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PDBsum entry 1mnh
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Oxygen storage
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PDB id
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1mnh
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References listed in PDB file
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Key reference
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Title
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Interactions among residues cd3, E7, E10, And e11 in myoglobins: attempts to simulate the ligand-Binding properties of aplysia myoglobin.
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Authors
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S.J.Smerdon,
S.Krzywda,
A.M.Brzozowski,
G.J.Davies,
A.J.Wilkinson,
A.Brancaccio,
F.Cutruzzolá,
C.T.Allocatelli,
M.Brunori,
T.Li.
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Ref.
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Biochemistry, 1995,
34,
8715-8725.
[DOI no: ]
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PubMed id
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Abstract
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Site-directed mutations have been introduced singly and in combination at
residues lysine/arginine45 (CD3), histidine64 (E7), threonine67 (E10), and
valine68 (E11) in pig and sperm whale myoglobins. The mutations probe the roles
of these key distal pocket residues and represent attempts to mimic the heme
environment of Aplysia limacina myoglobin which achieves moderately high O2
affinity in the absence of a distal histidine. In the mollusc myoglobin,
arginine-E10 is believed to swing into the heme pocket and provide a hydrogen
bond to the bound O2. The association and dissociation rate constants for oxygen
and carbon monoxide binding to H64V, T67A, T67V, T67E, T67R, V68I, V68T,
H64V-T67R, H64V-V68T, H64V-V68I, and H64V-T67R-V68I pig myoglobin mutants and
T67R, H64V-T67R, and R45D-H64V-T67R mutants of sperm whale myoglobin have been
measured using stopped-flow rapid mixing and flash photolysis techniques.
Replacement of histidine-E7 with valine in either pig or sperm whale myoglobin
drastically lowers O2 affinity while increasing CO affinity. Two second-site
mutations, T67R and V68T, increase O2 affinity in the H64V mutant, even though
when introduced singly these mutations have no effect or lower KO2,
respectively. However, the oxygen affinities of the H64V-T67R mutants are
5-10-fold lower than that of A. limacina myoglobin. The crystal structure of the
pig H64V-T67R double mutant reveals that the valine-E7 side chain is
approximately 1 A closer to the heme plane than in the mollusc protein which may
restrict access of the arginine-E10 side chain into the heme pocket. The O2
affinity of the H64V-T67R double mutant is not altered by the R45D replacement
but is reduced 10-fold by the V68I mutation. The interactive effects of the
T67R, V68I, and V68T mutations with the H64V substitution are discussed in terms
of O2, CO, and N3-binding and the crystal structures of the H64V-T67R,
H64V-V68I, and H64V-V68T double-mutant proteins. In many instances, the effects
of second-site mutations in the valine64 background are the opposite of those
observed for the corresponding single mutations in the wild type background.
These results can be understood in terms of the changes in the rate-determining
steps for ligand association and dissociation and the loss of distal pocket
water molecules which follow replacement of histidine64 by valine.
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Secondary reference #1
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Title
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Distal pocket polarity in ligand binding to myoglobin: deoxy and carbonmonoxy forms of a threonine68(e11) mutant investigated by x-Ray crystallography and infrared spectroscopy.
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Authors
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A.D.Cameron,
S.J.Smerdon,
A.J.Wilkinson,
J.Habash,
J.R.Helliwell,
T.Li,
J.S.Olson.
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Ref.
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Biochemistry, 1993,
32,
13061-13070.
[DOI no: ]
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PubMed id
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Secondary reference #2
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Title
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High-Resolution X-Ray structures of pig metmyoglobin and two cd3 mutants: mb(lys45----Arg) and mb(lys45----Ser).
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Authors
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T.J.Oldfield,
S.J.Smerdon,
Z.Dauter,
K.Petratos,
K.S.Wilson,
A.J.Wilkinson.
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Ref.
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Biochemistry, 1992,
31,
8732-8739.
[DOI no: ]
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PubMed id
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Secondary reference #3
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Title
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Determination of the crystal structure of recombinant pig myoglobin by molecular replacement and its refinement.
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Authors
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S.J.Smerdon,
T.J.Oldfield,
E.J.Dodson,
G.G.Dodson,
R.E.Hubbard,
A.J.Wilkinson.
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Ref.
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Acta Crystallogr B, 1990,
46,
370-377.
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PubMed id
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