Institut de Systématique, Evolution, Biodiversité, Sorbonne Université, Muséum National d'Histoire Naturelle, CNRS, EPHE, F-75252, Paris Cedex 05, France.
Shimoda Marine Research Center, University of Tsukuba, Shizuoka, Japan.
Sci Rep. 2024 Mar 8;14(1):5729. doi: 10.1038/s41598-023-48411-y.
Apoptosis is a regulated cell death ubiquitous in animals defined by morphological features depending on caspases. Two regulation pathways are described, currently named the intrinsic and the extrinsic apoptosis. While intrinsic apoptosis is well studied and considered ancestral among metazoans, extrinsic apoptosis is poorly studied outside mammals. Here, we address extrinsic apoptosis in the urochordates Ciona, belonging to the sister group of vertebrates. During metamorphosis, Ciona larvae undergo a tail regression depending on tissue contraction, migration and apoptosis. Apoptosis begin at the tail tip and propagates towards the trunk as a polarized wave. We identified Ci-caspase 8/10 by phylogenetic analysis as homolog to vertebrate caspases 8 and 10 that are the specific initiator of extrinsic apoptosis. We detected Ci-caspase 8/10 expression in Ciona larvae, especially at the tail tip. We showed that chemical inhibition of Ci-caspase 8/10 leads to a delay of tail regression, and Ci-caspase 8/10 loss of function induced an incomplete tail regression. The specificity between apoptotic pathways and initiator caspase suggests that extrinsic apoptosis regulates cell death during the tail regression. Our study presents rare in vivo work on extrinsic apoptosis outside mammals, and contribute to the discussion on its evolutionary history in animals.
细胞凋亡是一种广泛存在于动物中的受调控的细胞死亡形式,其形态特征取决于半胱氨酸天冬氨酸蛋白酶(caspases)。目前已经描述了两种调控途径,分别命名为内在细胞凋亡和外在细胞凋亡。虽然内在细胞凋亡在后生动物中研究得很好,被认为是祖先的,但外在细胞凋亡在哺乳动物以外的生物中研究得很少。在这里,我们研究了尾索动物海鞘属的外在细胞凋亡,海鞘属与脊椎动物的姐妹群。在变态过程中,海鞘幼虫的尾部退化取决于组织收缩、迁移和细胞凋亡。凋亡首先从尾部末端开始,并作为一个极化波向躯干传播。通过系统发育分析,我们鉴定出 Ci-caspase 8/10 是脊椎动物 caspase 8 和 10 的同源物,它们是外在细胞凋亡的特异性起始因子。我们在海鞘幼虫中检测到 Ci-caspase 8/10 的表达,特别是在尾部末端。我们表明,Ci-caspase 8/10 的化学抑制导致尾部退化延迟,Ci-caspase 8/10 的功能丧失导致不完全的尾部退化。凋亡途径和起始 caspase 之间的特异性表明,外在细胞凋亡调节尾部退化过程中的细胞死亡。我们的研究在哺乳动物以外的生物中提供了关于外在细胞凋亡的罕见体内研究,并为其在动物中的进化历史的讨论做出了贡献。