Singh Sumeet Pal, Janjuha Sharan, Hartmann Theresa, Kayisoglu Özge, Konantz Judith, Birke Sarah, Murawala Priyanka, Alfar Ezzaldin Ahmed, Murata Kei, Eugster Anne, Tsuji Naoki, Morrissey Edward R, Brand Michael, Ninov Nikolay
DFG-Center for Regenerative Therapies Dresden, Cluster of Excellence, Technische Universität Dresden, Dresden, 01307, Germany.
Paul Langerhans Institute Dresden of the Helmholtz Zentrum München at the University Hospital and Faculty of Medicine Carl Gustav Carus of Technische Universität Dresden, Dresden, 01307, Germany.
Nat Commun. 2017 Sep 22;8(1):664. doi: 10.1038/s41467-017-00461-3.
The proliferative and functional heterogeneity among seemingly uniform cells is a universal phenomenon. Identifying the underlying factors requires single-cell analysis of function and proliferation. Here we show that the pancreatic beta-cells in zebrafish exhibit different growth-promoting and functional properties, which in part reflect differences in the time elapsed since birth of the cells. Calcium imaging shows that the beta-cells in the embryonic islet become functional during early zebrafish development. At later stages, younger beta-cells join the islet following differentiation from post-embryonic progenitors. Notably, the older and younger beta-cells occupy different regions within the islet, which generates topological asymmetries in glucose responsiveness and proliferation. Specifically, the older beta-cells exhibit robust glucose responsiveness, whereas younger beta-cells are more proliferative but less functional. As the islet approaches its mature state, heterogeneity diminishes and beta-cells synchronize function and proliferation. Our work illustrates a dynamic model of heterogeneity based on evolving proliferative and functional beta-cell states.Βeta-cells have recently been shown to be heterogeneous with regard to morphology and function. Here, the authors show that β-cells in zebrafish switch from proliferative to functional states with increasing time since β-cell birth, leading to functional and proliferative heterogeneity.
看似均一的细胞之间存在增殖和功能异质性,这是一种普遍现象。确定其潜在因素需要对功能和增殖进行单细胞分析。我们在此表明,斑马鱼的胰腺β细胞表现出不同的促生长和功能特性,这部分反映了细胞自诞生以来所经历时间的差异。钙成像显示,胚胎胰岛中的β细胞在斑马鱼早期发育过程中开始发挥功能。在后期阶段,较年轻的β细胞从胚胎后祖细胞分化后加入胰岛。值得注意的是,较老和较年轻的β细胞在胰岛内占据不同区域,这在葡萄糖反应性和增殖方面产生了拓扑不对称性。具体而言,较老的β细胞表现出强烈的葡萄糖反应性,而较年轻的β细胞增殖能力更强但功能较弱。随着胰岛接近成熟状态,异质性减弱,β细胞的功能和增殖同步。我们的工作阐述了一个基于不断演变的增殖和功能性β细胞状态的异质性动态模型。最近研究表明,β细胞在形态和功能方面存在异质性。在此,作者表明,自β细胞诞生以来,随着时间的推移,斑马鱼中的β细胞从增殖状态转变为功能状态,导致功能和增殖异质性。