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PDBsum entry 7gpb
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Glycogen phosphorylase
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PDB id
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7gpb
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Contents |
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* Residue conservation analysis
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References listed in PDB file
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Key reference
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Title
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Structural mechanism for glycogen phosphorylase control by phosphorylation and AMP.
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Authors
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D.Barford,
S.H.Hu,
L.N.Johnson.
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Ref.
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J Mol Biol, 1991,
218,
233-260.
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PubMed id
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Abstract
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The crystal structures of activated R state glycogen phosphorylase a (GPa) and R
and T state glycogen phosphorylase b (GPb) complexed with AMP have been solved
at 2.9 A, 2.9 A and 2.2 A resolution, respectively. The structure of R state GPa
is nearly identical to the structure of sulphate-activated R state GPb, except
in the region of Ser14, where there is a covalently attached phosphate group in
GPa and a non-covalently attached sulphate group in GPb. The contacts made by
the N-terminal tail residues in R state GPa at the subunit interface of the
functionally active dimer are similar to those observed previously for T state
GPa. The quaternary and tertiary structural changes on the T to R transition
allow these interactions to be relayed to the catalytic site in R state GPa. The
transition from the T state GPb structure to the R state GPa structure results
in a change in the N-terminal residues from a poorly ordered extended structure
that makes intrasubunit contacts to an ordered coiled conformation that makes
intersubunit contacts. The distance between Arg10, the first residue to be
located from the N terminus, in R state GPa and T state GPb is 50 A. One of the
important subunit-subunit interactions in the dimer molecule involves contacts
between the helix alpha 2 and the cap' (residues 35' to 45' that form a loop
between the 1st and 2nd alpha helices, alpha 1' and alpha 2' of the other
subunit. The prime denotes residues from the other subunit). The interactions
made by the N-terminal residues induce structural changes at the cap'/alpha 2
helix interface that lead to the creation of a high-affinity AMP site. The
tertiary structural changes at the cap (shifts 1.2 to 2.1 A for residues 35 to
45) are partially compensated by the quaternary structural change so that the
overall shifts in these residues after the combined tertiary and quaternary
changes are between 0.5 and 1.3 A. AMP binds to R state GPb with at least
100-fold greater affinity and exhibits four additional hydrogen bonds, stronger
ionic interactions and more extensive van der Waals' interactions with 116 A2
greater solvent accessible surface area buried compared with AMP bound to T
state GPb.(ABSTRACT TRUNCATED AT 400 WORDS)
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Secondary reference #1
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Title
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Glycogen phosphorylase b: description of the protein structure 1 1991
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Authors
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K.R.Acharya,
D.I.Stuart,
K.M.Varvill,
L.N.Johnson.
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Ref.
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glycogen phosphorylase b: des ...
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Secondary reference #2
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Title
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Refined crystal structure of the phosphorylase-Heptulose 2-Phosphate-Oligosaccharide-Amp complex.
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Authors
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L.N.Johnson,
K.R.Acharya,
M.D.Jordan,
P.J.Mclaughlin.
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Ref.
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J Mol Biol, 1990,
211,
645-661.
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PubMed id
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Secondary reference #3
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Title
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Comparison of the binding of glucose and glucose 1-Phosphate derivatives to t-State glycogen phosphorylase b.
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Authors
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J.L.Martin,
L.N.Johnson,
S.G.Withers.
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Ref.
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Biochemistry, 1990,
29,
10745-10757.
[DOI no: ]
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PubMed id
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Secondary reference #4
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Title
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The allosteric transition of glycogen phosphorylase.
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Authors
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D.Barford,
L.N.Johnson.
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Ref.
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Nature, 1989,
340,
609-616.
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PubMed id
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Secondary reference #5
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Title
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Structural changes in glycogen phosphorylase induced by phosphorylation.
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Authors
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S.R.Sprang,
K.R.Acharya,
E.J.Goldsmith,
D.I.Stuart,
K.Varvill,
R.J.Fletterick,
N.B.Madsen,
L.N.Johnson.
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Ref.
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Nature, 1988,
336,
215-221.
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PubMed id
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