IGBMC, Development and Stem Cells Department, CNRS UMR7104, INSERM U1258, Université de Strasbourg, Strasbourg, France.
Department of Cell and Developmental Biology, University College London, London, United Kingdom.
Curr Top Dev Biol. 2021;144:111-159. doi: 10.1016/bs.ctdb.2021.03.004. Epub 2021 Apr 29.
How flexible are cell identities? This problem has fascinated developmental biologists for several centuries and can be traced back to Abraham Trembley's pioneering manipulations of Hydra to test its regeneration abilities in the 1700s. Since the cell theory in the mid-19th century, developmental biology has been dominated by a single framework in which embryonic cells are committed to specific cell fates, progressively and irreversibly acquiring their differentiated identities. This hierarchical, unidirectional and irreversible view of cell identity has been challenged in the past decades through accumulative evidence that many cell types are more plastic than previously thought, even in intact organisms. The paradigm shift introduced by such plasticity calls into question several other key traditional concepts, such as how to define a differentiated cell or more generally cellular identity, and has brought new concepts, such as distinct cellular states. In this review, we want to contribute to this representation by attempting to clarify the conceptual and theoretical frameworks of cell plasticity and identity. In the context of these new frameworks we describe here an atlas of natural plasticity of cell identity in C. elegans, including our current understanding of the cellular and molecular mechanisms at play. The worm further provides interesting cases at the borderlines of cellular plasticity that highlight the conceptual challenges still ahead. We then discuss a set of future questions and perspectives arising from the studies of natural plasticity in the worm that are shared with other reprogramming and plasticity events across phyla.
细胞身份的灵活性如何?这个问题已经吸引了几个世纪的发育生物学家的关注,可以追溯到 18 世纪 Abraham Trembley 对水螅的开创性操作,以测试其再生能力。自 19 世纪中叶细胞理论以来,发育生物学一直由一个单一的框架主导,其中胚胎细胞被承诺具有特定的细胞命运,逐步且不可逆地获得其分化的身份。这种细胞身份的层次化、单向和不可逆的观点在过去几十年中受到了挑战,积累的证据表明,许多细胞类型比以前认为的更具可塑性,即使在完整的生物体中也是如此。这种可塑性带来的范式转变质疑了其他几个关键的传统概念,例如如何定义分化细胞或更一般地细胞身份,并带来了新的概念,如不同的细胞状态。在这篇综述中,我们希望通过尝试澄清细胞可塑性和身份的概念和理论框架来对此做出贡献。在这些新框架的背景下,我们在这里描述了秀丽隐杆线虫中细胞身份自然可塑性的图谱,包括我们目前对发挥作用的细胞和分子机制的理解。该蠕虫还提供了细胞可塑性边界的有趣案例,突出了仍然存在的概念挑战。然后,我们讨论了一组来自蠕虫自然可塑性研究的未来问题和观点,这些问题和观点与门之间的其他重编程和可塑性事件共享。