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PDBsum entry 1cdy
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T-cell surface glycoprotein
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PDB id
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1cdy
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References listed in PDB file
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Key reference
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Title
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Kinetic and structural analysis of mutant cd4 receptors that are defective in HIV gp120 binding.
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Authors
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H.Wu,
D.G.Myszka,
S.W.Tendian,
C.G.Brouillette,
R.W.Sweet,
I.M.Chaiken,
W.A.Hendrickson.
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Ref.
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Proc Natl Acad Sci U S A, 1996,
93,
15030-15035.
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PubMed id
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Abstract
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The T-cell antigen coreceptor CD4 also serves as the receptor for the envelope
glycoprotein gp120 of HIV. Extensive mutational analysis of CD4 has implicated
residues from a portion of the extracellular amino-terminal domain (D1) in gp120
binding. However, none of these proteins has been fully characterized
biophysically, and thus the precise effects on molecular structure and binding
interactions are unknown. In the present study, we produced soluble versions of
three mutant CD4 molecules (F43V, G47S, and A55F) and characterized their
structural properties, thermostability, and ability to bind gp120.
Crystallographic and thermodynamic analysis showed minimal structural
alterations in the F43V and G47S mutant proteins, which have solvent-exposed
mutant side chains. In contrast, some degree of disorder appears to exist in the
folded state of A55F, as a result of mutating a buried side chain. Real time
kinetic measurements of the interaction of the mutant proteins with gp120 showed
affinity decreases of 5-fold for G47S, 50-fold for A55F, and 200-fold for F43V.
Although both rate constants for the binding reaction were affected by these
mutations, the loss in affinity was mainly due to a decrease in on rates, with
less drastic changes occurring in the off rates. These observations suggest the
involvement of conformational adaptation in the CD4-gp120 interaction. Together,
the structural and kinetic data confirm that F43V is a critical residue in gp120
recognition site, which may also include main chain interactions at residue
Gly-47.
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