Ascl1b and Neurod1, instead of Neurog3, control pancreatic endocrine cell fate in zebrafish

被引:32
|
作者
Flasse, Lydie C. [1 ]
Pirson, Justine L. [1 ]
Stern, David G. [1 ]
Von Berg, Virginie [1 ]
Manfroid, Isabelle [1 ]
Peers, Bernard [1 ]
Voz, Marianne L. [1 ]
机构
[1] Univ Liege ULg, Lab Zebrafish Dev & Dis Models, B-4000 Liege, Belgium
来源
BMC BIOLOGY | 2013年 / 11卷
关键词
Pancreas; Endocrine; Zebrafish; Ascl1b; Neurod1; Neurog3; HORMONE-EXPRESSING CELLS; PRONEURAL GENE; LATERAL INHIBITION; BETA-CELLS; DIFFERENTIATION; ISLET; NOTCH; SPECIFICATION; LOOP; NEUROGENESIS;
D O I
10.1186/1741-7007-11-78
中图分类号
Q [生物科学];
学科分类号
07 ; 0710 ; 09 ;
摘要
Background: NEUROG3 is a key regulator of pancreatic endocrine cell differentiation in mouse, essential for the generation of all mature hormone producing cells. It is repressed by Notch signaling that prevents pancreatic cell differentiation by maintaining precursors in an undifferentiated state. Results: We show that, in zebrafish, neurog3 is not expressed in the pancreas and null neurog3 mutant embryos do not display any apparent endocrine defects. The control of endocrine cell fate is instead fulfilled by two basic helix-loop-helix factors, Ascl1b and Neurod1, that are both repressed by Notch signaling. ascl1b is transiently expressed in the mid-trunk endoderm just after gastrulation and is required for the generation of the first pancreatic endocrine precursor cells. Neurod1 is expressed afterwards in the pancreatic anlagen and pursues the endocrine cell differentiation program initiated by Ascl1b. Their complementary role in endocrine differentiation of the dorsal bud is demonstrated by the loss of all hormone-secreting cells following their simultaneous inactivation. This defect is due to a blockage of the initiation of endocrine cell differentiation. Conclusions: This study demonstrates that NEUROG3 is not the unique pancreatic endocrine cell fate determinant in vertebrates. A general survey of endocrine cell fate determinants in the whole digestive system among vertebrates indicates that they all belong to the ARP/ASCL family but not necessarily to the Neurog3 subfamily. The identity of the ARP/ASCL factor involved depends not only on the organ but also on the species. One could, therefore, consider differentiating stem cells into insulin-producing cells without the involvement of NEUROG3 but via another ARP/ASCL factor.
引用
收藏
页数:18
相关论文
共 34 条
  • [1] Ascl1b and Neurod1, instead of Neurog3, control pancreatic endocrine cell fate in zebrafish
    Lydie C Flasse
    Justine L Pirson
    David G Stern
    Virginie Von Berg
    Isabelle Manfroid
    Bernard Peers
    Marianne L Voz
    BMC Biology, 11
  • [2] NEUROD1 reinforces endocrine cell fate acquisition in pancreatic development
    Bohuslavova, Romana
    Fabriciova, Valeria
    Smolik, Ondrej
    Lebron-Mora, Laura
    Abaffy, Pavel
    Benesova, Sarka
    Zucha, Daniel
    Valihrach, Lukas
    Berkova, Zuzana
    Saudek, Frantisek
    Pavlinkova, Gabriela
    NATURE COMMUNICATIONS, 2023, 14 (01)
  • [3] Phosphorylation of NEUROG3 Links Endocrine Differentiation to the Cell Cycle in Pancreatic Progenitors
    Krentz, Nicole A. J.
    van Hoof, Dennis
    Li, Zhongmei
    Watanabe, Akie
    Tang, Mei
    Nian, Cuilan
    German, Michael S.
    Lynn, Francis C.
    DEVELOPMENTAL CELL, 2017, 41 (02) : 129 - +
  • [4] Valproic acid silencing of ascl1b/Ascl1 results in the failure of serotonergic differentiation in a zebrafish model of fetal valproate syndrome
    Jacob, John
    Ribes, Vanessa
    Moore, Steven
    Constable, Sean C.
    Sasai, Noriaki
    Gerety, Sebastian S.
    Martin, Darren J.
    Sergeant, Chris P.
    Wilkinson, David G.
    Briscoe, James
    DISEASE MODELS & MECHANISMS, 2014, 7 (01) : 107 - 117
  • [5] The proneural factors Ascl1a and Ascl1b contribute to the terminal differentiation of dopaminergic GABAergic dual transmitter neurons in zebrafish
    Altbuerger, Christian
    Rath, Meta
    Wehrle, Johanna
    Driever, Wolfgang
    DEVELOPMENTAL BIOLOGY, 2024, 505 : 58 - 74
  • [6] Identification of an evolutionarily conserved domain in Neurod1 favouring enteroendocrine versus goblet cell fate
    Reuter, Anne Sophie
    Stern, David
    Bernard, Alice
    Goossens, Chiara
    Lavergne, Arnaud
    Flasse, Lydie
    Von Berg, Virginie
    Manfroid, Isabelle
    Peers, Bernard
    Voz, Marianne L.
    PLOS GENETICS, 2022, 18 (03):
  • [7] NEUROD1: transcriptional and epigenetic regulator of human and mouse neuronal and endocrine cell lineage programs
    Pavlinkova, Gabriela
    Smolik, Ondrej
    FRONTIERS IN CELL AND DEVELOPMENTAL BIOLOGY, 2024, 12
  • [8] Regulation of Neurod1 Contributes to the Lineage Potential of Neurogenin3+ Endocrine Precursor Cells in the Pancreas
    Mastracci, Teresa L.
    Anderson, Keith R.
    Papizan, James B.
    Sussel, Lori
    PLOS GENETICS, 2013, 9 (02):
  • [9] ROCK-nmMyoll, Notch and Neurog3 gene-dosage link epithelial morphogenesis with cell fate in the pancreatic endocrine-progenitor niche
    Bankaitis, Eric D.
    Bechard, Matthew E.
    Gu, Guoqiang
    Magnuson, Mark A.
    Wright, Christopher V. E.
    DEVELOPMENT, 2018, 145 (18):
  • [10] Zebrafish mnx1 controls cell fate choice in the developing endocrine pancreas
    Dalgin, Gokhan
    Ward, Andrea B.
    Hao, Le T.
    Beattie, Christine E.
    Nechiporuk, Alexei
    Prince, Victoria E.
    DEVELOPMENT, 2011, 138 (21): : 4597 - 4608