posted on 2021-09-15, 18:08authored byStéphanie Jephthah, Francesco Pesce, Kresten Lindorff-Larsen, Marie Skepö
Five peptides previously
suggested to possess polyproline II (PPII)
structure have here been investigated by using atomistic molecular
dynamics simulations to compare how well four different force fields
known for simulating intrinsically disordered proteins relatively
well (Amber ff99SB-disp, Amber ff99SB-ILDN, CHARM36IDPSFF, and CHARMM36m)
can capture this secondary structure element. The results revealed
that all force fields sample PPII structures but to different extents
and with different propensities toward other secondary structure elements,
in particular, the β-sheet and “random coils”.
A cluster analysis of the simulations of histatin 5 also revealed
that the conformational ensembles of the force fields are quite different.
We compared the simulations to circular dichroism and nuclear magnetic
resonance spectroscopy experiments and conclude that further experiments
and methods for interpreting them are needed to assess the accuracy
of force fields in determining PPII structure.