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Proteomic and toxinological characterization of the venom of the South African Ringhals cobra Hemachatus haemachatus

机译:南非林偕汉石斑鱼Haemachatus毒液的蛋白质组学和营养表征

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The protein composition and toxinological profile of the venom of the African spitting elapid Hemachatus haemachatus (Ringhals) were characterized by bottom-up proteomics and functional in vitro and in vivo assays. Venom is composed of abundant three-finger toxins (3FTxs; 63.3%), followed by phospholipases A(2) (PLA(2)s; 22.8%), snake venom metalloproteinases (SVMPs; 7.1%), cysteine-rich secretory proteins (CRISPs; 4.1%) and Kunitz type protease inhibitors (KTPIs; 1.5%). 3FTxs are the main responsible for lethality and myotoxicity in mice and in vitro anticoagulant activity. In contrast to closely related spitting species, whose venom 3FTxs induces dermonecrosis, the 3FTxs of H. haemachatus did not induce dermonecrotic activity. The venom showed in vitro PLA 2 activity, and most likely PLA(2)s contribute to some extent in venom lethality, as judged by partial reduction in toxicity after inhibition of their catalytic activity. Despite its relatively high content of SVMPs, compared to most elapids, the venom of H. haemachatus did not exert hemorrhagic effect, proteolytic activity on azocasein or defibrinogenating activity. Toxicovenomic characterization of H. haemachatus venom revealed that RP-HPLC fractions with higher abundance of 3FTxs presented lethal activity, while fractions with high content of PLA(2)s did not, underscoring the role of 3FTxs in the pathophysiology caused by this venom.
机译:非洲吐痰Elapid Hemachatus Haemachatus(Ringhals)的毒液的蛋白质组成和毒性分布在体外和体内测定中的自下而上的蛋白质组学和功能性。毒液由丰富的三指毒素(3ftxs; 63.3%)组成,其次是磷脂酶A(2)(PLA(2)S; 22.8%),蛇毒液金属蛋白酶(SVMPS; 7.1%),富含半胱氨酸的分泌蛋白(薯片; 4.1%)和Kunitz型蛋白酶抑制剂(KTPI; 1.5%)。 3FFXS是对小鼠和体外抗凝血活性的杀菌和肌毒性的主要负责。相反,与密切相关的吐痰物种,其毒液3ftxs诱导皮切症,H. haemachatus的3ftxs没有诱导DermoNecric活动。毒液在体外PLA 2活性,并且最可能PLA(2)S在一定程度上有助于毒液致死,通过抑制其催化活性后的毒性部分降低判断。尽管其含量相对较高,但与大多数Elapids相比,HAemachatus的毒液并未施加出血效应,蛋白酶蛋白酶蛋白酶或除颤活性的蛋白水解活性。 Haemachatus毒液的毒物表征揭示了具有较高丰度的3FRXS的RP-HPLC级分呈现致命活性,而PLA(2)S含量高的级分没有,强调3FFXS在该毒液引起的病理生理学中的作用。

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