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从陆地到水生生活的干扰素调节因子 3 的适应。

Adaptations of Interferon Regulatory Factor 3 with Transition from Terrestrial to Aquatic Life.

机构信息

School of Biological Sciences, University of Nebraska, Lincoln, NE, 68588, USA.

Department of Biostatistics, University of Washington, Washington, USA.

出版信息

Sci Rep. 2020 Mar 11;10(1):4508. doi: 10.1038/s41598-020-61365-9.

Abstract

Interferon regulatory factor 3 (IRF3) and IRF7 are closely related IRF members and the major factors for the induction of interferons, a key component in vertebrate innate immunity. However, there is limited knowledge regarding the evolution and adaptation of those IRFs to the environments. Two unique motifs in IRF3 and 7 were identified. One motif, GASSL, is highly conserved throughout the evolution of IRF3 and 7 and located in the signal response domain. Another motif, DPHK, is in the DNA-binding domain. The ancestral protein of IRF3 and 7 seemed to possess the DPHK motif. In the ray-finned fish lineage, while the DPHK is maintained in IRF7, the motif in IRF3 is changed to NPHK with a D → N amino acid substitution. The D → N substitution are also found in amphibian IRF3 but not in amphibian IRF7. Terrestrial animals such as reptiles and mammals predominantly use DPHK sequences in both IRF3 and 7. However, the D → N substitution in IRF3 DPHK is again found in cetaceans such as whales and dolphins as well as in marsupials. These observations suggest that the D → N substitutions in the IRF3 DPHK motif is likely to be associated with vertebrate's adaptations to aquatic environments and other environmental changes.

摘要

干扰素调节因子 3(IRF3)和 IRF7 是密切相关的 IRF 成员,也是诱导干扰素的主要因素,干扰素是脊椎动物先天免疫的关键组成部分。然而,对于这些 IRF 如何适应环境的进化和适应,我们的了解有限。鉴定出 IRF3 和 7 中的两个独特基序。一个基序,GASSL,在 IRF3 和 7 的进化过程中高度保守,位于信号响应域。另一个基序,DPHK,位于 DNA 结合域。IRF3 和 7 的祖先蛋白似乎具有 DPHK 基序。在线粒体鱼类谱系中,虽然 DPHK 在 IRF7 中得以保留,但 IRF3 中的基序则因 D 到 N 的氨基酸取代而变为 NPHK。这种 D 到 N 的取代也存在于两栖动物的 IRF3 中,但不存在于两栖动物的 IRF7 中。爬行动物和哺乳动物等陆地动物在 IRF3 和 7 中均主要使用 DPHK 序列。然而,在鲸鱼和海豚等鲸类动物以及有袋动物中,又再次发现了 IRF3 DPHK 中的 D 到 N 取代。这些观察结果表明,IRF3 DPHK 基序中的 D 到 N 取代可能与脊椎动物对水生环境和其他环境变化的适应有关。

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