Service de Dermatologie, Laboratoire de Mycologie, BT422, Centre Hospitalier Universitaire Vaudois, Lausanne, Switzerland.
Laboratoire des Catecholamines et Peptides, Service de Biomédecine, Centre Hospitalier Universitaire Vaudois, Lausanne, Switzerland.
Appl Microbiol Biotechnol. 2017 May;101(10):4129-4137. doi: 10.1007/s00253-017-8186-8. Epub 2017 Feb 22.
Prolyl peptidases of the MEROPS S28 family are of particular interest because they are key enzymes in the digestion of proline-rich peptides. A BLAST analysis of the Aspergillus oryzae genome revealed sequences coding for four proteases of the S28 family. Three of these proteases, AoS28A, AoS28B, and AoS28C, were previously characterized as acidic prolyl endopeptidases. The fourth protease, AoS28D, showed high sequence divergence with other S28 proteases and belongs to a phylogenetically distinct cluster together with orthologous proteases from other Aspergillus species. The objective of the present paper was to characterize AoS28D protease in terms of substrate specificity and activity. AoS28D produced by gene overexpression in A. oryzae and in Pichia pastoris was a 70-kDa glycoprotein with a 10-kDa sugar moiety. In contrast with other S28 proteases, AoS28D did not hydrolyze internal Pro-Xaa bonds of several tested peptides. Similarly, to human lysosomal Pro-Xaa carboxypeptidase, AoS28D demonstrated selectivity for cleaving C-terminal Pro-Xaa bonds which are resistant to carboxypeptidases of the S10 family concomitantly secreted by A. oryzae. Therefore, AoS28D could act in synergy with these enzymes during sequential degradation of a peptide from its C-terminus.
MEROPS S28 家族的脯氨酰肽酶特别有趣,因为它们是富含脯氨酸的肽消化的关键酶。对米曲霉基因组的 BLAST 分析揭示了编码 S28 家族四个蛋白酶的序列。这三种蛋白酶,AoS28A、AoS28B 和 AoS28C,先前被表征为酸性脯氨酰内肽酶。第四种蛋白酶 AoS28D 与其他 S28 蛋白酶具有高度的序列差异,与其他曲霉属物种的同源蛋白酶一起属于一个系统发育上不同的聚类。本文的目的是从底物特异性和活性方面对 AoS28D 蛋白酶进行表征。通过在米曲霉和巴斯德毕赤酵母中基因过表达产生的 AoS28D 是一种 70kDa 的糖蛋白,带有 10kDa 的糖基。与其他 S28 蛋白酶不同,AoS28D 不能水解几种测试肽的内部 Pro-Xaa 键。与人类溶酶体 Pro-Xaa 羧肽酶一样,AoS28D 对 C 末端 Pro-Xaa 键的切割具有选择性,这些键对米曲霉同时分泌的 S10 家族羧肽酶具有抗性。因此,AoS28D 可以在从肽的 C 末端进行顺序降解过程中与这些酶协同作用。