Williams T A, Corvol P, Soubrier F
INSERM Unité 36, Collège de France, Paris.
J Biol Chem. 1994 Nov 25;269(47):29430-4.
Angiotensin I-converting enzyme (ACE) contains two zinc-dependent catalytic domains (N and C domains) each bearing the motif HEXXH where the two histidines form two of the three amino acid zinc ligands. Sequence alignment of each ACE domain with other zinc metalloproteases, indicates a glutamate residues which putatively constitutes the third zinc ligand and an aspartate residue which may form an indirect zinc interaction. We investigated the functional roles of the glutamate and aspartate residues in the ACE C domain (Glu987 and Asp991) using a cDNA encoding an inactive N domain. We mutated Glu987 to aspartate (E987D) or valine (E987V) and Asp991 to glutamate (D991E) or alanine (D991A). Catalytically active mutants (E987D, D991E and D991A) exhibited similar Km values for hippuryl-His-Leu compared to non-mutated C domain. E987D displayed a 300-fold decrease in kcat and a 25-fold reduction in sensitivity to the ACE inhibitor trandolaprilat, whose binding is zinc-dependent. E987V was catalytically inactive and did not bind [3H]trandolaprilat. D991E and D991A exhibited a 3.8- and 22-fold decrease in kcat, respectively, and the Ki' values for trandolaprilat were increased 8- and 29-fold. These results provide strong evidence that Glu987 constitutes the third zinc ligand in the ACE C domain and suggest a role for Asp991 in positioning the C domain active site zinc ion.
血管紧张素I转换酶(ACE)含有两个锌依赖性催化结构域(N结构域和C结构域),每个结构域都带有基序HEXXH,其中两个组氨酸形成三个氨基酸锌配体中的两个。将每个ACE结构域与其他锌金属蛋白酶进行序列比对,发现一个谷氨酸残基可能构成第三个锌配体,一个天冬氨酸残基可能形成间接的锌相互作用。我们使用编码无活性N结构域的cDNA,研究了ACE C结构域中谷氨酸和天冬氨酸残基(Glu987和Asp991)的功能作用。我们将Glu987突变为天冬氨酸(E987D)或缬氨酸(E987V),将Asp991突变为谷氨酸(D991E)或丙氨酸(D991A)。与未突变的C结构域相比,具有催化活性的突变体(E987D、D991E和D991A)对马尿酰-His-Leu表现出相似的Km值。E987D的催化常数kcat降低了300倍,对ACE抑制剂群多普利拉的敏感性降低了25倍,群多普利拉的结合是锌依赖性的。E987V无催化活性,不结合[3H]群多普利拉。D991E和D991A的催化常数kcat分别降低了3.8倍和22倍,群多普利拉的Ki'值分别增加了8倍和29倍。这些结果提供了有力证据,表明Glu987构成了ACE C结构域中的第三个锌配体,并表明Asp991在定位C结构域活性位点锌离子方面发挥作用。