Jullien Nicolas D, Cuniasse Philippe, Georgiadis Dimitris, Yiotakis Athanasios, Dive Vincent
CEA, Département d'Ingénerie et d'Etudes des Protéines, Gif/Yvette, France.
FEBS J. 2006 Apr;273(8):1772-81. doi: 10.1111/j.1742-4658.2006.05196.x.
Somatic angiotensin-converting enzyme (ACE) contains two homologous domains, each bearing a functional active site. Studies on the selectivity of these ACE domains towards either substrates or inhibitors have mostly relied on the use of mutants or isolated domains of ACE. To determine directly the selectivity properties of each ACE domain, working with wild-type enzyme, we developed an approach based on the combined use of N-domain-selective and C-domain-selective ACE inhibitors and fluorogenic substrates. With this approach, marked differences in substrate selectivity were revealed between rat, mouse and human somatic ACE. In particular, the fluorogenic substrate Mca-Ala-Ser-Asp-Lys-DpaOH was shown to be a strict N-domain-selective substrate of mouse ACE, whereas with rat ACE it displayed marked C-domain selectivity. Similar differences in selectivity between these ACE species were also observed with a new fluorogenic substrate of ACE, Mca-Arg-Pro-Pro-Gly-Phe-Ser-Pro-DpaOH. In support of these results, changes in amino-acid composition in the binding site of these three ACE species were pinpointed. Together these data demonstrate that the substrate selectivity of the N-domain and C-domain depends on the ACE species. These results raise concerns about the interpretation of functional studies performed in animals using N-domain and C-domain substrate selectivity data derived only from human ACE.
体细胞血管紧张素转换酶(ACE)包含两个同源结构域,每个结构域都有一个功能性活性位点。关于这些ACE结构域对底物或抑制剂的选择性研究大多依赖于使用ACE的突变体或分离结构域。为了直接确定每个ACE结构域的选择性特性,我们使用野生型酶,开发了一种基于联合使用N结构域选择性和C结构域选择性ACE抑制剂及荧光底物的方法。通过这种方法,揭示了大鼠、小鼠和人体细胞ACE在底物选择性上的显著差异。特别是,荧光底物Mca-Ala-Ser-Asp-Lys-DpaOH被证明是小鼠ACE严格的N结构域选择性底物,而对于大鼠ACE,它表现出显著的C结构域选择性。在ACE的一种新荧光底物Mca-Arg-Pro-Pro-Gly-Phe-Ser-Pro-DpaOH上也观察到了这些ACE物种之间类似的选择性差异。为支持这些结果,确定了这三种ACE物种结合位点氨基酸组成的变化。这些数据共同表明,N结构域和C结构域的底物选择性取决于ACE物种。这些结果引发了人们对在动物中使用仅来源于人类ACE的N结构域和C结构域底物选择性数据进行功能研究的解释的担忧。