Literature DB >> 28018056

Onecut transcription factors in development and disease.

Peter A Kropp1, Maureen Gannon2.   

Abstract

Developmental processes are remarkably well conserved among species, and among the most highly conserved developmental regulators are transcription factor families. The Onecut transcription factor family consists of three members known for their single "cut" DNA-binding domain and an aberrant homeodomain. The three members of the Onecut family are highly conserved from Drosophila to humans and have significant roles in regulating the development of diverse tissues derived from the ectoderm or endoderm, where they activate a number of gene families. Of note, the genetic interaction between Onecut family members and Neurogenin genes appears to be essential in multiple tissues for proper specification and development of unique cell types. This review highlights the importance of the Onecut factors in cell fate specification and organogenesis, highlighting their role in vertebrates, and discusses their role in the maintenance of cell fate and prevention of disease. We cover the essential spatial and temporal control of Onecut factor expression and how this tight regulation is required for proper specification and subsequent terminal differentiation of multiple tissue types including those within the retina, central nervous system, liver and pancreas. Beyond development, Onecut factors perform necessary functions in mature cell types; their misregulation can contribute to diseases such as pancreatic cancer. Given the importance of this family of transcription factors in development and disease, their consideration in essential transcription factor networks is underappreciated.

Entities:  

Keywords:  liver; nervous system; onecut; pancreas; transcription factor

Year:  2016        PMID: 28018056      PMCID: PMC5176019     

Source DB:  PubMed          Journal:  Trends Dev Biol        ISSN: 0972-8422


  105 in total

1.  Onecut 1 and Onecut 2 are potential regulators of mouse retinal development.

Authors:  Fuguo Wu; Darshan Sapkota; Renzhong Li; Xiuqian Mu
Journal:  J Comp Neurol       Date:  2012-04-01       Impact factor: 3.215

Review 2.  How to make a mesodiencephalic dopaminergic neuron.

Authors:  Marten P Smidt; J Peter H Burbach
Journal:  Nat Rev Neurosci       Date:  2007-01       Impact factor: 34.870

3.  Activin, BMP and FGF pathways cooperate to promote endoderm and pancreatic lineage cell differentiation from human embryonic stem cells.

Authors:  Xiaofang Xu; Victoria L Browning; Jon S Odorico
Journal:  Mech Dev       Date:  2011-08-10       Impact factor: 1.882

4.  Increased expression of hepatocyte nuclear factor 6 stimulates hepatocyte proliferation during mouse liver regeneration.

Authors:  Yongjun Tan; Yuichi Yoshida; Douglas E Hughes; Robert H Costa
Journal:  Gastroenterology       Date:  2006-04       Impact factor: 22.682

5.  Epithelial expression of angiogenic growth factors modulate arterial vasculogenesis in human liver development.

Authors:  Luca Fabris; Massimiliano Cadamuro; Louis Libbrecht; Peggy Raynaud; Carlo Spirlì; Romina Fiorotto; Lajos Okolicsanyi; Frederic Lemaigre; Mario Strazzabosco; Tania Roskams
Journal:  Hepatology       Date:  2008-02       Impact factor: 17.425

6.  Retrograde BMP signaling regulates trigeminal sensory neuron identities and the formation of precise face maps.

Authors:  Liberty K Hodge; Matthew P Klassen; Bao-Xia Han; Glenn Yiu; Joanna Hurrell; Audrey Howell; Guy Rousseau; Frederic Lemaigre; Marc Tessier-Lavigne; Fan Wang
Journal:  Neuron       Date:  2007-08-16       Impact factor: 17.173

7.  The transcription factor hepatocyte nuclear factor-6 controls the development of pancreatic ducts in the mouse.

Authors:  Christophe E Pierreux; Aurélie V Poll; Caroline R Kemp; Frédéric Clotman; Miguel A Maestro; Sabine Cordi; Jorge Ferrer; Luc Leyns; Guy G Rousseau; Frédéric P Lemaigre
Journal:  Gastroenterology       Date:  2006-02       Impact factor: 22.682

8.  Regulated expression of pdx-1 promotes in vitro differentiation of insulin-producing cells from embryonic stem cells.

Authors:  Satsuki Miyazaki; Eiji Yamato; Jun-ichi Miyazaki
Journal:  Diabetes       Date:  2004-04       Impact factor: 9.461

9.  The Onecut transcription factors HNF-6/OC-1 and OC-2 regulate early liver expansion by controlling hepatoblast migration.

