Literature DB >> 11744374

Genetic analysis of photoreceptor cell development in the zebrafish retina.

Geoffrey Doerre1, Jarema Malicki.   

Abstract

To gain insight into the genetic mechanisms of photoreceptor development, we analyzed a collection of zebrafish mutations characterized by early photoreceptor cell loss. The mutant defects impair outer segment formation and are accompanied by an abnormal distribution of visual pigments. Rods and different cone types display defects of similar severity suggesting that genetic pathways common to all photoreceptors are affected. To investigate whether these phenotypes involve cell-cell interaction defects, we analyzed genetically mosaic animals. Interaction of niezerka photoreceptors with wild-type tissues improves the survival of mutant cells and restores their elongated morphology. In contrast, cells carrying mutations in the loci brudas, elipsa, fleer, and oval retain their defective phenotypes in a wild-type environment indicating cell-autonomy. These experiments identify distinct phenotypic categories of photoreceptor mutants and indicate that zebrafish photoreceptor defects involve both cell-autonomous and cell-nonautonomous mechanisms.

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Year:  2002        PMID: 11744374     DOI: 10.1016/s0925-4773(01)00571-8

Source DB:  PubMed          Journal:  Mech Dev        ISSN: 0925-4773            Impact factor:   1.882


  34 in total

1.  Retinal defects in the zebrafish bleached mutant.

Authors:  Stephan C F Neuhauss; Mathias W Seeliger; Carsten P Schepp; Oliver Biehlmaier
Journal:  Doc Ophthalmol       Date:  2003-07       Impact factor: 2.379

2.  Kinesin-2 family in vertebrate ciliogenesis.

Authors:  Chengtian Zhao; Yoshihiro Omori; Katarzyna Brodowska; Peter Kovach; Jarema Malicki
Journal:  Proc Natl Acad Sci U S A       Date:  2012-01-30       Impact factor: 11.205

Review 3.  Studying rod photoreceptor development in zebrafish.

Authors:  A C Morris; J M Fadool
Journal:  Physiol Behav       Date:  2005-09-29

4.  The intraflagellar transport protein IFT57 is required for cilia maintenance and regulates IFT-particle-kinesin-II dissociation in vertebrate photoreceptors.

Authors:  Bryan L Krock; Brian D Perkins
Journal:  J Cell Sci       Date:  2008-06-01       Impact factor: 5.285

5.  An alternative isomerohydrolase in the retinal Müller cells of a cone-dominant species.

Authors:  Yusuke Takahashi; Gennadiy Moiseyev; Ying Chen; Olga Nikolaeva; Jian-Xing Ma
Journal:  FEBS J       Date:  2011-07-01       Impact factor: 5.542

6.  A robust procedure for distinctively visualizing zebrafish retinal cell nuclei under bright field light microscopy.

Authors:  Jinling Fu; Wei Fang; Jian Zou; Ming Sun; Kira Lathrop; Guanfang Su; Xiangyun Wei
Journal:  J Histochem Cytochem       Date:  2012-11-30       Impact factor: 2.479

7.  Loss of ift122, a Retrograde Intraflagellar Transport (IFT) Complex Component, Leads to Slow, Progressive Photoreceptor Degeneration Due to Inefficient Opsin Transport.

Authors:  Meriam Boubakri; Taro Chaya; Hiromi Hirata; Naoko Kajimura; Ryusuke Kuwahara; Akiko Ueno; Jarema Malicki; Takahisa Furukawa; Yoshihiro Omori
Journal:  J Biol Chem       Date:  2016-09-28       Impact factor: 5.157

8.  Nephrocystins and MKS proteins interact with IFT particle and facilitate transport of selected ciliary cargos.

Authors:  Chengtian Zhao; Jarema Malicki
Journal:  EMBO J       Date:  2011-05-20       Impact factor: 11.598

9.  Zebrafish ift57, ift88, and ift172 intraflagellar transport mutants disrupt cilia but do not affect hedgehog signaling.

Authors:  Shannon C Lunt; Tony Haynes; Brian D Perkins
Journal:  Dev Dyn       Date:  2009-07       Impact factor: 3.780

Review 10.  Zebrafish: a model system for the study of eye genetics.

Authors:  James M Fadool; John E Dowling
Journal:  Prog Retin Eye Res       Date:  2007-09-07       Impact factor: 21.198

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