Literature DB >> 2464408

Differential splicing of MAG transcripts during CNS and PNS development.

M B Tropak1, P W Johnson, R J Dunn, J C Roder.   

Abstract

Myelin-associated glycoprotein (MAG) is expressed on the surface of glial cells and is thought to act as a glial-neuronal adhesion molecule during early stages in the myelination process. Sequencing of several cDNA clones predicted the existence of two classes of MAG mRNAs which differ in the presence or absence of a 45 nucleotide insert near the 3' end. These two mRNAs are sufficient to encode the two MAG proteins previously described (p67MAG and p72MAG) and show that they differ only in their carboxyl terminal regions. The results of RNAse protection experiments reported here confirm the existence of two mRNAs for MAG which arise by alternative splicing of exon 12, as shown by Lai et al. Our results show that the p72MAG mRNA is expressed during the time of active myelin formation in the CNS, reaching a peak by post-natal day 22 and thereafter declining to adult levels by day 62. Conversely, p67MAG mRNA is produced as the minor species during myelin formation, but becomes the predominant form in adult brain. Cultures of oligodendrocytes express both forms of MAG. In the PNS, mRNA coding for p67MAG is predominant throughout development, reaching peak levels at day 6-10, whereas p72MAG mRNA is a very minor species. Alternative splicing also occurs at the 5' terminus. One form of mRNA lacking exon 2 from the 5' non-coding region is predominant in PNS, whereas mRNA containing exon 2 predominates in the CNS. Therefore, at least two and possibly four different mRNA species encode MAG. These results confirm the hypothesis that the two forms of MAG (p67 and p72) are generated by alternative splicing and show that each form is differentially regulated during development in the CNS and PNS.

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Year:  1988        PMID: 2464408     DOI: 10.1016/0169-328x(88)90006-x

Source DB:  PubMed          Journal:  Brain Res        ISSN: 0006-8993            Impact factor:   3.252


  13 in total

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3.  Function of quaking in myelination: regulation of alternative splicing.

Authors:  Jiang I Wu; Robyn B Reed; Paula J Grabowski; Karen Artzt
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4.  Early mutation of the neu (erbB-2) gene during ethylnitrosourea-induced oncogenesis in the rat Schwann cell lineage.

Authors:  L A Ballering; J Lyons; M F Rajewsky
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5.  Early onset of axonal degeneration in double (plp-/-mag-/-) and hypomyelinosis in triple (plp-/-mbp-/-mag-/-) mutant mice.

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6.  Severe hypomyelination of the murine CNS in the absence of myelin-associated glycoprotein and fyn tyrosine kinase.

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Review 7.  Laminin regulates oligodendrocyte development and myelination.

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Review 8.  Molecular anatomy and genetics of myelin proteins in the peripheral nervous system.

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9.  Comparison of the phosphorylation of myelin-associated glycoprotein in cultured oligodendrocytes and Schwann cells.

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10.  hnRNP A1 and secondary structure coordinate alternative splicing of Mag.

Authors:  N Ruth Zearfoss; Emily S Johnson; Sean P Ryder
Journal:  RNA       Date:  2013-05-23       Impact factor: 4.942

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