Literature DB >> 23578930

A novel role for Pax6 in the segmental organization of the hindbrain.

Galya Kayam1, Ayelet Kohl, Zohar Magen, Yuval Peretz, Karen Weisinger, Avi Bar, Orna Novikov, Claude Brodski, Dalit Sela-Donenfeld.   

Abstract

Complex patterns and networks of genes coordinate rhombomeric identities, hindbrain segmentation and neuronal differentiation and are responsible for later brainstem functions. Pax6 is a highly conserved transcription factor crucial for neuronal development, yet little is known regarding its early roles during hindbrain segmentation. We show that Pax6 expression is highly dynamic in rhombomeres, suggesting an early function in the hindbrain. Utilization of multiple gain- and loss-of-function approaches in chick and mice revealed that loss of Pax6 disrupts the sharp expression borders of Krox20, Kreisler, Hoxa2, Hoxb1 and EphA and leads to their expansion into adjacent territories, whereas excess Pax6 reduces these expression domains. A mutual negative cross-talk between Pax6 and Krox20 allows these genes to be co-expressed in the hindbrain through regulation of the Krox20-repressor gene Nab1 by Pax6. Rhombomere boundaries are also distorted upon Pax6 manipulations, suggesting a mechanism by which Pax6 acts to set hindbrain segmentation. Finally, FGF signaling acts upstream of the Pax6-Krox20 network to regulate Pax6 segmental expression. This study unravels a novel role for Pax6 in the segmental organization of the early hindbrain and provides new evidence for its significance in regional organization along the central nervous system.

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Year:  2013        PMID: 23578930     DOI: 10.1242/dev.089136

Source DB:  PubMed          Journal:  Development        ISSN: 0950-1991            Impact factor:   6.868


  14 in total

Review 1.  The gene regulatory networks underlying formation of the auditory hindbrain.

Authors:  Marc A Willaredt; Tina Schlüter; Hans Gerd Nothwang
Journal:  Cell Mol Life Sci       Date:  2014-10-21       Impact factor: 9.261

Review 2.  Hindbrain induction and patterning during early vertebrate development.

Authors:  Dale Frank; Dalit Sela-Donenfeld
Journal:  Cell Mol Life Sci       Date:  2018-12-05       Impact factor: 9.261

3.  Inhibitory effect of dihydroartemisinin on chondrogenic and hypertrophic differentiation of mesenchymal stem cells.

Authors:  Zhen Cao; Chuan Liu; Yun Bai; Ce Dou; Jian-Mei Li; Duo-Wei Shi; Shi-Wu Dong; Qiang Xiang
Journal:  Am J Transl Res       Date:  2017-06-15       Impact factor: 4.060

4.  Temporal-specific roles of fragile X mental retardation protein in the development of the hindbrain auditory circuit.

Authors:  Xiaoyu Wang; Ayelet Kohl; Xiaoyan Yu; Diego A R Zorio; Avihu Klar; Dalit Sela-Donenfeld; Yuan Wang
Journal:  Development       Date:  2020-08-25       Impact factor: 6.862

5.  Conserved localization of Pax6 and Pax7 transcripts in the brain of representatives of sarcopterygian vertebrates during development supports homologous brain regionalization.

Authors:  Nerea Moreno; Alberto Joven; Ruth Morona; Sandra Bandín; Jesús M López; Agustín González
Journal:  Front Neuroanat       Date:  2014-08-06       Impact factor: 3.856

6.  A new role of hindbrain boundaries as pools of neural stem/progenitor cells regulated by Sox2.

Authors:  Yuval Peretz; Noa Eren; Ayelet Kohl; Gideon Hen; Karina Yaniv; Karen Weisinger; Yuval Cinnamon; Dalit Sela-Donenfeld
Journal:  BMC Biol       Date:  2016-07-08       Impact factor: 7.431

7.  The Mouse Hindbrain As a Model for Studying Embryonic Neurogenesis.

Authors:  Mathew Tata; Christiana Ruhrberg
Journal:  J Vis Exp       Date:  2018-01-29       Impact factor: 1.355

Review 8.  Establishing sharp and homogeneous segments in the hindbrain.

Authors:  David G Wilkinson
Journal:  F1000Res       Date:  2018-08-13

9.  Hox proteins drive cell segregation and non-autonomous apical remodelling during hindbrain segmentation.

Authors:  Fabrice Prin; Patricia Serpente; Nobue Itasaki; Alex P Gould
Journal:  Development       Date:  2014-02-26       Impact factor: 6.868

10.  β1-Integrin Deletion From the Lens Activates Cellular Stress Responses Leading to Apoptosis and Fibrosis.

Authors:  Yichen Wang; Anne M Terrell; Brittany A Riggio; Deepti Anand; Salil A Lachke; Melinda K Duncan
Journal:  Invest Ophthalmol Vis Sci       Date:  2017-08-01       Impact factor: 4.799

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