A Porphyromonas gingivalis Periplasmic Novel Exopeptidase, Acylpeptidyl Oligopeptidase, Releases N-Acylated Di- and Tripeptides from Oligopeptides.

ComTech Pub Date : 2016-03-11 Epub Date: 2016-01-05 DOI:10.1074/jbc.M115.687566
Takayuki K Nemoto, Yuko Ohara-Nemoto, Gustavo Arruda Bezerra, Yu Shimoyama, Shigenobu Kimura
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Abstract

Exopeptidases, including dipeptidyl- and tripeptidylpeptidase, are crucial for the growth of Porphyromonas gingivalis, a periodontopathic asaccharolytic bacterium that incorporates amino acids mainly as di- and tripeptides. In this study, we identified a novel exopeptidase, designated acylpeptidyl oligopeptidase (AOP), composed of 759 amino acid residues with active Ser(615) and encoded by PGN_1349 in P. gingivalis ATCC 33277. AOP is currently listed as an unassigned S9 family peptidase or prolyl oligopeptidase. Recombinant AOP did not hydrolyze a Pro-Xaa bond. In addition, although sequence similarities to human and archaea-type acylaminoacyl peptidase sequences were observed, its enzymatic properties were apparently distinct from those, because AOP scarcely released an N-acyl-amino acid as compared with di- and tripeptides, especially with N-terminal modification. The kcat/Km value against benzyloxycarbonyl-Val-Lys-Met-4-methycoumaryl-7-amide, the most potent substrate, was 123.3 ± 17.3 μm(-1) s(-1), optimal pH was 7-8.5, and the activity was decreased with increased NaCl concentrations. AOP existed predominantly in the periplasmic fraction as a monomer, whereas equilibrium between monomers and oligomers was observed with a recombinant molecule, suggesting a tendency of oligomerization mediated by the N-terminal region (Met(16)-Glu(101)). Three-dimensional modeling revealed the three domain structures (residues Met(16)-Ala(126), which has no similar homologue with known structure; residues Leu(127)-Met(495) (β-propeller domain); and residues Ala(496)-Phe(736) (α/β-hydrolase domain)) and further indicated the hydrophobic S1 site of AOP in accord with its hydrophobic P1 preference. AOP orthologues are widely distributed in bacteria, archaea, and eukaryotes, suggesting its importance for processing of nutritional and/or bioactive oligopeptides.

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一种牙龈卟啉单胞菌外膜新型外肽酶--酰肽基寡肽酶能从寡肽中释放出 N-酰基二肽和三肽。
包括二肽和三肽在内的外肽酶对牙龈卟啉单胞菌的生长至关重要,牙龈卟啉单胞菌是一种牙周病溶糖菌,主要以二肽和三肽的形式结合氨基酸。在这项研究中,我们在牙龈卟啉菌 ATCC 33277 中发现了一种新型外肽酶,命名为酰肽寡肽酶(AOP),由 759 个氨基酸残基组成,具有活性 Ser(615),由 PGN_1349 编码。AOP 目前被列为一种未指定的 S9 家族肽酶或脯氨酰寡肽酶。重组 AOP 不能水解 Pro-Xaa 键。此外,虽然观察到 AOP 与人类和古细菌型酰基氨基肽酶序列相似,但其酶学特性显然与这些序列不同,因为与二肽和三肽(尤其是 N 端修饰)相比,AOP 几乎不释放 N-酰基氨基酸。对最有效底物苄氧羰基-Val-Lys-Met-4-甲基迷迭香酰-7-酰胺的 kcat/Km 值为 123.3 ± 17.3 μm(-1) s(-1),最适 pH 值为 7-8.5,活性随 NaCl 浓度的增加而降低。AOP 主要以单体形式存在于外质部分,而重组分子则观察到单体和寡聚体之间的平衡,这表明 N 端区域(Met(16)-Glu(101))介导了寡聚化趋势。三维建模揭示了三个结构域(残基 Met(16)-Ala(126),已知结构中没有类似的同源物;残基 Leu(127)-Met(495)(β-推进器结构域);残基 Ala(496)-Phe(736)(α/β-水解酶结构域)),并进一步表明了 AOP 的疏水 S1 位点与其疏水 P1 偏好一致。AOP 的直向同源物广泛分布于细菌、古生菌和真核生物中,这表明它对营养和/或生物活性寡肽的加工具有重要意义。
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