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首页> 外文期刊>Journal of molecular recognition: JMR >NMR chemical shift mapping of the binding site of a protein proteinase inhibitor: changes in the (1)H, (13)C and (15)N NMR chemical shifts of turkey ovomucoid third domain upon binding to bovine chymotrypsin A(alpha).
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NMR chemical shift mapping of the binding site of a protein proteinase inhibitor: changes in the (1)H, (13)C and (15)N NMR chemical shifts of turkey ovomucoid third domain upon binding to bovine chymotrypsin A(alpha).

机译:蛋白质蛋白酶抑制剂的结合位点的NMR化学转移映射:(1)H,(13)C和(15)n NMR化学位移在土耳其卵粉第三结构型在结合牛Chymotrypsin A(α)时的变化。

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The substrate-like inhibition of serine proteinases by avian ovomucoid domains has provided an excellent model for protein inhibitor-proteinase interactions of the standard type. 1H,15N and 13C NMR studies have been undertaken on complexes formed between turkey ovomucoid third domain (OMTKY3)2 and chymotrypsin A(alpha) (Ctr) in order to characterize structural changes occurring in the Ctr binding site of OMTKY3. 15N and 13C were incorporated uniformly into OMTKY3, allowing backbone resonances to be assigned for OMTKY3 in both its free and complex states. Chemical shift perturbation mapping indicates that the two regions, K13-P22 and N33-A40, are the primary sites in OMTKY3 involved in Ctr binding, in full agreement with the 12 consensus proteinase-contact residues of OMTKY3 defined previously on the basis of X-ray crystallographic and mutational analysis. Smaller chemical shift perturbations in selected other regions may result from minor structural changes on binding. Through-bond 15N-13C correlations between P1-13C' and P1'-15N in two-dimensional H(N)CO and HN(CO) NMR spectra of selectively labeled OMTKY3 complexed with Ctr indicate that the scissile peptide bond between L18 and E19 of the inhibitor is intact in the complex. The chemical shifts of the reactive site peptide bond indicate that it is predominantly trigonal, although the data are not inconsistent with a slight perturbation of the hybridization of the peptide bond toward the first tetrahedral state along the reaction coordinate. Copyright 2001 John Wiley & Sons, Ltd.
机译:禽卵形域的丝氨酸蛋白酶抑制的基质状抑制为标准型蛋白质抑制剂 - 蛋白酶相互作用提供了优异的模型。已经在火鸡卵琥珀酸第三域(OMTKY3)2和脉冲素A(α)(CTR)之间形成的复合物上进行了1H,15N和13C NMR研究,以表征OMTKY3的CTR结合位点发生的结构变化。将15N和13C均匀地掺入OMTKY3中,允许在其自由和复杂的状态下分配用于OMTKY3的骨干共振。化学换档扰动映射表明,两个区域,K13-P22和N33-A40是OMTKY3中涉及CTR结合的初级位点,与先前在X-中定义的OMTKY3的12共有蛋白酶接触残留完全一致。射线晶体和突变分析。选择的其他地区的较小化学换肤扰动可能是由于结合的微小结构变化导致。 P1-13C'和P1'-15N之间的贯通15N-13C相关性,其二维H(n)CO和HN(CO)NMR光谱与CTR络合的选择性标记的OMTKY3,表明L18和E19之间的股肽键抑制剂在复合物中完好无损。反应性部位肽键的化学偏移表明它主要是三角形,尽管数据与沿反应坐标沿第一四面体状态的杂交的轻微扰动不一致。版权所有2001 John Wiley&Sons,Ltd。

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