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P-III hemorrhagic metalloproteinases from Russell's viper venom: Cloning, characterization, phylogenetic and functional site analyses

机译:罗素毒蛇毒中的P-III出血性金属蛋白酶:克隆,表征,系统发生和功能位点分析

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Two homologous P-III hemorrhagic metalloproteinases were purified from Russell's viper venoms from Myanmar and Kolkata (eastern India), and designated as daborhagin-M and daborhagin-K, respectively. They induced severe dermal hemorrhage in mice at a minimum hemorrhagic dose of 0.8-0.9 μg. Daborhagin-M specifically hydrolyzed an Aα-chain of fibrinogen, fibronectin, and type IV collagen in vitro. Analyses of its cleavage sites on insulin chain B and kinetic specificities toward oligopeptides suggested that daborhagin-M prefers hydrophobic residues at the P_1, P_1~', and P_2~' positions on the substrates. Of the eight Daboia geographic venom samples analyzed by Western blotting, only those from Myanmar and eastern India showed a strong positive band at 65 kDa, which correlated with the high risk of systemic hemorrhagic symptoms elicited by Daboia envenoming in both regions. The full sequence of daborhagin-K was determined by cDNA cloning and sequencing, and then confirmed by peptide mass fingerprinting. Furthermore, molecular phylogenetic analyses based on 27 P-IIIs revealed the co-evolution of two major P-III classes with distinct hemorrhagic potencies, and daborhagin-K belongs to the most hemorrhagic subclass. By comparing the absolute complexity profiles between these two classes, we identified four structural motifs probably responsible for the phylogenetic subtyping and hemorrhagic potencies of P-III SVMPs.
机译:从缅甸和加尔各答(印度东部)的罗素毒蛇毒液中纯化了两种同源的P-III出血性金属蛋白酶,分别命名为daborhagin-M和daborhagin-K。他们在最小出血剂量为0.8-0.9μg的小鼠中引起严重的皮肤出血。 Daborhagin-M在体外特异性水解了纤维蛋白原,纤连蛋白和IV型胶原蛋白的Aα链。分析其在胰岛素链B上的切割位点以及对寡肽的动力学特异性,表明daborhagin-M更喜欢在底物上P_1,P_1〜'和P_2〜'位置的疏水残基。在Western印迹分析的8个Daboia地理毒液样本中,只有来自缅甸和印度东部的样本显示65 kDa的强阳性带,这与Daboia毒化在两个地区引起的系统性出血症状的高风险相关。 daborhagin-K的完整序列通过cDNA克隆和测序确定,然后通过肽质量指纹图谱确认。此外,基于27种P-III的分子系统发育分析表明,两种主要的P-III类具有明显的出血潜能共同进化,而daborhagin-K属于出血性最强的亚类。通过比较这两个类别之间的绝对复杂性概况,我们确定了可能与P-III SVMP的系统发育亚型和出血潜能有关的四个结构基序。

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