AI Article Synopsis

  • Type 1 non-symbiotic rice hemoglobin (rHb1) binds diatomic ligands and has high oxygen affinity, suggesting it may not be used for oxygen transport.
  • Research on CO rebinding kinetics through laser flash photolysis shows that rHb1 in solution undergoes fast geminate rebinding without internal docking, while encapsulation in silica gel improves ligand migration.
  • Mutations in specific residues (FB10 and HE7) significantly affect rebinding kinetics, with FB10 enhancing rebinding and HE7 allowing ligand migration through internal cavities due to loss of hexacoordination.

Article Abstract

Type 1 non-symbiotic rice hemoglobin (rHb1) shows bis-histidyl heme hexacoordination and is capable of binding diatomic ligands reversibly. The biological function is as yet unclear, but the high oxygen affinity makes it unlikely to be involved in oxygen transport. In order to gain insight into possible physiological roles, we have studied CO rebinding kinetics after laser flash photolysis of rHb1 in solution and encapsulated in silica gel. CO rebinding to wt rHb1 in solution occurs through a fast geminate phase with no sign of rebinding from internal docking sites. Encapsulation in silica gel enhances migration to internal cavities. Site-directed mutagenesis of FB10, a residue known to have a key role in the regulation of hexacoordination and ligand affinity, resulted in substantial effects on the rebinding kinetics, partly inhibiting ligand exit to the solvent, enhancing geminate rebinding and enabling ligand migration within the internal cavities. The mutation of HE7, one of the histidyl residues involved in the hexacoordination, prevents hexacoordination, as expected, but also exposes ligand migration through a complex system of cavities. This article is part of a Special Issue entitled: Protein Dynamics: Experimental and Computational Approaches.

Download full-text PDF

Source
http://dx.doi.org/10.1016/j.bbapap.2010.09.016DOI Listing

Publication Analysis

Top Keywords

ligand migration
12
type non-symbiotic
8
non-symbiotic rice
8
rice hemoglobin
8
rebinding kinetics
8
rhb1 solution
8
silica gel
8
migration internal
8
internal cavities
8
ligand
5

Similar Publications

Want AI Summaries of new PubMed Abstracts delivered to your In-box?

Enter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!