Department of Microsurgery, Orthopaedic Trauma and Hand Surgery, The First Affiliated Hospital, Sun Yat-sen University, Guangzhou, China.
Department of Molecular Biology, University of Texas Southwestern Medical Center, Dallas, TX, USA.
Nature. 2021 Apr;592(7853):272-276. doi: 10.1038/s41586-021-03273-0. Epub 2021 Jan 28.
Cell competition involves a conserved fitness-sensing process during which fitter cells eliminate neighbouring less-fit but viable cells. Cell competition has been proposed as a surveillance mechanism to ensure normal development and tissue homeostasis, and has also been suggested to act as a barrier to interspecies chimerism. However, cell competition has not been studied in an interspecies context during early development owing to the lack of an in vitro model. Here we developed an interspecies pluripotent stem cell (PSC) co-culture strategy and uncovered a previously unknown mode of cell competition between species. Interspecies competition between PSCs occurred in primed but not naive pluripotent cells, and between evolutionarily distant species. By comparative transcriptome analysis, we found that genes related to the NF-κB signalling pathway, among others, were upregulated in less-fit 'loser' human cells. Genetic inactivation of a core component (P65, also known as RELA) and an upstream regulator (MYD88) of the NF-κB complex in human cells could overcome the competition between human and mouse PSCs, thereby improving the survival and chimerism of human cells in early mouse embryos. These insights into cell competition pave the way for the study of evolutionarily conserved mechanisms that underlie competitive cell interactions during early mammalian development. Suppression of interspecies PSC competition may facilitate the generation of human tissues in animals.
细胞竞争涉及到一个保守的适应性感知过程,在此过程中,适应性更强的细胞会消除邻近的适应性较弱但存活的细胞。细胞竞争被认为是一种监测机制,可确保正常的发育和组织内稳态,也被认为是阻止种间嵌合体形成的屏障。然而,由于缺乏体外模型,在早期发育过程中,种间细胞竞争尚未在种间背景下进行研究。在这里,我们开发了一种种间多能干细胞(PSC)共培养策略,并揭示了物种间细胞竞争的一种先前未知模式。在已分化但未分化的多能细胞以及进化上相距较远的物种之间,发生了种间 PSC 竞争。通过比较转录组分析,我们发现与 NF-κB 信号通路相关的基因等在适应性较弱的“失败者”人类细胞中上调。在人类细胞中,NF-κB 复合物的核心组成部分(P65,也称为 RELA)和上游调节因子(MYD88)的遗传失活可以克服人源和鼠源 PSC 之间的竞争,从而提高人源细胞在早期小鼠胚胎中的存活率和嵌合率。这些关于细胞竞争的见解为研究在早期哺乳动物发育过程中,种间保守的竞争细胞相互作用机制奠定了基础。抑制种间 PSC 竞争可能有助于在动物中生成人类组织。