Muniz João R C, Ambrosio Andre L B, Selistre-de-Araujo Heloisa S, Cominetti Márcia R, Moura-da-Silva Ana M, Oliva Glaucius, Garratt Richard C, Souza Dulce H F
Departamento de Física e Informática, Instituto de Física de São Carlos, USP, São Carlos-SP CEP 13560-970, Brazil.
Toxicon. 2008 Dec 1;52(7):807-16. doi: 10.1016/j.toxicon.2008.08.021. Epub 2008 Sep 27.
Bothropasin is a 48kDa hemorrhagic PIII snake venom metalloprotease (SVMP) isolated from Bothrops jararaca, containing disintegrin/cysteine-rich adhesive domains. Here we present the crystal structure of bothropasin complexed with the inhibitor POL647. The catalytic domain consists of a scaffold of two subdomains organized similarly to those described for other SVMPs, including the zinc and calcium-binding sites. The free cysteine residue Cys189 is located within a hydrophobic core and it is not available for disulfide bonding or other interactions. There is no identifiable secondary structure for the disintegrin domain, but instead it is composed mostly of loops stabilized by seven disulfide bonds and by two calcium ions. The ECD region is in a loop and is structurally related to the RGD region of RGD disintegrins, which are derived from PII SVMPs. The ECD motif is stabilized by the Cys277-Cys310 disulfide bond (between the disintegrin and cysteine-rich domains) and by one calcium ion. The side chain of Glu276 of the ECD motif is exposed to solvent and free to make interactions. In bothropasin, the HVR (hyper-variable region) described for other PIII SVMPs in the cysteine-rich domain, presents a well-conserved sequence with respect to several other PIII members from different species. We propose that this subset be referred to as PIII-HCR (highly conserved region) SVMPs. The differences in the disintegrin-like, cysteine-rich or disintegrin-like cysteine-rich domains may be involved in selecting target binding, which in turn could generate substrate diversity or specificity for the catalytic domain.
波洛帕辛是一种从巴西矛头蝮蛇毒液中分离出的48kDa出血性PIII型蛇毒金属蛋白酶(SVMP),包含去整合素/富含半胱氨酸的黏附结构域。在此,我们展示了波洛帕辛与抑制剂POL647复合后的晶体结构。催化结构域由两个亚结构域组成的支架构成,其组织方式与其他SVMPs类似,包括锌离子和钙离子结合位点。游离半胱氨酸残基Cys189位于疏水核心内,无法用于形成二硫键或其他相互作用。去整合素结构域没有可识别的二级结构,而是主要由七个二硫键和两个钙离子稳定的环组成。ECD区域呈环状,在结构上与源自PII型SVMPs的RGD去整合素的RGD区域相关。ECD基序由Cys277 - Cys310二硫键(在去整合素和富含半胱氨酸的结构域之间)和一个钙离子稳定。ECD基序中Glu276的侧链暴露于溶剂中,可自由进行相互作用。在波洛帕辛中,富含半胱氨酸结构域中其他PIII型SVMPs所描述的高变区(HVR),相对于来自不同物种的其他几个PIII成员呈现出高度保守的序列。我们建议将这个子集称为PIII - HCR(高度保守区域)SVMPs。去整合素样、富含半胱氨酸或去整合素样富含半胱氨酸结构域的差异可能参与选择靶标结合,这反过来可能产生催化结构域的底物多样性或特异性。