Previous work by the applicant has suggested that a single model consisting of a hierarchy of globin complexes can adequately describe the quaternary structure of three representative, ca.3,6OOkDa, hexagonal bilayer (HBL) molecules: the hemoglobins (Hbs) of the earthworm Lumbricus terrestris and the leech Macrobdella decora and the chlorocruorin (Chl) of the marine polychaete Eudistylia vancouverii. In this model, 12 ca.2OOkDa complexes, each a dodecamer of approximately 16kDa, heme-- containing chains (144 globin chains and 144 heme groups) are linked together by 30 to 40 chimeric globin chains (ca.3OkDa) and 30 to 40 Ca(II), into an HBL structure. The dodecamers in turn consist of smaller subunits: 3 monomers and 3 disulfide-bonded trimers in Lumbricus Hb, 6 monomers and 3 disulfide-bonded dimers in Macrobdella Hb or 3 disulfide-- bonded tetramers in Eudistylia Chl; although the dodecameric complexes exhibit substantial cooperativity of oxygen binding, full cooperativity is dependent on the presence of a complete HBL structure. The objectives of the proposed research can be grouped as follows. (A) The description of the pathways of the dissociation and reassociation of HBL structures, including the effect of group IIA cations and the determination of the number of Ca-binding sites and their affinities in the HBL's and their subunits. (B) The determination of the crystal structures of the dodecamer and/or smaller subunits of the HBL's by x-ray diffraction, accompanied by modeling of the small subunits of Lumbricus Hb based on known globin crystal structures. (C) The determination of the kinetics of binding of 02, CO and NO to the HBL's and their subunits, measurement Of 02 binding of the reassociated HBL structures and subunits and examination of alterations in the molecular shape of HBL's and their subunits attendant upon ligand addition or removal.

Agency
National Institute of Health (NIH)
Institute
National Institute of Diabetes and Digestive and Kidney Diseases (NIDDK)
Type
Research Project (R01)
Project #
5R01DK038674-08
Application #
2140614
Study Section
Molecular and Cellular Biophysics Study Section (BBCA)
Project Start
1987-04-01
Project End
1997-03-31
Budget Start
1995-04-01
Budget End
1996-03-31
Support Year
8
Fiscal Year
1995
Total Cost
Indirect Cost
Name
Wayne State University
Department
Biochemistry
Type
Schools of Medicine
DUNS #
City
Detroit
State
MI
Country
United States
Zip Code
48202
Zal, F; Green, B N; Martineu, P et al. (2000) Polypeptide chain composition diversity of hexagonal-bilayer haemoglobins within a single family of annelids, the alvinellidae. Eur J Biochem 267:5227-36
Takashima, S; Kuchumov, A R; Vinogradov, S N (1999) The apparently symmetrical hexagonal bilayer hemoglobin from Lumbricus terrestris has a large dipole moment. Biophys Chem 77:27-35
Green, B N; Kuchumov, A R; Hankeln, T et al. (1998) An electrospray ionization mass spectrometric study of the extracellular hemoglobins from Chironomus thummi thummi. Biochim Biophys Acta 1383:143-50
Krebs, A; Lamy, J; Vinogradov, S N et al. (1998) Lumbricus terrestris hemoglobin: a comparison of small-angle x-ray scattering and cryoelectron microscopy data. Biopolymers 45:289-98
Green, B N; Kuchumov, A R; Walz, D A et al. (1998) A hierarchy of disulfide-bonded subunits: the quaternary structure of Eudistylia chlorocruorin. Biochemistry 37:6598-605
Kaufman, S L; Kuchumov, A R; Kazakevich, M et al. (1998) Analysis of a 3.6-MDa hexagonal bilayer hemoglobin from Lumbricus terrestris using a gas-phase electrophoretic mobility molecular analyzer. Anal Biochem 259:195-202
Green, B N; Sannes-Lowery, K A; Loo, J A et al. (1998) Electrospray ionization mass spectrometric study of the multiple intracellular monomeric and polymeric hemoglobins of Glycera dibranchiata. J Protein Chem 17:85-97
de Haas, F; Kuchumov, A; Taveau, J C et al. (1997) Three-dimensional reconstruction of native and reassembled Lumbricus terrestris extracellular hemoglobin. Localization of the monomeric globin chains. Biochemistry 36:7330-8
Martin, P D; Eisele, K L; Doyle, M A et al. (1996) Molecular symmetry of the dodecamer subunit of Lumbricus terrestris hemoglobin. J Mol Biol 255:170-5
Imai, K; Sharma, P K; Vinogradov, S N (1996) Oxygen binding properties of Eudistylia vancouverii chlorocruorin and its dodecamer subunit. Comp Biochem Physiol B Biochem Mol Biol 113:613-8

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