The structures of the filamentous bacteriophages Pf1 and fd will be studied using coordinated neutron and x-ray fiber diffraction and solid-state NMR spectroscopy. Neutron diffraction from specifically deuterated phage particles has been used to determine the positions of the five valine residues in Pf1 in three dimensions. Using this technique, the positions of additional residues in both virions will be determined. This will provide a detailed picture of the coat protein chain folding in the virions. Parallel 2H-NMR studies of specifically deuterated phage will also be used to characterize the structure and dynamics of the phage particles. A major strength of the proposed research is that the neutron diffraction and 2H-NMR experiments will utilize the same specimens. A method will be developed for combining structural information derived from solid-state NMR experiments with data from fiber diffraction studies. The approach to be taken will use restrained least-squares refinement of molecular models for the coat proteins to construct models of the virion structures consistent with orientational information derived from solid-state NMR, positional information derived from neutron diffraction from specifically deuterated specimens and high resolution x-ray fiber diffraction data. This unique coordination of different kinds of structural information will result in high resolution models for the structures of both PF1 and fd. The development of this coordinated approach to the study of macromolecular assemblies holds great promise for the study of the molecular architecture of many subcellular organelles.

Agency
National Institute of Health (NIH)
Institute
National Institute of General Medical Sciences (NIGMS)
Type
Research Project (R01)
Project #
5R01GM034343-07
Application #
3285172
Study Section
Biophysical Chemistry Study Section (BBCB)
Project Start
1988-02-01
Project End
1993-01-31
Budget Start
1991-02-01
Budget End
1992-01-31
Support Year
7
Fiscal Year
1991
Total Cost
Indirect Cost
Name
Boston University
Department
Type
Schools of Arts and Sciences
DUNS #
604483045
City
Boston
State
MA
Country
United States
Zip Code
02118
McDonnell, P A; Shon, K; Kim, Y et al. (1993) fd coat protein structure in membrane environments. J Mol Biol 233:447-63
Shon, K J; Kim, Y; Colnago, L A et al. (1991) NMR studies of the structure and dynamics of membrane-bound bacteriophage Pf1 coat protein. Science 252:1303-5
Nambudripad, R; Stark, W; Makowski, L (1991) Neutron diffraction studies of the structure of filamentous bacteriophage Pf1. Demonstration that the coat protein consists of a pair of alpha-helices with an intervening, non-helical surface loop. J Mol Biol 220:359-79
Opella, S J; Stewart, P L (1989) Solid-state nuclear magnetic resonance structural studies of proteins. Methods Enzymol 176:242-75
Stark, W; Glucksman, M J; Makowski, L (1988) Conformation of the coat protein of filamentous bacteriophage Pf1 determined by neutron diffraction from magnetically oriented gels of specifically deuterated virions. J Mol Biol 199:171-82
Leo, G C; Colnago, L A; Valentine, K G et al. (1987) Dynamics of fd coat protein in lipid bilayers. Biochemistry 26:854-62
Colnago, L A; Valentine, K G; Opella, S J (1987) Dynamics of fd coat protein in the bacteriophage. Biochemistry 26:847-54
Opella, S J; Stewart, P L; Valentine, K G (1987) Protein structure by solid-state NMR spectroscopy. Q Rev Biophys 19:7-49
Glucksman, M J; Hay, R D; Makowski, L (1986) X-ray diffraction from magnetically oriented solutions of macromolecular assemblies. Science 231:1273-6