| Literature DB >> 23915572 |
Mikael Elias1, Dorothee Liebschner, Jurgen Koepke, Claude Lecomte, Benoit Guillot, Christian Jelsch, Eric Chabriere.
Abstract
BACKGROUND: Hydrogen atoms represent about half of the total number of atoms in proteins and are often involved in substrate recognition and catalysis. Unfortunately, X-ray protein crystallography at usual resolution fails to access directly their positioning, mainly because light atoms display weak contributions to diffraction. However, sub-Ångstrom diffraction data, careful modeling and a proper refinement strategy can allow the positioning of a significant part of hydrogen atoms.Entities:
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Year: 2013 PMID: 23915572 PMCID: PMC3737025 DOI: 10.1186/1756-0500-6-308
Source DB: PubMed Journal: BMC Res Notes ISSN: 1756-0500
Figure 1View of hydrogen atoms in the X-ray structure. (a) Fixed H atoms: Trp 131 side-chain. (b) Mobile hydrogen atoms: Ile 177. (c) Water molecules: water 614 and 615 and their hydrogen bond network. Fobs-Fcalc omit map in blue. The contour level is 2.6σ in a), 2.7σ in b) and 2.5σ in c). Hydrogen atoms have been omitted in the structure factor calculation of the maps.
Figure 2Bar plot of the donor H…O distances in the X-N and X-Ray structure water H-bond network. The mean values are 2.12 (rmsd = 0.19) Å and 1.93 (rmsd = 0.18) for neutrons and X-rays, respectively. The mean H-bonding distance for water molecules in the X-ray structure is significantly shorter than for the X-N structure.
Figure 3Water molecule discrepancies between the sub-Ångstrom X-ray structure and the X-N structure. View of (a) HOH 511 (X-ray structure) and (b) DOD 1010 (X-N structure), which are equivalent. An electron density Fobs-Fcalc omit map at 2.4σ contour level in (a) and a nuclear 2Fobs-Fcalc map at 1.4σ contour level in (b) are superposed to the structure. For comparison, the H-bonding of HOH 511 in the X-ray structure is indicated as blue dashed lines in (b). Hydrogen atoms of the disordered part of Ile 312 in a) were not placed in the X-ray structure.
Figure 4Chemical environment of calcium coordinating water molecule HOH 524. The electron density Fobs-Fcalc residual map (light grey) is at 2.2 σ contour level. The two possible protonation states of HOH 524 are modelled (protonated form in light grey (hydrogen) and red (oxygen); deprotonated activated form in grey (hydrogen) and pink (oxygen)). The interactions performed by HOH 524 are shown as black dashed lines. The calcium coordination is highlighted by blue dashed lines. Distances are indicated in Ångstrom.