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肽介导的环电流位移在神经垂体激素运载蛋白 - 肽相互作用研究中的应用:神经垂体激素运载蛋白 - 肽复合物的部分模型

Application of peptide-mediated ring current shifts to the study of neurophysin-peptide interactions: a partial model of the neurophysin-peptide complex.

作者信息

Peyton D, Sardana V, Breslow E

出版信息

Biochemistry. 1987 Mar 24;26(6):1518-25. doi: 10.1021/bi00380a004.

Abstract

Perdeuteriated peptides were synthesized that are capable of binding to the hormone binding site of neurophysin but that differ in the position of aromatic residues. The binding of these peptides to bovine neurophysin I and its des-1-8 derivative was studied by proton nuclear magnetic resonance spectroscopy in order to identify protein residues near the binding site through the observation of differential ring current effects on assignable protein resonances. Phenylalanine in position 3 of bound peptides was shown to induce significant ring current shifts in several resonances assignable to the 1-8 sequence, including those of Leu-3 and/or Leu-5, but was without effect on Tyr-49 ring protons. The magnitude of these shifts was dependent on the identity of peptide residue 1. By contrast, the sole demonstrable direct effect of an aromatic residue in position 1 was a downfield shift in Tyr-49 ring protons. Study of peptide binding to des-1-8-neurophysin demonstrated similar conformations of native and des-1-8 complexes except for the environment of Tyr-49, confirmed the peptide-induced ring current shift assignments in native neurophysin, and indicated an effect of binding on Thr-9. These observations are integrated with other results to provide a partial model of neurophysin-peptide complexes that places the ring of Tyr-49 at a distance 5-10 A from residue 1 of bound peptide and that places both the 1-8 sequence and the protein backbone region containing Tyr-49 proximal to each other and to peptide residue 3.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

合成了能够与神经垂体激素结合位点结合但芳香族残基位置不同的全氘代肽。通过质子核磁共振光谱研究了这些肽与牛神经垂体激素I及其去1 - 8衍生物的结合情况,以便通过观察对可归属的蛋白质共振的不同环电流效应来确定结合位点附近的蛋白质残基。结果表明,结合肽第3位的苯丙氨酸会使可归属为1 - 8序列的几个共振峰产生显著的环电流位移,包括亮氨酸-3和/或亮氨酸-5的共振峰,但对酪氨酸-49的环质子没有影响。这些位移的大小取决于肽残基1的身份。相比之下,第1位芳香族残基唯一可证明的直接效应是酪氨酸-49环质子的向低场位移。对肽与去1 - 8 -神经垂体激素结合的研究表明,除了酪氨酸-49的环境外,天然复合物和去1 - 8复合物具有相似的构象,证实了天然神经垂体激素中肽诱导的环电流位移归属,并表明结合对苏氨酸-9有影响。将这些观察结果与其他结果相结合,提供了一个神经垂体激素 - 肽复合物的部分模型,该模型将酪氨酸-49的环置于距结合肽残基1 5 - 10埃的距离处,并使1 - 8序列和包含酪氨酸-49的蛋白质主链区域彼此靠近且靠近肽残基3。(摘要截短于250字)

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