首页> 外文期刊>Archives of Biochemistry and Biophysics >Solution structure and dynamics of G1TE, a nonphosphorylated cyclic peptide inhibitor for the Grb2 SH2 domain.
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Solution structure and dynamics of G1TE, a nonphosphorylated cyclic peptide inhibitor for the Grb2 SH2 domain.

机译:G1TE(Grb2 SH2域的非磷酸化环肽抑制剂)的溶液结构和动力学。

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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 A for the backbone heavy atoms C, Calpha, and N, and 1.03 +/- 0.14 A 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. Copyright 1999 Academic Press.
机译:使用二维NMR和模拟退火方法确定了G1TE(Grb2 SH2域的非磷酸化环肽抑制剂)的溶液结构和动力学。 G1TE由10个氨基酸和一个C端半胱氨酸组成,该半胱氨酸通过硫醚键连接至其N端,通过其侧链硫原子环化。结果表明,G1TE在溶液中呈圆形,其中所有侧链均向外突出,并且分子内氢键均不涉及任何残基。发现在10个结构族中,主链重原子C,Calpha和N的平均均方根偏差为0.41 +/- 0.11 A,而所有重原子的平均均方根偏差为1.03 +/- 0.14A。 (15)N弛豫测量表明,G1TE在其骨干内的快速时间尺度上具有相当有限的动态。但是,残基Tyr3,Val6和Gly7可能参与可能的构象交换。溶液中的G1TE与结合到Grb2 SH2结构域的BCR-Abl磷酸肽之间的结构比较表明,G1TE可能比结合形式的BCR-Abl磷酸肽形成更大的圆形结合表面。同样,G1TE受限的主链动力学可能会导致熵损失减少,并可以补偿Tyr3位置不存在磷酸基团。 G1TE的这些结构和动力学特性可以为理解其与Grb2 SH2域的相互作用提供分子基础。版权所有1999,学术出版社。

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