Abramić M, Schleuder D, Dolovcak L, Schröder W, Strupat K, Sagi D, Peter-Katalini J, Vitale L
Department of Organic Chemistry and Biochemistry, Institute "Ruder Bosković", Zagreb, Croatia.
Biol Chem. 2000 Dec;381(12):1233-43. doi: 10.1515/BC.2000.151.
Dipeptidyl peptidase (DPP III) was purified from rat and human erythrocytes using an identical procedure. Electrophoretic analyses revealed the same molecular size and pI for both enzymes. The molecular mass of the human enzyme, measured by matrix-assisted laser desorption/ionization MS, was 82500+/-60 Da. Its tryptic peptide mass profile was determined using the same technique, and the amino acid sequence of two internal peptides was obtained by tandem MS and Edman degradation. A search of databases revealed a high similarity between the human erythrocyte and rat liver DPP III: 21 matches out of 34 detected peptides were found, covering 40% of the total sequence. Matched peptides included the peptide harboring the characteristic HELLGH sequence motif, and a stretch of 19 identical amino acids, containing Glu, a putative ligand of active site zinc. Both enzymes preferred Arg-Arg-2-naphthylamide, and were activated by micromolar Co2+, differing in their pH optima and kcat/Km. Zn2+ ions, sulfhydryl reagents, and aminopeptidase inhibitors, especially probestin, inhibited the rat DPP III more potently. The two enzymes showed the highest affinity for angiotensin III (Ki < 1 microM) and a preference for ahydrophobic residue at the P1' site. However, significant differences in the binding constants for several peptides indicated non-identity in the active site topography of human and rat erythrocyte DPP III.
使用相同的程序从大鼠和人类红细胞中纯化二肽基肽酶(DPP III)。电泳分析显示两种酶的分子大小和等电点相同。通过基质辅助激光解吸/电离质谱法测定的人类酶的分子量为82500±60 Da。使用相同技术确定其胰蛋白酶肽质量图谱,并通过串联质谱和埃德曼降解获得两个内部肽段的氨基酸序列。数据库搜索显示人类红细胞DPP III与大鼠肝脏DPP III高度相似:在检测到的34个肽段中有21个匹配,覆盖总序列的40%。匹配的肽段包括含有特征性HELLGH序列基序的肽段,以及一段包含19个相同氨基酸的序列,其中含有谷氨酸,它是活性位点锌的假定配体。两种酶都偏好Arg-Arg-2-萘酰胺,并被微摩尔浓度的Co²⁺激活,它们的最适pH值和kcat/Km不同。Zn²⁺离子、巯基试剂和氨肽酶抑制剂,尤其是丙磺舒,对大鼠DPP III的抑制作用更强。这两种酶对血管紧张素III的亲和力最高(Ki < 1 μM),并且在P1'位点偏好疏水性残基。然而,几种肽段结合常数的显著差异表明人类和大鼠红细胞DPP III活性位点拓扑结构不同。