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首页> 外文期刊>Journal of Molecular Biology >Active and exo-site inhibition of human factor Xa: Structure of des-Gla factor Xa inhibited by NAP5, a potent nematode anticoagulant protein from Ancylostoma caninum
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Active and exo-site inhibition of human factor Xa: Structure of des-Gla factor Xa inhibited by NAP5, a potent nematode anticoagulant protein from Ancylostoma caninum

机译:对人因子Xa的主动和异位抑制:des-Gla因子Xa的结构被NAP5抑制,NAP5是一种来自犬齿成虫的有效线虫抗凝血蛋白

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Hookworms are hematophagous nematodes capable of growth, development and subsistence in living host systems such as humans and other mammals. Approximately one billion, or one in six, people worldwide are infected by hookworms causing gastrointestinal blood loss and iron deficiency anemia. The hematophagous hookworm Ancylostoma caninum produces a family of small, disulfide-linked protein anticoagulants (75-84 amino acid residues). One of these nematode anticoagulant proteins, NAP5, inhibits the amidolytic activity of factor Xa (fXa) with K-i = 43 pM, and is the most potent natural fXa inhibitor identified thus far. The crystal structure of NAP5 bound at the active site of gamma-carboxyglutamic acid domainless factor Xa (des-fXa) has been determined at 3.1 angstrom resolution, which indicates that Asp189 (fXa, S1 subsite) binds to Arg40 (NAP5, P1 site) in a mode similar to that of the BPTI/trypsin interaction. However, the hydroxyl group of Ser39 of NAP5 additionally forms a hydrogen bond (2.5 angstrom) with His57 NE2 of the catalytic triad, replacing the hydrogen bond of Ser195 OG to the latter in the native structure, resulting in an interaction that has not been observed before. Furthermore, the C-terminal extension of NAP5 surprisingly interacts with the fXa exosite of a symmetry-equivalent molecule forming a short intermolecular beta-strand as observed in the structure of the NAPc2/fXa complex. This indicates that NAP5 can bind to fXa at the active site, or the exosite, and to fX at the exosite. However, unlike NAPc2, NAP5 does not inhibit fVIIa of the fVIIa/TF complex. (c) 2007 Elsevier Ltd. All rights reserved.
机译:钩虫是能够在人类和其他哺乳动物等活宿主系统中生长,发育和生存的食血线虫。全世界约有十亿或六分之一的人被钩虫感染,引起胃肠道失血和缺铁性贫血。食血性钩虫Ancylostoma caninum产生一族小的二硫键连接的蛋白质抗凝剂(75-84个氨基酸残基)。这些线虫抗凝血蛋白之一NAP5以K-i = 43 pM抑制Xa因子(fXa)的酰胺分解活性,并且是迄今为止确定的最有效的天然fXa抑制剂。已在3.1埃分辨率下确定了结合在γ-羧基谷氨酸无域因子Xa(des-fXa)的活性位点上的NAP5的晶体结构,这表明Asp189(fXa,S1亚位点)与Arg40(NAP5,P1位点)结合。以类似于BPTI /胰蛋白酶相互作用的模式。但是,NAP5的Ser39的羟基另外与催化三联体的His57 NE2形成氢键(2.5埃),取代了天然结构中Ser195 OG与后者的氢键,导致未观察到相互作用之前。此外,如在NAPc2 / fXa复合物的结构中观察到的,NAP5的C端延伸令人惊讶地与对称当量分子的fXa外位相互作用,形成了短的分子间β链。这表明NAP5可以在活性位点或外位点与fXa结合,并在外位点与fX结合。但是,与NAPc2不同,NAP5不会抑制fVIIa / TF复合物的fVIIa。 (c)2007 Elsevier Ltd.保留所有权利。

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