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Neutron and X-ray crystallographic analysis of Achromobacter protease I at pD 8.0: protonation states and hydration structure in the free-form. | LitMetric

AI Article Synopsis

  • The study refined the structure of Achromobacter protease I (API) by using both X-ray and neutron diffraction to examine the protonation states of its key catalytic residues.
  • It was found that about 30% of the imidazole ring of H57 and 70% of the hydroxyl group of S194 were deuterated, suggesting S194 is largely protonated when no substrate is present.
  • Comparisons with bovine β-trypsin indicated that substrate binding could affect S194's acidity and that specific residues in API (like H210) contribute to a hydrogen bond network that may enhance stability across varying pH levels.

Article Abstract

The structure of the free-form of Achromobacter protease I (API) at pD 8.0 was refined by simultaneous use of single crystal X-ray and neutron diffraction data sets to investigate the protonation states of key catalytic residues of the serine protease. Occupancy refinement of the catalytic triad in the active site of API free-form showed that ca. 30% of the imidazole ring of H57 and ca. 70% of the hydroxyl group of S194 were deuterated. This observation indicates that a major fraction of S194 is protonated in the absence of a substrate. The protonation state of the catalytic triad in API was compared with the bovine β-trypsin-BPTI complex. The comparison led to the hypothesis that close contact of a substrate with S194 could lower the acidity of its hydroxyl group, thereby allowing H57 to extract the hydrogen from the hydroxyl group of S194. H210, which is a residue specific to API, does not form a hydrogen bond with the catalytic triad residue D113. Instead, H210 forms a hydrogen bond network with S176, H177 and a water molecule. The close proximity of the bulky, hydrophobic residue W169 may protect this hydrogen bond network, and this protection may stabilize the function of API over a wide pH range.

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Source
http://dx.doi.org/10.1016/j.bbapap.2013.05.012DOI Listing

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