The successful synthesis of globin in E.coli and its reconstitution with haem to fully functional haemoglobin has opened up a wide field of research. We plan to use a combination of directed mutagenesis, X-ray crystallography and computer graphics to follow evolution backwards from mammals to birds, reptiles, fish and invertebrates. We wish to understand the structural basis for the species-specific properties of haemoglobins, and to test my hypothesis that new functions arise from the replacement of a few amino acid residues in key positions, while the majority of amino acid differences between species are functionally neutral or near neutral and are due to genetic drift. Other possibilities are the synthesis of a stable tetrameric haemoglobin; induction of changes in the electron distribution of the haem by amino acid substitutions in the haem pocket, and study of their physiological effects; the substitution of amino acid residues in the haem pocket to generate catalytic activities; study of the transmission of elecytrostatic effects through the protein by measuring the change in pKa's of specific histidines as a function of carboxylates or lysines placed at different distances from them. We plan further development of antisickling drugs. I should like to solve the structure of human serum albumin by X-ray analysis in order to study the stereo-chemistry of drug binding by this protein. I should also like to solve the structure of horseradish peroxidase in order to understand its catalytic mechanism and, by directed mutagenesis, improve its utility as an analytical tool in clinical biochemistry. We will use the system of eukaryotic protein synthesis in E.coli for making other proteins of medical or biological interest. I shall continue the X-ray analysis of abnormal hemoglobins whose physiological properties need to be understood on a stereochemical basis.

Agency
National Institute of Health (NIH)
Institute
National Heart, Lung, and Blood Institute (NHLBI)
Type
Research Project (R01)
Project #
2R01HL031461-04
Application #
3342585
Study Section
Biophysics and Biophysical Chemistry B Study Section (BBCB)
Project Start
1983-12-01
Project End
1989-11-30
Budget Start
1986-12-01
Budget End
1987-11-30
Support Year
4
Fiscal Year
1987
Total Cost
Indirect Cost
Name
Medical Research Council Lab of Molec Biol
Department
Type
DUNS #
232560263
City
Cambridge
State
Country
United Kingdom
Zip Code
CB2 2QH
Boyle, W A; Muralidharan, S; Maher, G M et al. (1997) Vascular actions of 'caged' phenylephrine analogs depend on the structure and site of attachment of the 2-nitrobenzyl group. J Photochem Photobiol B 41:233-44
Stott, K; Blackburn, J M; Butler, P J et al. (1995) Incorporation of glutamine repeats makes protein oligomerize: implications for neurodegenerative diseases. Proc Natl Acad Sci U S A 92:6509-13
Whitaker, T L; Berry, M B; Ho, E L et al. (1995) The D-helix in myoglobin and in the beta subunit of hemoglobin is required for the retention of heme. Biochemistry 34:8221-6
Gilles-Gonzalez, M A; Gonzalez, G; Perutz, M F (1995) Kinase activity of oxygen sensor FixL depends on the spin state of its heme iron. Biochemistry 34:232-6
Perutz, M F (1995) Polar zippers: their role in human disease. Pharm Acta Helv 69:213-24
De Baere, I; Perutz, M F; Kiger, L et al. (1994) Formation of two hydrogen bonds from the globin to the heme-linked oxygen molecule in Ascaris hemoglobin. Proc Natl Acad Sci U S A 91:1594-7
Gilles-Gonzalez, M A; Gonzalez, G; Perutz, M F et al. (1994) Heme-based sensors, exemplified by the kinase FixL, are a new class of heme protein with distinctive ligand binding and autoxidation. Biochemistry 33:8067-73
Perutz, M (1994) Polar zippers: their role in human disease. Protein Sci 3:1629-37
Perutz, M F; Fermi, G; Poyart, C et al. (1993) A novel allosteric mechanism in haemoglobin. Structure of bovine deoxyhaemoglobin, absence of specific chloride-binding sites and origin of the chloride-linked Bohr effect in bovine and human haemoglobin. J Mol Biol 233:536-45
Gilles-Gonzalez, M A; Gonzalez, G (1993) Regulation of the kinase activity of heme protein FixL from the two-component system FixL/FixJ of Rhizobium meliloti. J Biol Chem 268:16293-7

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