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Molecular characterisation of RIG-I-like helicases in the black flying fox, Pteropus alecto

机译:黑狐狐,Pteropus alecto中的RIG-I类解旋酶的分子表征

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The RIG-I like helicases, RIG-I, mda5 and LGP2 are an evolutionarily conserved family of cytosolic pattern recognition receptors important in the recognition of viral RNA, and responsible for the innate induction of interferons and proinflammatory cytokines upon viral infection. Bats are natural reservoir hosts to a variety of RNA viruses that cause significant morbidity and mortality in other species; however the mechanisms responsible for the control of viral replication in bats are not understood. This report describes the molecular cloning and expression analysis of RIG-I, mda5 and LGP2 genes in the fruit bat Pteropus alecto, and is the first description of RIG-I like helicases from any species of bat. Our results demonstrate that P. alecto RIG-I, mda5 and LGP2 have similar primary structures and tissue expression patterns to their counterparts in humans and other mammals. Stimulation of bat kidney cells with synthetic dsRNA (poly I:C) induced high levels of interferon β and rapid upregulation of all three helicases. These findings reveal that the cytoplasmic virus sensing machinery is present and intact in P. alecto. This study provides the foundation for further investigations into the interactions between bat RIG-I-like helicases and viruses to elucidate the mechanisms responsible for the asymptomatic nature of viral infections in bats.
机译:像解旋酶,RIG-I,mda5和LGP2一样的RIG-I是进化上保守的胞质模式识别受体家族,在识别病毒RNA方面很重要,并在病毒感染后先天诱导干扰素和促炎性细胞因子。蝙蝠是多种RNA病毒的天然宿主,它们会导致其他物种的发病率和死亡。但是,尚不清楚负责蝙蝠病毒复制控制的机制。该报告描述了果实蝙蝠翼手龙中RIG-1,mda5和LGP2基因的分子克隆和表达分析,并且是对来自任何种类蝙蝠的RIG-I类解旋酶的首次描述。我们的结果表明,P。alecto RIG-I,mda5和LGP2与人类和其他哺乳动物中的对应物具有相似的一级结构和组织表达模式。用合成的dsRNA(poly I:C)刺激蝙蝠肾细胞会诱导高水平的干扰素β以及所有三种解旋酶的快速上调。这些发现表明,胞质病毒感测机制存在并完整存在。该研究为进一步研究蝙蝠RIG-I类解旋酶与病毒之间的相互作用提供了基础,以阐明导致蝙蝠病毒感染无症状的机制。

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