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栉水母 Mnemiopsis leidyi 的核受体缺乏锌指 DNA 结合域:核受体超家族出现时的谱系特异性缺失还是祖先状态?

Nuclear receptors from the ctenophore Mnemiopsis leidyi lack a zinc-finger DNA-binding domain: lineage-specific loss or ancestral condition in the emergence of the nuclear receptor superfamily?

机构信息

Biology Department, Woods Hole Oceanographic Institution, Woods Hole, MA, USA.

出版信息

Evodevo. 2011 Feb 3;2(1):3. doi: 10.1186/2041-9139-2-3.

Abstract

BACKGROUND

Nuclear receptors (NRs) are an ancient superfamily of metazoan transcription factors that play critical roles in regulation of reproduction, development, and energetic homeostasis. Although the evolutionary relationships among NRs are well-described in two prominent clades of animals (deuterostomes and protostomes), comparatively little information has been reported on the diversity of NRs in early diverging metazoans. Here, we identified NRs from the phylum Ctenophora and used a phylogenomic approach to explore the emergence of the NR superfamily in the animal kingdom. In addition, to gain insight into conserved or novel functions, we examined NR expression during ctenophore development.

RESULTS

We report the first described NRs from the phylum Ctenophora: two from Mnemiopsis leidyi and one from Pleurobrachia pileus. All ctenophore NRs contained a ligand-binding domain and grouped with NRs from the subfamily NR2A (HNF4). Surprisingly, all the ctenophore NRs lacked the highly conserved DNA-binding domain (DBD). NRs from Mnemiopsis were expressed in different regions of developing ctenophores. One was broadly expressed in the endoderm during gastrulation. The second was initially expressed in the ectoderm during gastrulation, in regions corresponding to the future tentacles; subsequent expression was restricted to the apical organ. Phylogenetic analyses of NRs from ctenophores, sponges, cnidarians, and a placozoan support the hypothesis that expansion of the superfamily occurred in a step-wise fashion, with initial radiations in NR family 2, followed by representatives of NR families 3, 6, and 1/4 originating prior to the appearance of the bilaterian ancestor.

CONCLUSIONS

Our study provides the first description of NRs from ctenophores, including the full complement from Mnemiopsis. Ctenophores have the least diverse NR complement of any animal phylum with representatives that cluster with only one subfamily (NR2A). Ctenophores and sponges have a similarly restricted NR complement supporting the hypothesis that the original NR was HNF4-like and that these lineages are the first two branches from the animal tree. The absence of a zinc-finger DNA-binding domain in the two ctenophore species suggests two hypotheses: this domain may have been secondarily lost within the ctenophore lineage or, if ctenophores are the first branch off the animal tree, the original NR may have lacked the canonical DBD. Phylogenomic analyses and categorization of NRs from all four early diverging animal phyla compared with the complement from bilaterians suggest the rate of NR diversification prior to the cnidarian-bilaterian split was relatively modest, with independent radiations of several NR subfamilies within the cnidarian lineage.

摘要

背景

核受体(NRs)是后生动物转录因子的一个古老超级家族,在生殖、发育和能量稳态的调控中发挥着关键作用。尽管在两个突出的动物类群(后口动物和原口动物)中,NRs 的进化关系描述得很好,但关于早期分化的后生动物中 NRs 的多样性的信息却相对较少。在这里,我们从栉水母门中鉴定出 NRs,并使用系统基因组学方法来探索 NR 超级家族在动物王国中的出现。此外,为了深入了解保守或新的功能,我们在栉水母发育过程中检查了 NR 的表达。

结果

我们报告了栉水母门中首次描述的 NRs:Mnemiopsis leidyi 有两个,Pleurobrachia pileus 有一个。所有栉水母 NRs 都含有一个配体结合域,并与亚家族 NR2A(HNF4)的 NRs 聚在一起。令人惊讶的是,所有栉水母 NRs 都缺乏高度保守的 DNA 结合域(DBD)。Mnemiopsis 的 NRs 在发育栉水母的不同区域表达。一个在原肠胚形成期间在内胚层中广泛表达。第二个在原肠胚形成期间最初在外胚层中表达,在未来触须的对应区域;随后的表达仅限于顶端器官。栉水母、海绵、刺胞动物和扁盘动物的 NR 系统发生分析支持这样的假设,即超级家族的扩张是分阶段发生的,首先是 NR 家族 2 的辐射,然后是 NR 家族 3、6 和 1/4 的代表在双边动物祖先出现之前起源。

结论

我们的研究首次描述了栉水母的 NRs,包括 Mnemiopsis 的完整组成。栉水母是动物门中 NR 成分最少的一门,其代表只与一个亚家族(NR2A)聚类。栉水母和海绵具有相似的受限 NR 成分,支持这样的假设,即原始 NR 是 HNF4 样的,这些谱系是从动物树的前两个分支。在两种栉水母物种中缺乏锌指 DNA 结合域表明了两种假设:这个结构域可能在栉水母谱系中被二次丢失,或者如果栉水母是动物树的第一个分支,那么原始 NR 可能缺乏典型的 DBD。与双边动物的成分相比,对来自所有四个早期分化的动物门的 NR 进行系统基因组学分析和分类表明,在刺胞动物-双边动物分裂之前,NR 多样化的速度相对较慢,在刺胞动物谱系内独立辐射了几个 NR 亚家族。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ac31/3038971/8777f316b290/2041-9139-2-3-1.jpg

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