Literature DB >> 16839543

A screen for mutations in zebrafish that affect myelin gene expression in Schwann cells and oligodendrocytes.

Natalia Kazakova1, Huiliang Li, Ana Mora, Kristjan R Jessen, Rhona Mirsky, William D Richardson, Hazel K Smith.   

Abstract

Myelin is the multi-layered glial sheath around axons in the vertebrate nervous system. Myelinating glia develop and function in intimate association with neurons and neuron-glial interactions control much of the life history of these cells. However, many of the factors that regulate key aspects of myelin development and maintenance remain unknown. To discover new molecules that are important for glial development and myelination, we undertook a screen of zebrafish mutants with previously characterized neural defects. We screened for myelin basic protein (mbp) mRNA by in situ hybridization and identified four mutants (neckless, motionless, iguana and doc) that lacked mbp expression in parts of the peripheral and central nervous systems (PNS or CNS), despite the presence of axons. In all four mutants electron microscopy revealed that myelin-forming glia were present and had formed loose wraps around axons but did not form compact myelin. We found that addition of exogenous retinoic acid (RA) rescued mbp expression in neckless mutant embryos, which lack endogenous RA synthesis. Timed application of the RA synthesis inhibitor DEAB to wild type embryos showed that RA signalling is required at least 48 h before the onset of myelin protein synthesis in both CNS and PNS.

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Year:  2006        PMID: 16839543     DOI: 10.1016/j.ydbio.2006.03.020

Source DB:  PubMed          Journal:  Dev Biol        ISSN: 0012-1606            Impact factor:   3.582


  26 in total

Review 1.  New insights into signaling during myelination in zebrafish.

Authors:  Alya R Raphael; William S Talbot
Journal:  Curr Top Dev Biol       Date:  2011       Impact factor: 4.897

2.  Peripheral axons of the adult zebrafish maxillary barbel extensively remyelinate during sensory appendage regeneration.

Authors:  Alex C Moore; Tiffany E Mark; Ann K Hogan; Jacek Topczewski; Elizabeth E LeClair
Journal:  J Comp Neurol       Date:  2012-12-15       Impact factor: 3.215

3.  Individual axons regulate the myelinating potential of single oligodendrocytes in vivo.

Authors:  Rafael G Almeida; Tim Czopka; Charles Ffrench-Constant; David A Lyons
Journal:  Development       Date:  2011-08-31       Impact factor: 6.868

Review 4.  Pathways regulating modality-specific axonal regeneration in peripheral nerve.

Authors:  Matthew D Wood; Susan E Mackinnon
Journal:  Exp Neurol       Date:  2015-02-11       Impact factor: 5.330

5.  Tissue engineered constructs for peripheral nerve surgery.

Authors:  P J Johnson; M D Wood; A M Moore; S E Mackinnon
Journal:  Eur Surg       Date:  2013-06       Impact factor: 0.953

6.  Myelin structure and composition in zebrafish.

Authors:  Robin L Avila; Brian R Tevlin; Jonathan P B Lees; Hideyo Inouye; Daniel A Kirschner
Journal:  Neurochem Res       Date:  2006-09-02       Impact factor: 3.996

Review 7.  Analysis of myelinated axon formation in zebrafish.

Authors:  M D'Rozario; K R Monk; S C Petersen
Journal:  Methods Cell Biol       Date:  2016-09-29       Impact factor: 1.441

8.  Regulation of neural crest cell fate by the retinoic acid and Pparg signalling pathways.

Authors:  Nan Li; Robert N Kelsh; Peter Croucher; Henry H Roehl
Journal:  Development       Date:  2010-02       Impact factor: 6.868

Review 9.  The scales and tales of myelination: using zebrafish and mouse to study myelinating glia.

Authors:  Sarah D Ackerman; Kelly R Monk
Journal:  Brain Res       Date:  2015-10-20       Impact factor: 3.252

10.  Zebrafish myelination: a transparent model for remyelination?

Authors:  Clare E Buckley; Paul Goldsmith; Robin J M Franklin
Journal:  Dis Model Mech       Date:  2008 Nov-Dec       Impact factor: 5.758

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