Histidine placement in de novo–designed heme proteins
- 1 January 1999
- journal article
- Published by Wiley in Protein Science
- Vol. 8 (9) , 1888-1898
- https://doi.org/10.1110/ps.8.9.1888
Abstract
The effects of histidine residue placement in a de novo-designed four-alpha-helix bundle are investigated by placement of histidine residues at coiled coil heptad a positions in two distinct heptads and at each position within a single heptad repeat of our prototype heme protein maquette, [H10H24]2 [[Ac-CGGGELWKL x HEELLKK x FEELLKL x HEERLKK x L-CONH2]2]2 composed of a generic (alpha-SS-alpha)2 peptide architecture. The heme to peptide stoichiometry of variants of [H10H24]2 with either or both histidines on each helix replaced with noncoordinating alanine residues ([H10A24]2, [A10H24]2, and [A10A24]2) demonstrates the obligate requirement of histidine for biologically significant heme affinity. Variants of [A10A24]2, [[Ac-CGGGELWKL x AEELLKK x FEELLKL x AEERLKK x L-CONH2]2]2, containing a single histidine per helix in positions 9 to 15 were evaluated to verify the design based on molecular modeling. The bis-histidine site formed between heptad positions a at 10 and 10' bound ferric hemes with the highest affinity, Kd1 and Kd2 values of 1.5 and 800 nM, respectively. Placement of histidine at position 11 (heptad position b) resulted in a protein that bound a single heme with moderate affinity, Kd1 of 9.5 microM, whereas the other peptides had no measurable apparent affinity for ferric heme with Kd1 values >200 microM. The bis-histidine ligation of heme to [H10A24]2 and [H11A24]2 was confirmed by electron paramagnetic resonance spectroscopy. The protein design rules derived from this study, together with the narrow tolerances revealed, are applicable for improving future heme protein designs, for analyzing the results of randomized heme protein combinatorial libraries, as well as for implementation in automated protein design.Keywords
This publication has 85 references indexed in Scilit:
- Characterization of the Fundamental Protein Ligand Requirements of [4Fe-4S]2+/+Clusters with Sixteen Amino Acid MaquettesJournal of the American Chemical Society, 1998
- The de novo design of a rubredoxin‐like fe siteProtein Science, 1998
- The role of protonation and metal chelation preferences in defining the properties of mercury-binding coiled coilsJournal of Molecular Biology, 1998
- Solution Structure of α2D, a Nativelike de Novo Designed ProteinJournal of the American Chemical Society, 1998
- Global Topology & Stability and Local Structure & Dynamics in a Synthetic Spin-Labeled Four-Helix Bundle ProteinBiochemistry, 1997
- Equilibrium dissociation and unfolding of the dimeric human papillomavirus strain‐16 E2 DNA‐binding domainProtein Science, 1996
- The Association Rate Constant for Heme Binding to Globin Is Independent of Protein StructureBiochemistry, 1996
- Construction of new ligand binding sites in proteins of known structureJournal of Molecular Biology, 1991
- Structure of ferricytochrome c′ from Rhodospirillum molischianum at 1.67 Å resolutionJournal of Molecular Biology, 1985
- Heme complexes of rabbit hemopexin, human hemopexin and human serum albumin: Electron spin resonance and Mőssbauer spectroscopic studiesBiochemical and Biophysical Research Communications, 1974