Literature DB >> 16987869

Cadherin is required for dendritic morphogenesis and synaptic terminal organization of retinal horizontal cells.

Koji Tanabe1, Yoshiko Takahashi, Yuki Sato, Koichi Kawakami, Masatoshi Takeichi, Shinichi Nakagawa.   

Abstract

Dendrite morphology of neurons provides a structural basis for their physiological characteristics, and is precisely regulated in a cell type-dependent manner. Using a unique transposon-mediated gene transfer system that enables conditional and cell-type specific expression of exogenous genes, we investigated the role of cadherin on dendritic morphogenesis of horizontal cells in the developing chicken retina. We first visualized single horizontal cells by overexpressing membrane-targeted EGFP, and confirmed that there were three subtypes of horizontal cells, the dendritic terminals of which projected to distinct synaptic sites in the outer plexiform layer. Expression of a dominant-negative cadherin decreased the dendritic field size, and perturbed the termination of dendritic processes onto the photoreceptor cells. The cadherin blockade also impaired the accumulation of GluR4, a postsynaptic marker, at the cone pedicles. We thus provide in vivo evidence that cadherin is required for dendrite morphogenesis of horizontal cells and subsequent synapse formation with photoreceptor cells in the vertebrate retina.

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Year:  2006        PMID: 16987869     DOI: 10.1242/dev.02566

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


  28 in total

1.  Identification of a retina-specific Otx2 enhancer element active in immature developing photoreceptors.

Authors:  Mark M Emerson; Constance L Cepko
Journal:  Dev Biol       Date:  2011-09-21       Impact factor: 3.582

2.  Alternative splicing of neuroligin and its protein distribution in the outer plexiform layer of the chicken retina.

Authors:  Karl J Wahlin; Laszlo Hackler; Ruben Adler; Donald J Zack
Journal:  J Comp Neurol       Date:  2010-12-15       Impact factor: 3.215

3.  Retinal progenitor cells can produce restricted subsets of horizontal cells.

Authors:  S B Rompani; C L Cepko
Journal:  Proc Natl Acad Sci U S A       Date:  2007-12-27       Impact factor: 11.205

Review 4.  Regulation of dendrite and spine morphogenesis and plasticity by catenins.

Authors:  Jyothi Arikkath
Journal:  Mol Neurobiol       Date:  2009-04-29       Impact factor: 5.590

Review 5.  Cell adhesion, the backbone of the synapse: "vertebrate" and "invertebrate" perspectives.

Authors:  Nikolaos Giagtzoglou; Cindy V Ly; Hugo J Bellen
Journal:  Cold Spring Harb Perspect Biol       Date:  2009-10       Impact factor: 10.005

6.  Somal positioning and dendritic growth of horizontal cells are regulated by interactions with homotypic neighbors.

Authors:  Ross A Poché; Mary A Raven; Kin Ming Kwan; Yasuhide Furuta; Richard R Behringer; Benjamin E Reese
Journal:  Eur J Neurosci       Date:  2008-04       Impact factor: 3.386

Review 7.  Design principles of insect and vertebrate visual systems.

Authors:  Joshua R Sanes; S Lawrence Zipursky
Journal:  Neuron       Date:  2010-04-15       Impact factor: 17.173

8.  PiggyBac transgenic strategies in the developing chicken spinal cord.

Authors:  Yanyan Lu; Chengyi Lin; Xiaozhong Wang
Journal:  Nucleic Acids Res       Date:  2009-11       Impact factor: 16.971

Review 9.  Cadherins and catenins at synapses: roles in synaptogenesis and synaptic plasticity.

Authors:  Jyothi Arikkath; Louis F Reichardt
Journal:  Trends Neurosci       Date:  2008-08-04       Impact factor: 13.837

10.  Cadherin-8 and N-cadherin differentially regulate pre- and postsynaptic development of the hippocampal mossy fiber pathway.

Authors:  Iddil H Bekirov; Vanja Nagy; Alexandra Svoronos; George W Huntley; Deanna L Benson
Journal:  Hippocampus       Date:  2008       Impact factor: 3.899

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