Evolution of Apoptotic Signaling Pathways Within Lophotrochozoans.

IF 3.2 2区 生物学 Q2 EVOLUTIONARY BIOLOGY
Helen R Horkan, Nikolay Popgeorgiev, Michel Vervoort, Eve Gazave, Gabriel Krasovec
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Abstract

Apoptosis is the main form of regulated cell death in metazoans. Apoptotic pathways are well characterized in nematodes, flies, and mammals, leading to a vision of the conservation of apoptotic pathways in metazoans. However, we recently showed that intrinsic apoptosis is in fact divergent among metazoans. In addition, extrinsic apoptosis is poorly studied in non-mammalian animals, making its evolution unclear. Consequently, our understanding of apoptotic signaling pathways evolution is a black box which must be illuminated by extending research to new biological systems. Lophotrochozoans are a major clade of metazoans which, despite their considerable biological diversity and key phylogenetic position as sister group of ecdysozoans (i.e. flies and nematodes), are poorly explored, especially regarding apoptosis mechanisms. Traditionally, each apoptotic signaling pathway was considered to rely on a specific initiator caspase, associated with an activator. To shed light on apoptosis evolution in animals, we explored the evolutionary history of initiator caspases, caspase activators, and the BCL-2 family (which control mitochondrial apoptotic pathway) in lophotrochozoans using phylogenetic analysis and protein interaction predictions. We discovered a diversification of initiator caspases in molluscs, annelids, and brachiopods, and the loss of key extrinsic apoptosis components in platyhelminths, along with the emergence of a clade-specific caspase with an ankyrin pro-domain. Taken together, our data show a specific history of apoptotic actors' evolution in lophotrochozoans, further demonstrating the appearance of distinct apoptotic signaling pathways during metazoan evolution.

藻类凋亡信号途径的进化
细胞凋亡是后生动物调节细胞死亡的主要形式。线虫、蝇类和哺乳动物的细胞凋亡途径特征十分明确,因此人们认为元古界动物的细胞凋亡途径是一致的。然而,我们最近发现,元古动物的内在凋亡实际上是不同的。此外,外源性凋亡在非哺乳动物中的研究很少,因此其进化过程也不清楚。因此,我们对凋亡信号通路进化的理解是一个黑箱,必须通过将研究扩展到新的生物系统来加以阐明。嗜光毛目动物是后生动物的一个主要支系,尽管它们具有相当大的生物多样性,而且在系统发育上处于关键地位,是低等动物(即蝇类、线虫类)的姊妹群,但对它们的研究却很少,尤其是在凋亡机制方面。传统上认为,每种凋亡信号通路都依赖于一种特定的启动器 Caspase 和一种激活剂。为了揭示动物凋亡的进化过程,我们利用系统发育分析和蛋白质相互作用预测,探索了启动子Caspase、Caspase激活子和BCL-2家族(控制线粒体凋亡途径)在光原动物中的进化历史。我们发现软体动物、无脊椎动物和腕足动物中的启动器 Caspase 出现了多样化,而扁形动物中的关键外源性凋亡成分则消失了,同时还出现了一种具有 ankyrin pro-domain 的支系特异性 Caspase。总之,我们的数据显示了凋亡作用者在食光动物中进化的特定历史,进一步证明了在元虫进化过程中出现了不同的凋亡信号通路。
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来源期刊
Genome Biology and Evolution
Genome Biology and Evolution EVOLUTIONARY BIOLOGY-GENETICS & HEREDITY
CiteScore
5.80
自引率
6.10%
发文量
169
审稿时长
1 months
期刊介绍: About the journal Genome Biology and Evolution (GBE) publishes leading original research at the interface between evolutionary biology and genomics. Papers considered for publication report novel evolutionary findings that concern natural genome diversity, population genomics, the structure, function, organisation and expression of genomes, comparative genomics, proteomics, and environmental genomic interactions. Major evolutionary insights from the fields of computational biology, structural biology, developmental biology, and cell biology are also considered, as are theoretical advances in the field of genome evolution. GBE’s scope embraces genome-wide evolutionary investigations at all taxonomic levels and for all forms of life — within populations or across domains. Its aims are to further the understanding of genomes in their evolutionary context and further the understanding of evolution from a genome-wide perspective.
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