 | 0.00 | 68 | A | −53.0 | −47.6 | 0.00 | 95 |
| A | −55.2 | −42.6 | 0.53 | 28 | E | −179.5 | 175.8 | 1.92 | 4 |
| D | −173.8 | 45.7 | 1.93 | 3 | D | −168.6 | 47.1 | 3.37 | 1 |
| D2 | −121.2 | 47.2 | 2.89 | 1 | F | −54.9 | 138.8 | 4.26 | 0 |
| F | −58.1 | 129.4 | 3.36 | 0 | D2 | −121.6 | 46.2 | 4.31 | 0 |
| M06-2X/PCM | |||||||||
| A | −49.5 | −44.1 | 0.00 | 78 | A | −49.4 | −44.6 | 0.00 | 98 |
| E | −178.4 | −179.2 | 0.87 | 18 | E | −180.0 | 179.4 | 2.43 | 1 |
| F | −54.2 | 131.1 | 2.92 | 1 | D | −175.2 | 43.9 | 2.43 | 0 |
| D2 | −118.7 | 44.2 | 2.64 | 1 | D2 | −118.5 | 43.0 | 3.94 | 0 |
| D | −175.9 | 43.3 | 2.24 | 2 | F | −54.4 | 131.5 | 3.21 | 0 |
| M06-2X/SMD | |||||||||
| A | −51.0 | −39.8 | 0.00 | 85 | A | −45.3 | −50.1 | 0.00 | 100 |
| E | −179.7 | −174.6 | 1.21 | 11 | E | −176.2 | −171.4 | 4.42 | 0 |
| D | −175.2 | 44.3 | 2.21 | 2 | F | −53.8 | 136.3 | 4.16 | 0 |
| D2 | −118.6 | 43.8 | 2.56 | 1 | D2 | −117.2 | 41.8 | 5.08 | 0 |
| F | −53.8 | 131.5 | 2.91 | 1 | D | −168.0 | 46.9 | 4.38 | 0 |
Fig. 3Local minima for Ac-Aib-NHMe (1) optimized at the M06-2X/6–31++G(d,p) level in the gas phase. Dotted lines Hydrogen bonds, solid lines dipole interactions
Fig. 4Local minima for Ac-Aib-NMe2 (2) optimized at the M06-2X/6–31++G(d,p) level in the gas phase. Dotted lines Hydrogen bonds, solid lines dipole interactions
Fig. 5Solvation energies of the studied molecules Ac-Aib-NHMe (1), Ac-Aib-NMe2 (2) in water as a function of backbone conformation (φ and ψ values) obtained using the PCM/M06-2X/6–31++G(d,p) method
Fig. 6The ϕ, ψ potential energy surfaces (PESs) of the studied molecules in water with the solid state conformations of analogous structures (crosses) from Cambridge Structural Database. Bold line Energy contour 4 kcal mol−1, showing accessible conformational space: 15% for 1, 4% for 2