Authors:  Sabrina Margagliotti; Frédéric Clotman; Christophe E Pierreux; Jean-Bernard Beaudry; Patrick Jacquemin; Guy G Rousseau; Frédéric P Lemaigre
Journal:  Dev Biol       Date:  2007-09-16       Impact factor: 3.582

10.  Loss of HNF6 expression correlates with human pancreatic cancer progression.

Authors:  Kelly R Pekala; Xidi Ma; Peter A Kropp; Christine P Petersen; Courtney W Hudgens; Christine H Chung; Chanjuan Shi; Nipun B Merchant; Anirban Maitra; Anna L Means; Maureen A Gannon
Journal:  Lab Invest       Date:  2014-03-17       Impact factor: 5.662

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  13 in total

1.  Impact and Evolutionary Determinants of Neanderthal Introgression on Transcriptional and Post-Transcriptional Regulation.

Authors:  Martin Silvert; Lluis Quintana-Murci; Maxime Rotival
Journal:  Am J Hum Genet       Date:  2019-05-30       Impact factor: 11.025

2.  The ModERN Resource: Genome-Wide Binding Profiles for Hundreds of Drosophila and Caenorhabditis elegans Transcription Factors.

Authors:  Michelle M Kudron; Alec Victorsen; Louis Gevirtzman; LaDeana W Hillier; William W Fisher; Dionne Vafeados; Matt Kirkey; Ann S Hammonds; Jeffery Gersch; Haneen Ammouri; Martha L Wall; Jennifer Moran; David Steffen; Matt Szynkarek; Samantha Seabrook-Sturgis; Nader Jameel; Madhura Kadaba; Jaeda Patton; Robert Terrell; Mitch Corson; Timothy J Durham; Soo Park; Swapna Samanta; Mei Han; Jinrui Xu; Koon-Kiu Yan; Susan E Celniker; Kevin P White; Lijia Ma; Mark Gerstein; Valerie Reinke; Robert H Waterston
Journal:  Genetics       Date:  2017-12-28       Impact factor: 4.562

Review 3.  Liver and Pancreas: Do Similar Embryonic Development and Tissue Organization Lead to Similar Mechanisms of Tumorigenesis?

Authors:  Elsa Ghurburrun; Ivan Borbath; Frédéric P Lemaigre; Patrick Jacquemin
Journal:  Gene Expr       Date:  2018-03-26

4.  Integrated in silico analysis of LRP2 mutations to immunotherapy efficacy in pan-cancer cohort.

Authors:  Chunbo Li; Yan Ding; Xuyin Zhang; Keqin Hua
Journal:  Discov Oncol       Date:  2022-07-14

5.  Robust regulatory architecture of pan-neuronal gene expression.

Authors:  Eduardo Leyva-Díaz; Oliver Hobert
Journal:  Curr Biol       Date:  2022-03-07       Impact factor: 10.900

6.  Transcriptional profiling reveals gland-specific differential expression in the three major salivary glands of the adult mouse.

Authors:  Xin Gao; Maria S Oei; Catherine E Ovitt; Murat Sincan; James E Melvin
Journal:  Physiol Genomics       Date:  2018-01-26       Impact factor: 3.107

7.  Identification of miRNA-mRNA-TFs Regulatory Network and Crucial Pathways Involved in Tetralogy of Fallot.

Authors:  Guoling You; Bailing Zu; Bo Wang; Qihua Fu; Fen Li
Journal:  Front Genet       Date:  2020-06-12       Impact factor: 4.599

8.  Multimodal action of ONECUT2 in driving neuroendocrine prostate cancer.

Authors:  Salma Kaochar; Nicholas Mitsiades
Journal:  Transl Cancer Res       Date:  2019-03       Impact factor: 1.241

9.  Single-cell analysis of Schistosoma mansoni identifies a conserved genetic program controlling germline stem cell fate.

Authors:  Dania Nanes Sarfati; Yuan Xue; Pengyang Li; Xi Yu; Alexander J Tarashansky; Stephen R Quake; Bo Wang
Journal:  Nat Commun       Date:  2021-01-20       Impact factor: 14.919

10.  Chemotherapy-Induced Extracellular Vesicle miRNAs Promote Breast Cancer Stemness by Targeting ONECUT2.

Authors:  Meng Shen; Chuan Dong; Xianhui Ruan; Wei Yan; Minghui Cao; Donald Pizzo; Xiwei Wu; Lin Yang; Liang Liu; Xiubao Ren; Shizhen Emily Wang
Journal:  Cancer Res       Date:  2019-05-22       Impact factor: 12.701

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