Disrupting helix formation in unsolvated peptides

Citation
Dt. Kaleta et Mf. Jarrold, Disrupting helix formation in unsolvated peptides, J PHYS CH B, 105(19), 2001, pp. 4436-4440
Citations number
36
Categorie Soggetti
Physical Chemistry/Chemical Physics
Journal title
JOURNAL OF PHYSICAL CHEMISTRY B
ISSN journal
15206106 → ACNP
Volume
105
Issue
19
Year of publication
2001
Pages
4436 - 4440
Database
ISI
SICI code
1520-6106(20010517)105:19<4436:DHFIUP>2.0.ZU;2-Q
Abstract
Protonated polyalanine peptides form helices in the gas phase when their mo st basic protonation site (the N-terminus) is blocked by acetylation: Ac-A( a)+H+ (Ac acetyl and A = alanine). The glycine analogues, Ac-G(n)+H+ (G gly cine), on the other hand, form random globules. The disruption of helix for mation in unsolvated Ac-A(n)G(x)A(m)+H+ peptides has been examined as a fun ction of n+m, and x using high resolution ion mobility measurements and mol ecular dynamics simulations. A surprisingly large block of glycine residues is required to disrupt helix formation in these peptides. For example, Ac- A(5)G(3)A(5)+H+ and AC-A(6)G(5)A(6)+H+ both remain helical at room temperat ure. According to molecular dynamics simulations, the glycines do not cause a localized disruption of the helices, as might be expected for a residue considered a helix breaker. This is consistent with helix disruption occurr ing through a global effect on the relative energies of the helix and globu le rather than through a localized entropic effect.