Cargando…
Single-cell analyses identify distinct and intermediate states of zebrafish pancreatic islet development
Pancreatic endocrine islets are vital for glucose homeostasis. However, the islet developmental trajectory and its regulatory network are not well understood. To define the features of these specification and differentiation processes, we isolated individual islet cells from TgBAC(neurod1:EGFP) tran...
Autores principales: | , , , , , , , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Oxford University Press
2018
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6604604/ https://www.ncbi.nlm.nih.gov/pubmed/30407522 http://dx.doi.org/10.1093/jmcb/mjy064 |
_version_ | 1783431742379524096 |
---|---|
author | Lu, Chong-Jian Fan, Xiao-Ying Guo, Yue-Feng Cheng, Zhen-Chao Dong, Ji Chen, Jin-Zi Li, Lian-Yan Wang, Mei-Wen Wu, Ze-Kai Wang, Fei Tong, Xiang-Jun Luo, Ling-Fei Tang, Fu-Chou Zhu, Zuo-Yan Zhang, Bo |
author_facet | Lu, Chong-Jian Fan, Xiao-Ying Guo, Yue-Feng Cheng, Zhen-Chao Dong, Ji Chen, Jin-Zi Li, Lian-Yan Wang, Mei-Wen Wu, Ze-Kai Wang, Fei Tong, Xiang-Jun Luo, Ling-Fei Tang, Fu-Chou Zhu, Zuo-Yan Zhang, Bo |
author_sort | Lu, Chong-Jian |
collection | PubMed |
description | Pancreatic endocrine islets are vital for glucose homeostasis. However, the islet developmental trajectory and its regulatory network are not well understood. To define the features of these specification and differentiation processes, we isolated individual islet cells from TgBAC(neurod1:EGFP) transgenic zebrafish and analyzed islet developmental dynamics across four different embryonic stages using a single-cell RNA-seq strategy. We identified proliferative endocrine progenitors, which could be further categorized by different cell cycle phases with the G1/S subpopulation displaying a distinct differentiation potential. We identified endocrine precursors, a heterogeneous intermediate-state population consisting of lineage-primed alpha, beta and delta cells that were characterized by the expression of lineage-specific transcription factors and relatively low expression of terminally differentiation markers. The terminally differentiated alpha, beta, and delta cells displayed stage-dependent differentiation states, which were related to their functional maturation. Our data unveiled distinct states, events and molecular features during the islet developmental transition, and provided resources to comprehensively understand the lineage hierarchy of islet development at the single-cell level. |
format | Online Article Text |
id | pubmed-6604604 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2018 |
publisher | Oxford University Press |
record_format | MEDLINE/PubMed |
spelling | pubmed-66046042019-07-08 Single-cell analyses identify distinct and intermediate states of zebrafish pancreatic islet development Lu, Chong-Jian Fan, Xiao-Ying Guo, Yue-Feng Cheng, Zhen-Chao Dong, Ji Chen, Jin-Zi Li, Lian-Yan Wang, Mei-Wen Wu, Ze-Kai Wang, Fei Tong, Xiang-Jun Luo, Ling-Fei Tang, Fu-Chou Zhu, Zuo-Yan Zhang, Bo J Mol Cell Biol Original Article Pancreatic endocrine islets are vital for glucose homeostasis. However, the islet developmental trajectory and its regulatory network are not well understood. To define the features of these specification and differentiation processes, we isolated individual islet cells from TgBAC(neurod1:EGFP) transgenic zebrafish and analyzed islet developmental dynamics across four different embryonic stages using a single-cell RNA-seq strategy. We identified proliferative endocrine progenitors, which could be further categorized by different cell cycle phases with the G1/S subpopulation displaying a distinct differentiation potential. We identified endocrine precursors, a heterogeneous intermediate-state population consisting of lineage-primed alpha, beta and delta cells that were characterized by the expression of