Abstract
The tetrapyrrole chromophore biliverdin IXα (BV) in the bacteriophytochrome from Deinococcus radiodurans (DrBphP) is usually assumed to be fully protonated, but this assumption has not been systematically validated by experiments or extensive computations. Here, we use force field molecular dynamics simulations and quantum mechanics/molecular mechanics calculations with density functional theory and XMCQDPT2 methods to investigate the effect of the five most probable protonation forms of BV on structural stability, binding pocket interactions, and absorption spectra in the two photochromic states of DrBphP. While agreement with X-ray structural data and measured UV/vis spectra suggest that in both states the protonated form of the chromophore dominates, we also find that a minor population with a deprotonated D-ring could contribute to the red-shifted tail in the absorption spectra.
| Original language | English |
|---|---|
| Pages (from-to) | 2325-2334 |
| Number of pages | 10 |
| Journal | Journal of Physical Chemistry B |
| Volume | 123 |
| Issue number | 10 |
| DOIs | |
| Publication status | Published - 14 Mar 2019 |
| MoE publication type | A1 Journal article-refereed |
Funding
Funding This work was funded by the Academy of Finland (grant 304455 to G.G. and V.M., grant 285481 to D.M., and grant 266274 to S.D.).
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