Campos I T N, Souza T A C B, Torquato R J S, De Marco R, Tanaka-Azevedo A M, Tanaka A S, Barbosa J A R G
Departamento de Bioquímica, Escola Paulista de Medicina, Universidade Federal de São Paulo, Rua Três de Maio 100, 04044-020 São Paulo-SP, Brazil.
Acta Crystallogr D Biol Crystallogr. 2012 Jun;68(Pt 6):695-702. doi: 10.1107/S0907444912009067. Epub 2012 May 17.
Blood coagulation is an important process in haemostasis, and disorders of blood coagulation can lead to an increased risk of haemorrhage and thrombosis. Coagulation is highly conserved in mammals and has been comprehensively studied in humans in the investigation of bleeding or thrombotic diseases. Some substances can act as inhibitors of blood coagulation and may affect one or multiple enzymes throughout the process. A specific thrombin inhibitor called infestin has been isolated from the midgut of the haematophagous insect Triatoma infestans. Infestin is a member of the nonclassical Kazal-type serine protease inhibitors and is composed of four domains, all of which have a short central α-helix and a small antiparallel β-sheet. Domains 1 and 4 of infestin (infestins 1 and 4) possess specific inhibitory activities. Infestin 1 inhibits thrombin, while infestin 4 is an inhibitor of factor XIIa, plasmin and factor Xa. Here, the structure determination and structural analysis of infestin 1 complexed with trypsin and of infestin 4 alone are reported. Through molecular modelling and docking, it is suggested that the protein-protein binding site is conserved in the infestin 1-thrombin complex compared with other Kazal-type inhibitors. Infestin 4 is able to bind factor XIIa, and the F9N and N11R mutants selected by phage display were shown to be more selective for factor XIIa in comparison to the wild type.
血液凝固是止血过程中的一个重要过程,血液凝固紊乱会导致出血和血栓形成的风险增加。凝血在哺乳动物中高度保守,并且在人类出血或血栓性疾病的研究中已得到全面研究。一些物质可以作为血液凝固的抑制剂,并且在整个过程中可能影响一种或多种酶。一种名为侵扰素的特异性凝血酶抑制剂已从吸血昆虫侵扰锥蝽的中肠中分离出来。侵扰素是非经典卡扎尔型丝氨酸蛋白酶抑制剂的成员,由四个结构域组成,所有结构域都有一个短的中央α螺旋和一个小的反平行β折叠。侵扰素的结构域1和4(侵扰素1和4)具有特异性抑制活性。侵扰素1抑制凝血酶,而侵扰素4是因子XIIa、纤溶酶和因子Xa的抑制剂。在此,报道了与胰蛋白酶复合的侵扰素1以及单独的侵扰素4的结构测定和结构分析。通过分子建模和对接表明,与其他卡扎尔型抑制剂相比,侵扰素1 - 凝血酶复合物中的蛋白质 - 蛋白质结合位点是保守的。侵扰素4能够结合因子XIIa,并且通过噬菌体展示选择的F9N和N11R突变体与野生型相比对因子XIIa具有更高的选择性。