Nour Nadia, Basak Ajoy, Chrétien Michel, Seidah Nabil G
Laboratories of Biochemical Neuroendocrinology, Clinical Research Institute of Montreal, Montreal, Quebec H2W 1R7, Canada.
J Biol Chem. 2003 Jan 31;278(5):2886-95. doi: 10.1074/jbc.M208009200. Epub 2002 Oct 31.
To investigate if some residues within the prosegment of PC5A are important for its optimal proteolytic function, various PC5A mutants were cellularly expressed, and their processing activities were compared using pro-vascular endothelial growth factor C (pro-VEGF-C) as a substrate. Although wild type PC5A almost completely processes pro-VEGF-C, a prosegment deletion as well as both P1 mutants of the primary (R116A) and secondary (R84A) autocatalytic cleavage sites are inactive. The in vitro inhibitory potency of various decapeptides mimicking the C-terminal sequence of PC5 prosegment (pPC5) revealed that the native (107)QQVVKKRTKR(116) peptide is a nanomolar inhibitor, whereas its P6 mutant K111H is more selective toward PC5A than Furin. In vitro activity assays using the bacterially expressed pPC5 and its mutants revealed them to be very potent nanomolar inhibitors (IC(50)) and only approximately 6-fold more selective inhibitors of PC5A versus Furin. Expression of the preprosegment of PC5 (ppPC5) and its mutants in Chinese hamster ovary FD11 cells overexpressing pro-VEGF-C with either PC5A or Furin showed them to be as good inhibitors of PC5A as the serpin alpha1-antitrypsin Portland (alpha1-PDX), ppFurin, or ppPACE4 but less potent toward overexpressed Furin. In conclusion, cleavages of the prosegment of PC5A at both Arg(116) and Arg(84) are required for PC5A cellular activity, and ppPC5 is a very potent but modestly selective cellular inhibitor of PC5A.
为了研究PC5A前肽中的某些残基对其最佳蛋白水解功能是否重要,我们在细胞中表达了各种PC5A突变体,并以血管内皮生长因子C前体(pro-VEGF-C)为底物比较了它们的加工活性。尽管野生型PC5A几乎能完全加工pro-VEGF-C,但前肽缺失以及一级(R116A)和二级(R84A)自催化切割位点的P1突变体均无活性。各种模拟PC5前肽(pPC5)C端序列的十肽的体外抑制效力表明,天然(107)QQVVKKRTKR(116)肽是一种纳摩尔抑制剂,而其P6突变体K111H对PC5A的选择性高于弗林蛋白酶。使用细菌表达的pPC5及其突变体进行的体外活性测定表明,它们是非常有效的纳摩尔抑制剂(IC50),对PC5A的选择性仅比对弗林蛋白酶高约6倍。在中国仓鼠卵巢FD11细胞中,将PC5前体(ppPC5)及其突变体与PC5A或弗林蛋白酶一起过表达pro-VEGF-C,结果表明它们作为PC5A的抑制剂与丝氨酸蛋白酶抑制剂α1-抗胰蛋白酶波特兰(α1-PDX)、pp弗林蛋白酶或ppPACE4一样有效,但对过表达的弗林蛋白酶的抑制效力较低。总之,PC5A细胞活性需要在精氨酸(116)和精氨酸(84)处切割PC5A的前肽,并且ppPC5是一种非常有效的但选择性适度的PC5A细胞抑制剂。