Literature DB >> 16099813

Genetic analysis of early endocrine pancreas formation in zebrafish.

Hyon J Kim1, Saulius Sumanas, Sharina Palencia-Desai, Yuan Dong, Jau-Nien Chen, Shuo Lin.   

Abstract

Endocrine pancreas of zebrafish consist of at least four different cell types that function similarly to mammalian pancreatic islet. No mutants specifically affecting formation of the endocrine pancreas have been identified during the previous large-scale mutagenesis screens in zebrafish due to invisibility of a pancreatic islet. We combined in situ hybridization method to visualize pancreatic islet with an ethyl-nitroso-urea mutagenesis screen to identify novel genes involved in pancreatic islet formation in zebrafish. We screened 900 genomes and identified 11 mutations belonging to nine different complementation groups. These mutants fall into three major phenotypic classes displaying severely reduced insulin expression, reduced insulin expression with abnormal islet morphology, or abnormal islet morphology with relatively normal number of insulin expressing cells. Seven of these mutants do not have any other visible phenotypes associated. These mutations affect different processes in pancreatic islet development. Additional analysis on glucagon and somatostatin cell specification revealed that somatostatin cells are specified at a separate domain from insulin cells whereas glucagon cells are specified adjacent to insulin cells. Furthermore, glucagon cells and somatostatin cells are always associated with insulin cells in mutants that have scattered insulin expression. These data indicate that there are separate mechanisms regulating endocrine cell migration, proliferation, and differentiation. Further study on these mutants will reveal important information on novel genes involved in pancreatic islet cell specification and morphogenesis.

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Year:  2005        PMID: 16099813     DOI: 10.1210/me.2005-0189

Source DB:  PubMed          Journal:  Mol Endocrinol        ISSN: 0888-8809


  11 in total

1.  Improved Tol2-mediated enhancer trap identifies weakly expressed genes during liver and β cell development and regeneration in zebrafish.

Authors:  Yadong Zhong; Wei Huang; Jiang Du; Zekun Wang; Jianbo He; Lingfei Luo
Journal:  J Biol Chem       Date:  2018-11-30       Impact factor: 5.157

2.  Targeted ablation of beta cells in the embryonic zebrafish pancreas using E. coli nitroreductase.

Authors:  Harshan Pisharath; Jerry M Rhee; Michelle A Swanson; Steven D Leach; Michael J Parsons
Journal:  Mech Dev       Date:  2006-12-08       Impact factor: 1.882

3.  Antagonistic interactions of hedgehog, Bmp and retinoic acid signals control zebrafish endocrine pancreas development.

Authors:  Zahra Tehrani; Shuo Lin
Journal:  Development       Date:  2011-01-12       Impact factor: 6.868

4.  Decreased dissolution of ZnO by iron doping yields nanoparticles with reduced toxicity in the rodent lung and zebrafish embryos.

Authors:  Tian Xia; Yan Zhao; Tina Sager; Saji George; Suman Pokhrel; Ning Li; David Schoenfeld; Huan Meng; Sijie Lin; Xiang Wang; Meiying Wang; Zhaoxia Ji; Jeffrey I Zink; Lutz Mädler; Vincent Castranova; Shuo Lin; Andre E Nel
Journal:  ACS Nano       Date:  2011-01-20       Impact factor: 15.881

Review 5.  On the diabetic menu: zebrafish as a model for pancreas development and function.

Authors:  Mary D Kinkel; Victoria E Prince
Journal:  Bioessays       Date:  2009-02       Impact factor: 4.345

6.  Transcriptional profiling of endogenous germ layer precursor cells identifies dusp4 as an essential gene in zebrafish endoderm specification.

Authors:  Jamie L Brown; Mirit Snir; Houtan Noushmehr; Martha Kirby; Sung-Kook Hong; Abdel G Elkahloun; Benjamin Feldman
Journal:  Proc Natl Acad Sci U S A       Date:  2008-08-21       Impact factor: 11.205

Review 7.  Learning to Fish with Genetics: A Primer on the Vertebrate Model Danio rerio.

Authors:  Nathalia G Holtzman; M Kathryn Iovine; Jennifer O Liang; Jacqueline Morris
Journal:  Genetics       Date:  2016-07       Impact factor: 4.562

8.  Zebrafish usp39 mutation leads to rb1 mRNA splicing defect and pituitary lineage expansion.

Authors:  Yesenia Ríos; Shlomo Melmed; Shuo Lin; Ning-Ai Liu
Journal:  PLoS Genet       Date:  2011-01-13       Impact factor: 5.917

9.  Carbonic anhydrase 5 regulates acid-base homeostasis in zebrafish.

Authors:  Ruben Postel; Arnoud Sonnenberg
Journal:  PLoS One       Date:  2012-06-22       Impact factor: 3.240

10.  Targeted inhibition of miRNA maturation with morpholinos reveals a role for miR-375 in pancreatic islet development.

Authors:  Wigard P Kloosterman; Anne K Lagendijk; René F Ketting; Jon D Moulton; Ronald H A Plasterk
Journal:  PLoS Biol       Date:  2007-08       Impact factor: 8.029

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