首页> 外文期刊>Toxicon: An International Journal Devoted to the Exchange of Knowledge on the Poisons Derived from Animals, Plants and Microorganisms >Identification of the myotoxic site of the Lys49 phospholipase A(2) from Agkistrodon piscivorus piscivorus snake venom: synthetic C-terminal peptides from Lys49, but not from Asp49 myotoxins, exert membrane-damaging activities
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Identification of the myotoxic site of the Lys49 phospholipase A(2) from Agkistrodon piscivorus piscivorus snake venom: synthetic C-terminal peptides from Lys49, but not from Asp49 myotoxins, exert membrane-damaging activities

机译:蛇食蛇毒中Lys49磷脂酶A(2)的肌毒性部位的鉴定:Lys49的合成C端肽,而不是Asp49肌毒素的C末端,会破坏膜。

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摘要

Group II phospholipase A, (PLA,) myotoxins found in the venoms of Crotalidae snakes can be divided into 'Asp49' and 'Lys49' isoforms, the latter being considered catalytically-inactive variants. Previous studies on one Lys49 isoform, myotoxin II from Bothrops asper, indicated that its myotoxic activity is due to the presence of a short cationic/hydrophobic sequence (115-129) near its C-terminus, which displays membrane-damaging properties. Since the C-terminal region of different group II PLA(2) myotoxins presents considerable sequence variability, synthetic peptides homologous to region 115-129 of myotoxin II, but corresponding to B. asper myotoxin III (Asp49), Agkistrodon piscivorus piscivorus Asp49 PLA, and Lys49 PLA2, were studied to determine the possible functional relevance of such region for the toxic activities of these proteins. Results showed that both Lys49-derived peptides (p-BaK49 and p-AppK49) were able to lyse skeletal muscle C2Cl2 cells in culture, and to induce edema in the mouse footpad assay. Moreover, p-AppK49, which showed a markedly stronger cytotoxic potency than p-BaK49, additionally induced skeletal muscle necrosis when injected into mice. These observations unequivocally identify the sequence 115-129 (KKYKAYFKLKCKK) of the Lys49 PLA(2) of A. p. piscivorus as containing the key structural determinants needed for myotoxicity, and represent the first report of an unmodified, PLA(2)-derived short synthetic peptide with the ability to reproduce this effect of a parent toxin in vivo. On the other hand, the two Asp49-derived peptides did not show any toxic effects in vitro or in vivo, even at high concentrations. These findings suggests that Lys49 and Asp49 group II PLA(2)s might exert their myotoxic actions through different molecular mechanisms, by implying that the latter may not utilize their C-terminal regions as main membrane-destabilizing elements.
机译:在唇形科蛇毒中发现的II类磷脂酶A(PLA)肌毒素可以分为“ Asp49”和“ Lys49”同工型,后者被认为是无催化活性的变体。先前对一种来自Lys49的Lys49亚型的肌毒素II的研究表明,其肌毒性活性是由于在其C端附近存在短的阳离子/疏水序列(115-129)所致,该序列具有破坏膜的特性。由于不同的II组PLA(2)肌毒素的C端区域呈现出相当大的序列变异性,因此与肌毒素II的115-129区同源但与B. asper myotoxin III(Asp49),Agkistrodon piscivorus piscivorus Asp49 PLA对应的合成肽,研究了Lys49 PLA2和Lys49 PLA2的功能,以确定这些蛋白的毒性活性与该区域可能的功能相关性。结果表明,Lys49衍生的两种肽(p-BaK49和p-AppK49)都能够裂解培养物中的骨骼肌C2Cl2细胞,并在小鼠足垫测定中诱导水肿。此外,p-AppK49具有比p-BaK49明显更强的细胞毒性,当注射到小鼠体内时,它还会引起骨骼肌坏死。这些观察明确地确定了A.p.的Lys49 PLA(2)的序列115-129(KKYKAYFKLKCKK)。食草动物含有肌毒性所需的关键结构决定因素,代表了未经修饰的PLA(2)衍生的短合成肽的首次报道,该肽能够在体内重现母体毒素的这种作用。另一方面,即使在高浓度下,两种来自Asp49的肽在体外或体内也没有显示任何毒性作用。这些发现表明,Lys49和Asp49 II类PLA(2)可能通过不同的分子机制发挥其肌肉毒性作用,暗示后者可能没有利用其C端区域作为主要的膜稳定元件。

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