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Solution structure and dynamics of G1TE, a nonphosphorylated cyclic peptide inhibitor for the Grb2 SH2 domain
Journal article   Peer reviewed

Solution structure and dynamics of G1TE, a nonphosphorylated cyclic peptide inhibitor for the Grb2 SH2 domain

Yuan-Chao Lou, Feng-Di T. Lung, Ming-Tao Pai, Shiou-Ru Tzeng, Sue-Yee Wei, Peter P. Roller and Jya-Wei Cheng
Archives of Biochemistry and Biophysics, Vol.372(2), pp.309-314
15/12/1999

Abstract

Drug design Nuclear magnetic resonance Signal transduction Solution structure
The solution structure and dynamics of G1TE, a nonphosphorylated cyclic peptide inhibitor for the Grb2 SH2 domain, was determined using two-dimensional NMR and simulated annealing methods. G1TE consists of 10 amino acids and a C- terminal Cys cyclized through its side-chain sulfur atom by a thioether linkage to its N terminus. The results indicate that G1TE assumes a circle-like shape in solution in which all the side chains are protruding outside, and none of the residues are involved in intramolecular hydrogen bonding. The average root- mean-square deviations were found to be 0.41 ± 0.11 Å for the backbone heavy atoms C, Cα, and N, and 1.03 ± 0.14 Å for all heavy atoms in a family of 10 structures. 15 N relaxation measurements indicate that G1TE has rather restricted dynamics in the fast time scale within its backbone. However, residues Tyr3, Val6, and Gly7 may be involved in a possible conformational exchange. The structural comparison between G1TE in solution and the BCR-Abl phosphopeptide bound to Grb2 SH2 domain revealed that G1TE may form a larger circle-like binding surface than the BCR- Abl phosphopeptide in the bound form. Also, the restricted backbone dynamics of G1TE may result in a reduced loss of entropy and can compensate for the absence of a phosphate group at the Tyr3 position. These structural and dynamic properties of G1TE may provide a molecular basis for understanding its interactions with the Grb2 SH2 domain.

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