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An Atlas of Anionic Antimicrobial Peptides from Amphibians

机译:两栖动物阴离子抗菌肽的图谱

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摘要

Anionic antimicrobial peptides (AAMPs) with net charges ranging from -1 to -8 have been identified in frogs, toads, newts and salamanders across Africa, South America and China. Most of these peptides show antibacterial activity and a number of them are multifunctional, variously showing antifungal activity, anticancer action, neuropeptide function and the ability to potentiate conventional antibiotics. Antimicrobial mechanisms proposed for these AAMPs, include toroidal pore formation and the Shai-Huang-Matsazuki model of membrane interaction along with pH dependent amyloidogenesis and membranolysis via tilted peptide formation. The potential for therapeutic and biotechnical application of these AAMPs has been demonstrated, including the development of amyloid-based nanomaterials and antiviral agents. It is concluded that amphibian AAMPs represent an untapped potential source of biologically active agents and merit far greater research interest.
机译:在非洲,南美洲和中国的青蛙,蟾蜍,蝾螈和蝾螈中鉴定了与-1至-8的净电荷的阴离子抗微生物肽(aamps)。 这些肽的大多数显示出抗菌活性和其中一些是多功能的,不同的,不同的,显示抗真菌活性,抗癌动作,神经肽功能和具有常规抗生素的能力。 提出的抗菌机制为这些粘液,包括环形孔隙形成和膜相互作用的磷酸山孔模型以及通过倾斜肽形成的pH依赖性淀粉样蛋白化和膜溶解。 已经证明了这些粘液的治疗和生物技术应用的可能性,包括淀粉样蛋白基纳米材料和抗病毒剂的发育。 结论是两栖动物疫苗代表生物学活性药物的未开发潜在的潜在来源,并优越的研究兴趣。

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