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1Q4V

CRYSTAL STRUCTURE OF ALLO-ILEA2-INSULIN, AN INACTIVE CHIRAL ANALOGUE: IMPLICATIONS FOR THE MECHANISM OF RECEPTOR

Replaces:  1PC1Replaces:  1LW8
Summary for 1Q4V
Entry DOI10.2210/pdb1q4v/pdb
Related1TRZ
DescriptorInsulin, ZINC ION, PHENOL, ... (5 entities in total)
Functional Keywordsallo-ile-a2-insulin, protein unfolding, insulin receptor, hormone-growth factor complex, hormone/growth factor
Total number of polymer chains4
Total formula weight11860.23
Authors
Wan, Z.L.,Xu, B.,Chu, Y.C.,Katsoyannis, P.G.,Weiss, M.A. (deposition date: 2003-08-04, release date: 2003-08-19, Last modification date: 2024-11-20)
Primary citationWan, Z.L.,Xu, B.,Chu, Y.C.,Katsoyannis, P.G.,Weiss, M.A.
Crystal structure of allo-Ile(A2)-insulin, an inactive chiral analogue: implications for the mechanism of receptor binding.
Biochemistry, 42:12770-12783, 2003
Cited by
PubMed Abstract: The crystal structure of an inactive chiral analogue of insulin containing nonstandard substitution allo-Ile(A2) is described at 2.0 A resolution. In native insulin, the invariant Ile(A2) side chain anchors the N-terminal alpha-helix of the A-chain to the hydrophobic core. The structure of the variant protein was determined by molecular replacement as a T(3)R(3) zinc hexamer. Whereas respective T- and R-state main-chain structures are similar to those of native insulin (main-chain root-mean-square deviations (RMSD) of 0.45 and 0.54 A, respectively), differences in core packing are observed near the variant side chain. The R-state core resembles that of the native R-state with a local inversion of A2 orientation (core side chain RMSD 0.75 A excluding A2); in the T-state, allo-Ile(A2) exhibits an altered conformation in association with the reorganization of the surrounding side chains (RMSD 0.98 A). Surprisingly, the core of the R-state is similar to that observed in solution nuclear magnetic resonance (NMR) studies of an engineered T-like monomer containing the same chiral substitution (allo-Ile(A2)-DKP-insulin; Xu, B., Hua, Q. X., Nakagawa, S. H., Jia, W., Chu, Y. C., Katsoyannis, P. G., and Weiss, M. A. (2002) J. Mol. Biol. 316, 435-441). Simulation of NOESY spectra based on crystallographic protomers enables the analysis of similarities and differences in solution. The different responses of the T- and R-state cores to chiral perturbation illustrates both their intrinsic plasticity and constraints imposed by hexamer assembly. Although variant T- and R-protomers retain nativelike protein surfaces, the receptor-binding activity of allo-Ile(A2)-insulin is low (2% relative to native insulin). This seeming paradox suggests that insulin undergoes a change in conformation to expose Ile(A2) at the hormone-receptor interface.
PubMed: 14596591
DOI: 10.1021/bi034430o
PDB entries with the same primary citation
Experimental method
X-RAY DIFFRACTION (2 Å)
Structure validation

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