首页> 外文期刊>International journal of biological sciences >Cationicity-Enhanced Analogues of the Antimicrobial Peptides, AcrAP1 and AcrAP2, from the Venom of the Scorpion, Androctonus crassicauda, Display Potent Growth Modulation Effects on Human Cancer Cell Lines
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Cationicity-Enhanced Analogues of the Antimicrobial Peptides, AcrAP1 and AcrAP2, from the Venom of the Scorpion, Androctonus crassicauda, Display Potent Growth Modulation Effects on Human Cancer Cell Lines

机译:蝎子毒液中的抗菌肽AcrAP1和AcrAP2的阳离子增强类似物对人类癌细胞系显示出有效的生长调节作用。

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摘要

The non disulphide-bridged peptides (NDBPs) of scorpion venoms are attracting increased interest due to their structural heterogeneity and broad spectrum of biological activities. Here, two novel peptides, named AcrAP1 and AcrAP2, have been identified in the lyophilised venom of the Arabian scorpion, Androctonus crassicauda, through “shotgun” molecular cloning of their biosynthetic precursor-encoding cDNAs. The respective mature peptides, predicted from these cloned cDNAs, were subsequently isolated from the same venom sample using reverse phase HPLC and their identities were confirmed by use of mass spectrometric techniques. Both were found to belong to a family of highly-conserved scorpion venom antimicrobial peptides - a finding confirmed through the biological investigation of synthetic replicates. Analogues of both peptides designed for enhanced cationicity, displayed enhanced potency and spectra of antimicrobial activity but, unlike the native peptides, these also displayed potent growth modulation effects on a range of human cancer cell lines. Thus natural peptide templates from venom peptidomes can provide the basis for rational analogue design to improve both biological potency and spectrum of action. The diversity of such templates from such natural sources undoubtedly provides the pharmaceutical industry with unique lead compounds for drug discovery.
机译:蝎毒的非二硫键桥接肽(NDBPs)由于其结构异质性和广泛的生物活性而吸引了越来越多的关注。在这里,通过“ shot弹枪”分子合成其生物合成前体的cDNA cDNA的克隆,已在阿拉伯蝎子Androctonus crassicauda的冻干毒液中鉴定出两种名为AcrAP1和AcrAP2的新型肽。随后,使用反相HPLC从同一毒液样品中分离出由这些克隆的cDNA预测的各个成熟肽,并通过质谱技术确认了它们的身份。两者均属于高度保守的蝎毒抗微生物肽家族,这一发现已通过对合成复制品的生物学研究得到证实。设计用于增强阳离子性的两种肽的类似物均显示出增强的效力和抗菌活性谱,但与天然肽不同,它们还显示出对一系列人类癌细胞系的有效生长调节作用。因此,来自毒液肽的天然肽模板可以为合理的类似物设计提供基础,以改善生物学效能和作用谱。来自自然资源的此类模板的多样性无疑为制药业提供了用于药物发现的独特的先导化合物。

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