Nkx2.2 and Arx genetically interact to regulate pancreatic endocrine cell development and endocrine hormone expression

被引:38
|
作者
Mastracci, Teresa L. [2 ]
Wilcox, Crystal L. [1 ]
Arnes, Luis [2 ]
Panea, Casandra [2 ]
Golden, Jeffrey A. [1 ]
May, Catherine Lee [1 ]
Sussel, Lori [2 ]
机构
[1] Childrens Hosp Philadelphia, Dept Pathol & Lab Med, Philadelphia, PA 19104 USA
[2] Columbia Univ, Dept Genet & Dev, New York, NY 10032 USA
关键词
Nkx2.2; Arx; Transcriptional regulation; Endocrine cell fate; Ghrelin; PP; Somatostatin; ALPHA-CELL; FATE SPECIFICATION; PROGENITOR CELLS; BETA-CELLS; DIFFERENTIATION; ENDODERM; LINEAGES; GHRELIN; PAX4; IDENTIFICATION;
D O I
10.1016/j.ydbio.2011.08.001
中图分类号
Q [生物科学];
学科分类号
07 ; 0710 ; 09 ;
摘要
Nkx2.2 and Arx are essential pancreatic transcription factors. Nkx2.2 is necessary for the appropriate specification of the islet alpha, beta, PP and epsilon cell lineages, whereas Arx is required to form the correct ratio of alpha, beta, delta and PP cells. To begin to understand the cooperative functions of Nkx2.2 and Arx in the development of endocrine cell lineages, we generated progenitor cell-specific deletions of Arx on the Nkx2.2 null background. The analysis of these mutants demonstrates that expansion of the ghrelin cell population in the Nkx2.2 null pancreas is not dependent on Arx; however, Arx is necessary for the upregulation of ghrelin mRNA levels in Nkx2.2 mutant epsilon cells. Alternatively, in the absence of Arx, delta cell numbers are increased and Nkx2.2 becomes essential for the repression of somatostatin gene expression. Interestingly, the dysregulation of ghrelin and somatostatin expression in the Nkx2.2/Arx compound mutant (Nkx2.2(null);Arx(Delta panc)) results in the appearance of ghrelin+/somatostatin+ co-expressing cells. These compound mutants also revealed a genetic interaction between Nloc2.2 and Arx in the regulation of the PP cell lineage; the PP cell population is reduced when Nkx2.2 is deleted but is restored back to wildtype numbers in the Nkx2.2(null);Arx(Delta panc) mutant. Moreover, conditional deletion of Arx in specific pancreatic cell populations established that the functions of Arx are necessary in the Neurog3+ endocrine progenitors. Together, these experiments identify novel genetic interactions between Nkx2.2 and Arx within the endocrine progenitor cells that ensure the correct specification and regulation of endocrine hormone-producing cells. (C) 2011 Elsevier Inc. All rights reserved.
引用
收藏
页码:1 / 11
页数:11
相关论文
共 28 条
  • [21] Protocol development to further differentiate and transition stem cell-derived pancreatic progenitors from a monolayer into endocrine cells in suspension culture
    Braam, Mitchell J. S.
    Zhao, Jia
    Liang, Shenghui
    Ida, Shogo
    Kloostra, Nick K. K.
    Iworima, Diepiriye G. G.
    Tang, Mei
    Baker, Robert K. K.
    Quiskamp, Nina
    Piret, James M. M.
    Kieffer, Timothy J. J.
    SCIENTIFIC REPORTS, 2023, 13 (01)
  • [22] PAX4 loss of function increases diabetes risk by altering human pancreatic endocrine cell development
    Lau, Hwee Hui
    Krentz, Nicole A. J.
    Abaitua, Fernando
    Perez-Alcantara, Marta
    Chan, Jun-Wei
    Ajeian, Jila
    Ghosh, Soumita
    Lee, Yunkyeong
    Yang, Jing
    Thaman, Swaraj
    Champon, Benoite
    Sun, Han
    Jha, Alokkumar
    Hoon, Shawn
    Tan, Nguan Soon
    Gardner, Daphne Su-Lyn
    Kao, Shih Ling
    Tai, E. Shyong
    Gloyn, Anna L.
    Teo, Adrian Kee Keong
    NATURE COMMUNICATIONS, 2023, 14 (01)
  • [23] Initial Cell Seeding Density Influences Pancreatic Endocrine Development During in vitro Differentiation of Human Embryonic Stem Cells
    Gage, Blair K.
    Webber, Travis D.
    Kieffer, Timothy J.
    PLOS ONE, 2013, 8 (12):
  • [24] LSD1-mediated enhancer silencing attenuates retinoic acid signalling during pancreatic endocrine cell development
    Vinckier, Nicholas K.
    Pate, Nisha A.
    Geusz, Ryan J.
    Wang, Allen
    Wang, Jinzhao
    Matta, Ileana
    Harrington, Austin R.
    Wortham, Matthew
    Wetton, Nichole
    Wang, Jianxun
    Jhala, Ulupi S.
    Rosenfeld, Michael G.
    Benner, Christopher W.
    Shih, Hung-Ping
    Sander, Maike
    NATURE COMMUNICATIONS, 2020, 11 (01)
  • [25] Loss of RREB1 in pancreatic beta cells reduces cellular insulin content and affects endocrine cell gene expression
    Mattis, Katia K.
    Krentz, Nicole A. J.
    Metzendorf, Christoph
    Abaitua, Fernando
    Spigelman, Aliya F.
    Sun, Han
    Ikle, Jennifer M.
    Thaman, Swaraj
    Rottner, Antje K.
    Bautista, Austin
    Mazzaferro, Eugenia
    Perez-Alcantara, Marta
    Fox, Jocelyn E. Manning E.
    Torres, Jason M.
    Wesolowska-Andersen, Agata
    Yu, Grace Z. Z.
    Mahajan, Anubha
    Larsson, Anders
    MacDonald, Patrick E.
    Davies, Benjamin
    den Hoed, Marcel
    Gloyn, Anna L.
    DIABETOLOGIA, 2023, 66 (04) : 674 - 694
  • [26] Loss of RREB1 in pancreatic beta cells reduces cellular insulin content and affects endocrine cell gene expression
    Katia K. Mattis
    Nicole A. J. Krentz
    Christoph Metzendorf
    Fernando Abaitua
    Aliya F. Spigelman
    Han Sun
    Jennifer M. Ikle
    Swaraj Thaman
    Antje K. Rottner
    Austin Bautista
    Eugenia Mazzaferro
    Marta Perez-Alcantara
    Jocelyn E. Manning Fox
    Jason M. Torres
    Agata Wesolowska-Andersen
    Grace Z. Yu
    Anubha Mahajan
    Anders Larsson
    Patrick E. MacDonald
    Benjamin Davies
    Marcel den Hoed
    Anna L. Gloyn
    Diabetologia, 2023, 66 : 674 - 694
  • [27] Small-molecule inhibitors of the cystic fibrosis transmembrane conductance regulator increase pancreatic endocrine cell development in rat and mouse
    S. Zertal-Zidani
    K. Busiah
    A. Edelman
    M. Polak
    R. Scharfmann
    Diabetologia, 2013, 56 : 330 - 339
  • [28] Insm1, Neurod1, and Pax6 promote murine pancreatic endocrine cell development through overlapping yet distinct RNA transcription and splicing programs
    Dudek, Karrie D.
    Osipovich, Anna B.
    Cartailler, Jean-Philippe
    Gu, Guoquing
    Magnuson, Mark A.
    G3-GENES GENOMES GENETICS, 2021, 11 (11):