A single-cell atlas of de novo β-cell regeneration reveals the contribution of hybrid β/δ-cells to diabetes recovery in zebrafish

被引:21
|
作者
Singh, Sumeet Pal [1 ]
Chawla, Prateek [2 ]
Hnatiuk, Alisa [2 ]
Kamel, Margrit [2 ]
Silva, Luis Delgadillo [2 ]
Spanjaard, Bastiaan [3 ]
Eski, Sema Elif [1 ]
Janjuha, Sharan [4 ]
Olivares-Chauvet, Pedro [3 ]
Kayisoglu, Oezge [5 ]
Rost, Fabian [2 ,6 ]
Blaesche, Juliane [6 ]
Kraenkel, Annekathrin [6 ]
Petzold, Andreas [6 ]
Kurth, Thomas [7 ]
Reinhardt, Susanne [6 ]
Junker, Jan Philipp [3 ]
Ninov, Nikolay [2 ,8 ,9 ]
机构
[1] Univ Libre Bruxelles ULB, IRIBHM, B-1070 Brussels, Belgium
[2] Tech Univ Dresden, Ctr Regenerat Therapies Dresden, D-01307 Dresden, Germany
[3] Max Delbruck Ctr Mol Med, Berlin Inst Med Syst Biol, D-10115 Berlin, Germany
[4] Univ Zurich, Inst Pharmacol & Toxicol, CH-8057 Zurich, Switzerland
[5] Julius Maximilian Univ Wurzburg, D-97070 Wurzburg, Germany
[6] Tech Univ Dresden, DRESDEN Concept Genome Ctr, DFG NGS Competence Ctr, Ctr Mol & Cellular Bioengn CMCB, D-01307 Dresden, Germany
[7] Tech Univ Dresden, Ctr Mol & Cellular Bioengn CMCB, TUD, Technol Platform,EM Facil, D-01307 Dresden, Germany
[8] Tech Univ Dresden, Paul Langerhans Inst Dresden, Helmholt Zentrum Munchen, Univ Hosp, D-01307 Dresden, Germany
[9] Tech Univ Dresden, Fac Med Carl Gustav Carus, D-01307 Dresden, Germany
来源
DEVELOPMENT | 2022年 / 149卷 / 02期
基金
欧洲研究理事会;
关键词
Beta-cell; Insulin; Pancreas; Regeneration; Single cell; Zebrafish; Gamma-cell; Cell fate; Cell plasticity; Diabetes; TRANSGENIC ZEBRAFISH; PANCREATIC-ISLETS; EXPRESSION; INSULIN; FATE; DIFFERENTIATION; GENERATION; PROGENITOR; CONVERSION; PROTEINS;
D O I
10.1242/dev.199853
中图分类号
Q [生物科学];
学科分类号
07 ; 0710 ; 09 ;
摘要
Regeneration-competent species possess the ability to reverse the progression of severe diseases by restoring the function of the damaged tissue. However, the cellular dynamics underlying this capability remain unexplored. Here, we have used single-cell transcriptomics to map de novo beta-cell regeneration during induction and recovery from diabetes in zebrafish. We show that the zebrafish has evolved two distinct types of somatostatin-producing delta-cells, which we term delta 1- and delta 2-cells. Moreover, we characterize a small population of glucose-responsive islet cells, which share the hormones and fate-determinants of both beta-and delta 1-cells. The transcriptomic analysis of beta-cell regeneration reveals that beta/delta hybrid cells provide a prominent source of insulin expression during diabetes recovery. Using in vivo calcium imaging and cell tracking, we further show that the hybrid cells form de novo and acquire glucose-responsiveness in the course of regeneration. The overexpression of dkk3, a gene enriched in hybrid cells, increases their formation in the absence of beta-cell injury. Finally, interspecies comparison shows that plastic delta 1-cells are partially related to PP cells in the human pancreas. Our work provides an atlas of beta-cell regeneration and indicates that the rapid formation of glucoseresponsive hybrid cells contributes to the resolution of diabetes in zebrafish
引用
收藏
页数:17
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