首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Drosophila Thor participates in host immune defense and connects a translational regulator with innate immunity
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Drosophila Thor participates in host immune defense and connects a translational regulator with innate immunity

机译:果蝇雷神(Trosophila Thor)参与宿主的免疫防御,并将翻译调节因子与先天免疫连接起来。

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摘要

Thor has been identified as a new type of gene involved in Drosophila host immune defense. Thor is a member of the 4E- binding protein (4E-BP) family, which in mammals has been de- fined as critical regulators in a pathway that controls initiation of translation through binding eukaryotic initiation factor 4E (eIF4E). Without an infection, Thor is expressed during all developmental stages and transcripts localize to a wide variety of tissues, includ- ing the reproductive system. In response to bacterial infection and. to a lesser extent, by wounding, Thor is up-regulated. The Thor promoter has the canonical NFκB and associated GATA recognition sequences that have been shown to be essential for immune induction, as well as other sequences commonly found for Dro- sophila immune response genes, including interferon-related reg- ulatory sequences. In survival tests, Thor mutants show symptoms of being immune compromised, indicating that Thor may be critical in host defense. In contrast to Thor, Drosophila eIF4E is not induced by bacterial infection. These findings for Thor provide the first evidence that a 4E-BP family member has a role in immune induction in any organism. Further, no gene in the translation initiation pathway that includes 4E-BP has been previously found to be immune induced. Our results suggest either a role for translational regulation in humoral immunity or a new, nontrans- lational function for 4E-BP type genes.
机译:Thor已被确定为一种与果蝇宿主免疫防御有关的新型基因。 Thor是4E结合蛋白(4E-BP)家族的成员,该家族在哺乳动物中已被定义为通过结合真核起始因子4E(eIF4E)控制翻译起始的途径中的关键调节因子。在没有感染的情况下,Thor在所有发育阶段均表达,并且转录本定位于多种组织,包括生殖系统。以应对细菌感染。在较小程度上,由于受伤,雷神上调。 Thor启动子具有典型的NFκB和相关的GATA识别序列,这些序列已被证明对免疫诱导至关重要,以及果蝇免疫应答基因中常见的其他序列,包括干扰素相关的调控序列。在存活测试中,Thor突变体显示出免疫受损的症状,表明Thor可能在宿主防御中起关键作用。与Thor相比,果蝇eIF4E不受细菌感染的诱导。 Thor的这些发现提供了第一个证据,即4E-BP家族成员在任何生物体中都具有免疫诱导作用。此外,先前尚未发现翻译起始途径中包括4E-BP的基因是免疫诱导的。我们的结果表明,翻译调控在体液免疫中起作用,或者是4E-BP型基因的新的非翻译功能。

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