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Inactivation of frog virus 3 and channel catfish virus by esculentin-2P and ranatuerin-2P, two antimicrobial peptides isolated from frog skin

机译:esculentin-2P和ranatuerin-2P这两种从蛙皮中分离出的抗菌肽可灭活蛙病毒3和channel鱼病毒

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While it is clear that some amphibian populations have recently experienced precipitous declines, the causes of those die-offs are complex and likely involve multiple variables. One theory suggests that environmental factors may trigger events that result in depressed immune function and increased susceptibility to infectious disease. Here we examine one aspect of innate immunity in amphibians and show that esculentin-2P (E2P) and ranatuerin-2P (R2P), two antimicrobial peptides isolated from Rana pipiens, inactivate frog virus 3, a potentially pathogenic iridovirus infecting anurans, and channel catfish herpesvirus. In contrast to mammalian antimicrobial peptides, E2P and R2P act within minutes, at temperatures as low as 0 degreesC, to inhibit viral infectivity. Moreover, these compounds appear to inactivate the virus directly and do not act by inhibiting replication in infected cells. This is the first report linking amphibian antimicrobial peptides with protection from an amphibian viral pathogen and suggests that these compounds may play a role in maintaining amphibian health.
机译:很明显,有些两栖动物种群最近经历了急剧的下降,但这些死亡的原因却很复杂,可能涉及多个变量。一种理论认为,环境因素可能触发导致免疫功能降低和对传染病易感性增加的事件。在这里,我们研究了两栖动物先天免疫的一个方面,并显示esculentin-2P(E2P)和ranatuerin-2P(R2P),这两种抗菌肽是从树蛙中分离的,能使青蛙病毒3灭活,这是一种潜在的致病性虹膜病毒,可感染无脊椎动物和channel鱼。疱疹病毒。与哺乳动物抗菌肽相反,E2P和R2P在低至0摄氏度的温度下在数分钟内起作用,以抑制病毒的感染性。而且,这些化合物似乎直接使病毒灭活,并且不能通过抑制感染细胞中的复制而起作用。这是第一个将两栖抗微生物肽与两栖病毒病原体的保护联系起来的报告,表明这些化合物可能在维持两栖动物健康中发挥作用。

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