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通过蛋白质异构体的增减来调控信号通路:以EDA通路调节因子EDARADD为例

Tinkering signaling pathways by gain and loss of protein isoforms: the case of the EDA pathway regulator EDARADD.

作者信息

Sadier Alexa, Lambert Elise, Chevret Pascale, Décimo Didier, Sémon Marie, Tohmé Marie, Ruggiero Florence, Ohlmann Théophile, Pantalacci Sophie, Laudet Vincent

机构信息

Institut de Génomique Fonctionnelle de Lyon, UMR 5242 du CNRS, Université de Lyon, Université Claude Bernard Lyon 1, Ecole Normale Supérieure de Lyon, 46 Allée d'Italie, 69364, Lyon, Cedex 07, France.

Laboratoire de Biométrie et Biologie Évolutive, CNRS UMR5558, Université de Lyon, Universite Claude Bernard Lyon 1, Villeurbanne, France.

出版信息

BMC Evol Biol. 2015 Jul 2;15:129. doi: 10.1186/s12862-015-0395-0.

Abstract

BACKGROUND

Only a handful of signaling pathways are major actors of development and responsible for both the conservation and the diversification of animal morphologies. To explain this twofold nature, gene duplication and enhancer evolution were predominantly put forth as tinkering mechanisms whereas the evolution of alternative isoforms has been, so far, overlooked. We investigate here the role of gain and loss of isoforms using Edaradd, a gene of the Ecodysplasin pathway, implicated in morphological evolution. A previous study had suggested a scenario of isoform gain and loss with an alternative isoform (A) newly gained in mammals but secondarily lost in mouse lineage.

RESULTS

For a comprehensive view of A and B Edaradd isoforms history during mammal evolution, we obtained sequences for both isoforms in representative mammals and performed in vitro translations to support functional predictions. We showed that the ancestral B isoform is well conserved, whereas the mammal-specific A isoform was lost at least 7 times independently in terminal lineages throughout mammal phylogeny. Then, to gain insights into the functional relevance of this evolutionary pattern, we compared the biological function of these isoforms: i) In cellulo promoter assays showed that they are transcribed from two alternative promoters, only B exhibiting feedback regulation. ii) RT-PCR in various tissues and ENCODE data suggested that B isoform is systematically expressed whereas A isoform showed a more tissue-specific expression. iii) Both isoforms activated the NF-κB pathway in an in cellulo reporter assay, albeit at different levels and with different dynamics since A isoform exhibited feedback regulation at the protein level. Finally, only B isoform could rescue a zebrafish edaradd knockdown.

CONCLUSIONS

These results suggest that the newly evolved A isoform enables modulating EDA signaling in specific conditions and with different dynamics. We speculate that during mammal diversification, A isoform regulation may have evolved rapidly, accompanying and possibly supporting the diversity of ectodermal appendages, while B isoform may have ensured essential roles. This study makes the case to pay greater attention to mosaic loss of evolutionarily speaking "young" isoforms as an important mechanism underlying phenotypic diversity and not simply as a manifestation of neutral evolution.

摘要

背景

只有少数信号通路是发育的主要参与者,负责动物形态的保守性和多样性。为了解释这种双重性质,基因复制和增强子进化主要被提出作为修补机制,而到目前为止,可变剪接异构体的进化一直被忽视。我们在此使用Ecodysplasin通路中的一个基因Edaradd来研究异构体的获得和丧失的作用,该基因与形态进化有关。先前的一项研究提出了一个异构体获得和丧失的情况,即一种可变剪接异构体(A)在哺乳动物中是新获得的,但在小鼠谱系中后来又丧失了。

结果

为了全面了解哺乳动物进化过程中A和B Edaradd异构体的历史,我们获得了代表性哺乳动物中两种异构体的序列,并进行了体外翻译以支持功能预测。我们发现,祖先的B异构体保存得很好,而哺乳动物特有的A异构体在整个哺乳动物系统发育的末端谱系中至少独立丧失了7次。然后,为了深入了解这种进化模式的功能相关性,我们比较了这些异构体的生物学功能:i)细胞内启动子分析表明它们从两个可变启动子转录,只有B表现出反馈调节。ii)在各种组织中的逆转录聚合酶链反应(RT-PCR)和ENCODE数据表明,B异构体系统性表达,而A异构体表现出更多的组织特异性表达。iii)在细胞内报告基因分析中,两种异构体都激活了核因子κB(NF-κB)通路,尽管水平和动力学不同,因为A异构体在蛋白质水平表现出反馈调节。最后,只有B异构体能够挽救斑马鱼edaradd基因敲低的情况。

结论

这些结果表明,新进化的A异构体能够在特定条件下以不同动力学调节EDA信号。我们推测,在哺乳动物多样化过程中,A异构体的调节可能迅速进化,伴随着并可能支持外胚层附属物的多样性,而B异构体可能发挥了重要作用。这项研究表明,应更加关注从进化角度来看“年轻”异构体的镶嵌式丧失,将其作为表型多样性的重要机制,而不仅仅是中性进化的表现。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1ab5/4489351/fa30e5c13b32/12862_2015_395_Fig1_HTML.jpg

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