Kellenberger C, Ferrat G, Leone P, Darbon H, Roussel A
Centre d'Immunologie de Marseille-Luminy, UMR 145, Parc Scientifique et Technologique de Luminy, Case 906, 13009 Marseille, France.
Biochemistry. 2003 Nov 25;42(46):13605-12. doi: 10.1021/bi035318t.
PMP-D2 and HI, two peptides from Locusta migratoria, were shown to belong to the family of tight-binding protease inhibitors. However, they interact weakly with bovine trypsin (K(i) around 100 nM) despite a trypsin-specific Arg at the primary specificity site P1. Here we demonstrate that they are potent inhibitors of midgut trypsins isolated from the same insect and of a fungal trypsin from Fusarium oxysporum (K(i) <or= 0.02 nM). Therefore, they display a selectivity not existing for the parent chymotrypsin inhibitor PMP-C. By NMR, we demonstrate that HI possesses a highly rigid structure similar to the crystal structure of a variant of PMP-D2 in complex with bovine alpha-chymotrypsin. The main difference with PMP-C is located in the region from residues 20 to 24 (positions P6-P10) that interacts with the loop containing Gly173 in chymotrypsin. The corresponding residue in mammalian trypsins is always a proline that may generate a steric clash with the inhibitor. The residues thought to confer selectivity were mutated with PMP-C as a model. The resulting analogue PMP-D2(K10W,P21A,W25A) loses some activity toward insect and fungal trypsins but is a more potent inhibitor of mammalian trypsins, corresponding to a decrease of selectivity. This work represents a first attempt in tuning the selectivity of natural peptidic serine protease inhibitors by mutating residues out of the reactive loop (P3-P'3).
来自飞蝗的两种肽PMP-D2和HI被证明属于紧密结合蛋白酶抑制剂家族。然而,尽管在主要特异性位点P1处有一个胰蛋白酶特异性的精氨酸,但它们与牛胰蛋白酶的相互作用较弱(抑制常数Ki约为100 nM)。在此,我们证明它们是从同一昆虫中分离出的中肠胰蛋白酶以及尖孢镰刀菌的真菌胰蛋白酶的强效抑制剂(抑制常数Ki≤0.02 nM)。因此,它们表现出母体糜蛋白酶抑制剂PMP-C所没有的选择性。通过核磁共振,我们证明HI具有与PMP-D2变体与牛α-糜蛋白酶复合物的晶体结构相似的高度刚性结构。与PMP-C的主要区别位于与糜蛋白酶中含Gly173的环相互作用的20至24位残基区域(P6 - P10位点)。哺乳动物胰蛋白酶中的相应残基总是脯氨酸,这可能与抑制剂产生空间冲突。以PMP-C为模型,对被认为赋予选择性的残基进行了突变。所得类似物PMP-D2(K10W,P21A,W25A)对昆虫和真菌胰蛋白酶的活性有所降低,但对哺乳动物胰蛋白酶是更有效的抑制剂,这对应于选择性的降低。这项工作代表了通过突变反应环(P3 - P'3)之外的残基来调节天然肽类丝氨酸蛋白酶抑制剂选择性的首次尝试。