The Notch pathway in Metazoa: a comparative analysis across cnidarians and beyond.

IF 4.1 2区 生物学 Q1 DEVELOPMENTAL BIOLOGY
Evodevo Pub Date : 2025-06-14 DOI:10.1186/s13227-025-00246-6
Alena Lövy, Jiří Kyslík, Amparo Picard-Sánchez, Astrid S Holzer, Alena Krejčí, Ivan Fiala
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引用次数: 0

Abstract

The Notch signalling pathway is a conserved regulator of cellular processes, including differentiation, proliferation, and apoptosis, across Metazoa. While its roles in bilaterians are well-characterized, the evolutionary history and functional diversification of Notch signalling in early branching metazoans, including cnidarians and parasitic cnidarians, myxozoans, remain underexplored. This study examines the presence and structural diversity of Notch pathway components across early diverging metazoan lineages, with a particular focus on Myxozoa-parasitic cnidarians characterized by extreme morphological and genomic reduction. Comparative analyses of 58 metazoan species revealed broad conservation of core Notch components, alongside losses in ctenophores, placozoans, poriferans, and cnidarians. Myxozoa retain only 14 of the 28 canonical pathway components, lacking key elements, such as MAML, Hes/Hey, and DVL. Phylogenetic analyses of Notch receptors highlight structural divergence, particularly in extracellular domains, reflecting lineage-specific variations. The phylogeny of Delta and Jagged ligands reveals an evolutionary trajectory, with Delta ligands showing early diversification within metazoans, and their structural variability has been explored, though their functional roles remain unknown. The Notch receptor was detected at the subcellular level in proliferative stages of Sphaerospora molnari through immunolocalization studies, suggesting it is active in these cells. Our findings contribute to understanding the evolution of the Notch signalling pathway, highlighting its conserved role in developmental regulation across early branching Metazoa.

后生动物的Notch通路:刺胞动物和其他动物的比较分析。
Notch信号通路是后生动物细胞分化、增殖和凋亡过程的保守调节因子。虽然Notch信号在双边动物中的作用已经得到了很好的描述,但Notch信号在早期分支后生动物(包括刺胞动物和寄生刺胞动物、黏液动物)中的进化历史和功能多样化仍未得到充分研究。本研究考察了早期分化的后生动物谱系中Notch通路组分的存在和结构多样性,特别关注了具有极端形态和基因组减少特征的黏液-寄生刺胞动物。对58种后生动物的比较分析显示,核心Notch成分广泛保存,同时在栉水母、placozoans、多孔动物和刺胞动物中丢失。黏液动物只保留了28个典型途径组分中的14个,缺乏关键元件,如MAML、Hes/Hey和DVL。Notch受体的系统发育分析强调了结构上的差异,特别是在细胞外结构域,反映了谱系特异性的差异。Delta配体和Jagged配体的系统发育揭示了一个进化轨迹,Delta配体在后生动物中表现出早期多样化,它们的结构变异性已经被探索,尽管它们的功能作用仍然未知。通过免疫定位研究,Notch受体在摩尔纳Sphaerospora molnari增殖阶段的亚细胞水平上被检测到,表明其在这些细胞中具有活性。我们的发现有助于理解Notch信号通路的进化,突出了其在早期分支后生动物发育调节中的保守作用。
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来源期刊
Evodevo
Evodevo EVOLUTIONARY BIOLOGY-DEVELOPMENTAL BIOLOGY
CiteScore
7.50
自引率
0.00%
发文量
18
审稿时长
>12 weeks
期刊介绍: EvoDevo publishes articles on a broad range of topics associated with the translation of genotype to phenotype in a phylogenetic context. Understanding the history of life, the evolution of novelty and the generation of form, whether through embryogenesis, budding, or regeneration are amongst the greatest challenges in biology. We support the understanding of these processes through the many complementary approaches that characterize the field of evo-devo. The focus of the journal is on research that promotes understanding of the pattern and process of morphological evolution. All articles that fulfill this aim will be welcome, in particular: evolution of pattern; formation comparative gene function/expression; life history evolution; homology and character evolution; comparative genomics; phylogenetics and palaeontology
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