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Isolation Cloning and Structural Characterisation of Boophilin a Multifunctional Kunitz-Type Proteinase Inhibitor from the Cattle Tick

机译:牛ick的多功能Kunitz型蛋白酶抑制剂Boophilin的分离克隆和结构表征

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摘要

Inhibitors of coagulation factors from blood-feeding animals display a wide variety of structural motifs and inhibition mechanisms. We have isolated a novel inhibitor from the cattle tick Boophilus microplus, one of the most widespread parasites of farm animals. The inhibitor, which we have termed boophilin, has been cloned and overexpressed in Escherichia coli. Mature boophilin is composed of two canonical Kunitz-type domains, and inhibits not only the major procoagulant enzyme, thrombin, but in addition, and by contrast to all other previously characterised natural thrombin inhibitors, significantly interferes with the proteolytic activity of other serine proteinases such as trypsin and plasmin. The crystal structure of the bovine α-thrombin·boophilin complex, refined at 2.35 Å resolution reveals a non-canonical binding mode to the proteinase. The N-terminal region of the mature inhibitor, Q16-R17-N18, binds in a parallel manner across the active site of the proteinase, with the guanidinium group of R17 anchored in the S1 pocket, while the C-terminal Kunitz domain is negatively charged and docks into the basic exosite I of thrombin. This binding mode resembles the previously characterised thrombin inhibitor, ornithodorin which, unlike boophilin, is composed of two distorted Kunitz modules. Unexpectedly, both boophilin domains adopt markedly different orientations when compared to those of ornithodorin, in its complex with thrombin. The N-terminal boophilin domain rotates 9° and is displaced by 6 Å, while the C-terminal domain rotates almost 6° accompanied by a 3 Å displacement. The reactive-site loop of the N-terminal Kunitz domain of boophilin with its P1 residue, K31, is fully solvent exposed and could thus bind a second trypsin-like proteinase without sterical restraints. This finding explains the formation of a ternary thrombin·boophilin·trypsin complex, and suggests a mechanism for prothrombinase inhibition in vivo.
机译:采血动物的凝血因子抑制剂具有多种结构基序和抑制机制。我们从牛tick Boophilus microplus(一种农场动物中最广泛的寄生虫)中分离了一种新型抑制剂。该抑制剂我们称为Boophilin,已在大肠杆菌中克隆并过表达。成熟的Boophilin由两个典型的Kunitz型结构域组成,不仅抑制主要的促凝血酶凝血酶,而且与以前所有其他天然凝血酶抑制剂形成鲜明对比的是,它们显着干扰其他丝氨酸蛋白酶的蛋白水解活性。作为胰蛋白酶和纤溶酶。以2.35Å的分辨率精制的牛α-凝血酶·亲核蛋白复合物的晶体结构揭示了与蛋白酶的非经典结合模式。成熟的抑制剂Q16-R17-N18的N端区域以平行方式结合穿过蛋白酶的活性位点,R17的胍基锚定在S1口袋中,而C端Kunitz结构域为负充电并停泊在凝血酶的基本异位点I中。这种结合模式类似于先前表征的凝血酶抑制剂鸟氨酸,与嗜碱性粒细胞蛋白不同,其由两个扭曲的Kunitz模块组成。出乎意料的是,与鸟氨酸蛋白相比,在与凝血酶的复合物中,两个亲鸟蛋白结构域都采用明显不同的方向。 N末端的Boophilin结构域旋转9°,位移6Å,而C末端的结构域旋转3°,位移近6°。 Boophilin的N末端Kunitz结构域的反应位点环及其P1残基K31完全暴露在溶剂中,因此可以结合第二种胰蛋白酶样蛋白酶而不受空间限制。这一发现解释了三元凝血酶·嗜碱性粒细胞·胰蛋白酶复合物的形成,并提出了在体内抑制凝血酶原酶的机制。

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