Basak Ajoy, Lotfipour Farzaneh
Diseases of Aging Program, Regional Protein Chemistry Center, Ottawa Health Research Institute, University of Ottawa, Loeb Building, 725 Parkdale Ave, Ottawa, ON, K1Y 4E9, Canada.
FEBS Lett. 2005 Aug 29;579(21):4813-21. doi: 10.1016/j.febslet.2005.07.062.
A peptide was designed from reactive site loop structure of alpha1 Antitrypsin Portland known as alpha1 PDX as a novel mini-PDX inhibitor of furin. The sequence was derived from (367-394) that contains the crucial furin cleavage motif RIPR382. A P3 mutant replacing Ile380 by Leu was prepared as a first model peptide. A Cys residue was inserted at each terminal of the peptide for purpose of cyclisation which was accomplished by air or iodine-induced oxidation. This mini-PDX peptide both cyclic and acyclic form inhibited in vitro furin activity (IC50 in nM) when measured against either substrates Boc-RVRRdown double arrow MCA or QVEGF-C [Abz-QVHSIIRRdown double arrow SLP-Y(NO2)-A-CONH2, Abz=2-amino benzoic acid and Y(NO2)=3-nitro tyrosine], latter being derived from vascular endothelial growth factor-C (VEGF-C) processing site. The geometrically constrained structure mimicking PDX reactive loop is crucial for enzyme inhibition. Our study further revealed that both mini-PDX peptides inactivate furin in a slow tight binding manner, with disulfide-bridged cyclic form being slightly more potent. Unlike PDX, these peptides inhibit furin via a different mechanistic pathway. The study provides an alternate strategy for development of efficient peptide-based inhibitors of Proprotein Convertases including furin.
一种肽是根据α1抗胰蛋白酶波特兰的反应位点环结构设计的,称为α1 PDX,作为一种新型的弗林蛋白酶小型PDX抑制剂。该序列源自(367 - 394),其中包含关键的弗林蛋白酶切割基序RIPR382。制备了将Ile380替换为Leu的P3突变体作为第一个模型肽。为了环化,在肽的每个末端插入一个半胱氨酸残基,这通过空气或碘诱导的氧化来完成。当针对底物Boc - RVRR↓MCA或QVEGF - C [Abz - QVHSIIRR↓SLP - Y(NO2)-A - CONH2,Abz = 2 - 氨基苯甲酸,Y(NO2)= 3 - 硝基酪氨酸]进行测量时,这种小型PDX肽的环状和非环状形式均抑制体外弗林蛋白酶活性(IC50以纳摩尔计),后者源自血管内皮生长因子 - C(VEGF - C)加工位点。模拟PDX反应环的几何受限结构对于酶抑制至关重要。我们的研究进一步表明,两种小型PDX肽均以缓慢紧密结合的方式使弗林蛋白酶失活,二硫键桥连的环状形式稍强一些。与PDX不同,这些肽通过不同的机制途径抑制弗林蛋白酶。该研究为开发包括弗林蛋白酶在内的前蛋白转化酶的高效肽基抑制剂提供了一种替代策略。