lineage-specific transcription factors and relatively low expression of terminally differentiation markers. The terminally differentiated alpha, beta, and delta cells displayed stage-dependent differentiation states, which were related to their functional maturation. Our data unveiled distinct states, events and molecular features during the islet developmental transition, and provided resources to comprehensively understand the lineage hierarchy of islet development at the single-cell level. Oxford University Press 2018-11-08 /pmc/articles/PMC6604604/ /pubmed/30407522 http://dx.doi.org/10.1093/jmcb/mjy064 Text en © The Author(s) (2019). Published by Oxford University Press on behalf of Journal of Molecular Cell Biology, IBCB, SIBS, CAS. http://creativecommons.org/licenses/by-nc/4.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/4.0/), which permits non-commercial re-use, distribution, and reproduction in any medium, provided the original work is properly cited. For commercial re-use, please contact journals.permissions@oup.com |
spellingShingle | Original Article Lu, Chong-Jian Fan, Xiao-Ying Guo, Yue-Feng Cheng, Zhen-Chao Dong, Ji Chen, Jin-Zi Li, Lian-Yan Wang, Mei-Wen Wu, Ze-Kai Wang, Fei Tong, Xiang-Jun Luo, Ling-Fei Tang, Fu-Chou Zhu, Zuo-Yan Zhang, Bo Single-cell analyses identify distinct and intermediate states of zebrafish pancreatic islet development |
title | Single-cell analyses identify distinct and intermediate states of zebrafish pancreatic islet development |
title_full | Single-cell analyses identify distinct and intermediate states of zebrafish pancreatic islet development |
title_fullStr | Single-cell analyses identify distinct and intermediate states of zebrafish pancreatic islet development |
title_full_unstemmed | Single-cell analyses identify distinct and intermediate states of zebrafish pancreatic islet development |
title_short | Single-cell analyses identify distinct and intermediate states of zebrafish pancreatic islet development |
title_sort | single-cell analyses identify distinct and intermediate states of zebrafish pancreatic islet development |
topic | Original Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6604604/ https://www.ncbi.nlm.nih.gov/pubmed/30407522 http://dx.doi.org/10.1093/jmcb/mjy064 |
work_keys_str_mv | AT luchongjian singlecellanalysesidentifydistinctandintermediatestatesofzebrafishpancreaticisletdevelopment AT fanxiaoying singlecellanalysesidentifydistinctandintermediatestatesofzebrafishpancreaticisletdevelopment AT guoyuefeng singlecellanalysesidentifydistinctandintermediatestatesofzebrafishpancreaticisletdevelopment AT chengzhenchao singlecellanalysesidentifydistinctandintermediatestatesofzebrafishpancreaticisletdevelopment AT dongji singlecellanalysesidentifydistinctandintermediatestatesofzebrafishpancreaticisletdevelopment AT chenjinzi singlecellanalysesidentifydistinctandintermediatestatesofzebrafishpancreaticisletdevelopment AT lilianyan singlecellanalysesidentifydistinctandintermediatestatesofzebrafishpancreaticisletdevelopment AT wangmeiwen singlecellanalysesidentifydistinctandintermediatestatesofzebrafishpancreaticisletdevelopment AT wuzekai singlecellanalysesidentifydistinctandintermediatestatesofzebrafishpancreaticisletdevelopment AT wangfei singlecellanalysesidentifydistinctandintermediatestatesofzebrafishpancreaticisletdevelopment AT tongxiangjun singlecellanalysesidentifydistinctandintermediatestatesofzebrafishpancreaticisletdevelopment AT luolingfei singlecellanalysesidentifydistinctandintermediatestatesofzebrafishpancreaticisletdevelopment AT tangfuchou singlecellanalysesidentifydistinctandintermediatestatesofzebrafishpancreaticisletdevelopment AT zhuzuoyan singlecellanalysesidentifydistinctandintermediatestatesofzebrafishpancreaticisletdevelopment AT zhangbo singlecellanalysesidentifydistinctandintermediatestatesofzebrafishpancreaticisletdevelopment |