a Department of Molecular Evolution and Development; Centre of Organismal Systems Biology, Faculty of Life Sciences , University of Vienna ; Althanstrasse 14, Wien , Austria.
b Department of Ecology, Evolution and Behavior; Alexander Silberman Institute of Life Sciences , The Hebrew University of Jerusalem ; Givat Ram , Jerusalem , Israel.
RNA Biol. 2017 Dec 2;14(12):1727-1741. doi: 10.1080/15476286.2017.1349048. Epub 2017 Sep 13.
PIWI-interacting RNAs (piRNAs) and associated proteins comprise a conserved pathway for silencing transposons in metazoan germlines. piRNA pathway components are also expressed in multipotent somatic stem cells in various organisms. piRNA functions have been extensively explored in bilaterian model systems, however, comprehensive studies in non-bilaterian phyla remain limited. Here we investigate the piRNA pathway during the development of Nematostella vectensis, a well-established model system belonging to Cnidaria, the sister group to Bilateria. To date, no population of somatic stem cells has been identified in this organism, despite its long life-span and regenerative capacities that require a constant cell-renewal. We show that Nematostella piRNA pathway components are broadly expressed in early developmental stages, while piRNAs themselves show differential expression, suggesting specific developmental roles of distinct piRNA families. In adults, piRNA associated proteins are enriched in the germline but also expressed in somatic cells, indicating putative stem cell properties. Furthermore, we provide experimental evidence that Nematostella piRNAs cleave transposable elements as well as protein-coding genes. Our results demonstrate that somatic expression of piRNA associated proteins as well as the roles of piRNAs in transposon repression and gene regulation are likely ancestral features that evolved before the split between Cnidaria and Bilateria.
PIWI 相互作用 RNA(piRNA)和相关蛋白构成了真核生物生殖系中沉默转座子的保守途径。piRNA 途径的组成部分也在各种生物体中的多能性体干细胞中表达。piRNA 的功能在两侧对称动物模型系统中得到了广泛的研究,然而,在非两侧对称门中仍有许多限制。在这里,我们研究了 Nematostella vectensis 的 piRNA 途径,它是一种属于刺胞动物门的成熟模型系统,是两侧对称动物的姊妹群。迄今为止,尽管该生物具有长寿和再生能力,需要不断的细胞更新,但在该生物体中尚未发现体细胞干细胞群体。我们表明,Nematostella piRNA 途径的组成部分在早期发育阶段广泛表达,而 piRNA 本身表现出差异表达,表明不同 piRNA 家族具有特定的发育作用。在成体中,piRNA 相关蛋白在生殖系中富集,但也在体细胞中表达,表明其具有潜在的干细胞特性。此外,我们提供了实验证据表明,Nematostella piRNAs 可以切割转座元件和蛋白质编码基因。我们的研究结果表明,piRNA 相关蛋白在体细胞中的表达以及 piRNA 在转座子抑制和基因调控中的作用可能是在刺胞动物门和两侧对称动物门分裂之前进化而来的古老特征。