DiGregorio M, Pickering D S, Chan W W
Department of Biochemistry, McMaster University, Hamilton, Ontario, Canada.
Biochemistry. 1988 May 17;27(10):3613-7. doi: 10.1021/bi00410a013.
The active site of microsomal aminopeptidase has been probed by studying the inhibition of the enzyme in the simultaneous presence of two ligands. The results have been analyzed with the Yonetani-Theorell plot to quantitate the degree of interaction between the two inhibitors. As expected, the enzyme contains a strong binding site for the alpha-amino group and the hydrophobic side chain of specific substrates. In addition, however, the enzyme can interact with another amine and a second hydrophobic group. Evidence suggests that this extra amine may bind to the zinc in an unprotonated form and that one of the hydrophobic sites is located in the vicinity. Another unexpected finding in this work is a strong synergism between the binding of ammonia and that of zinc ligands such as hydroxamates. This synergism may reflect an induced-fit mechanism that brings the catalytically important zinc atom into the optimal state only in the presence of specific substrates.
通过研究在两种配体同时存在的情况下该酶的抑制作用,对微粒体氨肽酶的活性位点进行了探究。已用米氏-泰奥雷尔图分析结果,以定量两种抑制剂之间的相互作用程度。正如预期的那样,该酶含有一个与特定底物的α-氨基和疏水侧链的强结合位点。然而,除此之外,该酶还可与另一种胺和第二个疏水基团相互作用。有证据表明,这种额外的胺可能以未质子化的形式与锌结合,且其中一个疏水位点位于附近。这项研究中的另一个意外发现是氨与锌配体(如异羟肟酸)的结合之间存在强烈的协同作用。这种协同作用可能反映了一种诱导契合机制,该机制仅在存在特定底物时才使具有催化重要性的锌原子进入最佳状态。