Rozenfeld Raphaël, Iturrioz Xavier, Okada Mayumi, Maigret Bernard, Llorens-Cortes Catherine
INSERM Unité 36, Collège de France, 11, place Marcelin Berthelot, 75005 Paris, France.
Biochemistry. 2003 Dec 23;42(50):14785-93. doi: 10.1021/bi034358u.
Aminopeptidase A is a zinc metalloenzyme that generates brain angiotensin III, which exerts a tonic stimulatory action on blood pressure in hypertensive animals. We have previously constructed a three-dimensional model of the ectodomain of this enzyme, using the crystal structure of leukotriene A4 hydrolase/aminopeptidase as a template. According to this model, Glu-215, which is located in the active site, hydrogen bonds to the amino moiety of the inhibitor, 4-amino-4-phosphonobutyric acid (GluPhos), a phosphonic acid anologue of glutamic acid. Replacement of this residue with an aspartate or an alanine in the model abolished this interaction and led to a change in the position of the inhibitor in the active site. Mutagenic replacement of Glu-215 with an aspartate or an alanine drastically reduced the affinity of the recombinant enzymes for the substrate by a factor of 10 or 17, respectively, and the rate of hydrolysis by a factor of 14 or 6, respectively. Two isomers of GluPhos with different N-terminal amine positions differed considerably in their ability to inhibit the wild type (by a factor of 40), but not the mutated enzymes. These results, together with the interaction predicted by the model, demonstrate that Glu-215 interacts with the N-terminal amine of the substrate, thereby contributing, together with Glu-352, to the determination of the exopeptidase specificity of aminopeptidase A.
氨肽酶A是一种锌金属酶,可生成脑内血管紧张素III,对高血压动物的血压产生持续性刺激作用。我们之前以白三烯A4水解酶/氨肽酶的晶体结构为模板,构建了该酶胞外域的三维模型。根据此模型,位于活性位点的Glu-215与抑制剂4-氨基-4-膦酰丁酸(GluPhos,谷氨酸的膦酸类似物)的氨基部分形成氢键。在模型中用天冬氨酸或丙氨酸取代该残基会消除这种相互作用,并导致抑制剂在活性位点的位置发生变化。用天冬氨酸或丙氨酸对Glu-2进行诱变取代,分别使重组酶对底物的亲和力急剧降低10倍或17倍,水解速率分别降低14倍或6倍。GluPhos的两种不同N端胺位置的异构体在抑制野生型酶的能力上有很大差异(相差40倍),但对突变酶无此差异。这些结果,连同模型预测的相互作用,表明Glu-215与底物的N端胺相互作用,从而与Glu-352一起,共同决定氨肽酶A的外肽酶特异性。