Literature DB >> 15183511

Connexin47, connexin29 and connexin32 co-expression in oligodendrocytes and Cx47 association with zonula occludens-1 (ZO-1) in mouse brain.

X Li1, A V Ionescu, B D Lynn, S Lu, N Kamasawa, M Morita, K G V Davidson, T Yasumura, J E Rash, J I Nagy.   

Abstract

Gap junctions between glial cells in mammalian CNS are known to contain several connexins (Cx), including Cx26, Cx30 and Cx43 at astrocyte-to-astrocyte junctions, and Cx29 and Cx32 on the oligodendrocyte side of astrocyte-to-oligodendrocyte junctions. Recent reports indicating that oligodendrocytes also express Cx47 prompted the present studies of Cx47 localization and relationships to other glial connexins in mouse CNS. In view of the increasing number of connexins reported to interact directly with the scaffolding protein zonula occludens-1 (ZO-1), we investigated ZO-1 expression and Cx47/ZO-1 interaction capabilities in brain, spinal cord and Cx47-transfected HeLa cells. From counts of over 9000 oligodendrocytes labeled by immunofluorescence in various brain regions, virtually all of these cells were found to express Cx29, Cx32 and Cx47. Oligodendrocyte somata displayed robust Cx47-immunopositive puncta that were co-localized with punctate labeling for Cx32 and Cx43. By freeze-fracture replica immunogold labeling, Cx47 was abundant on the oligodendrocyte-side of oligodendrocyte/astrocyte gap junctions. By immunofluorescence, labeling for Cx47 along myelinated fibers was sparse in most brain regions, whereas Cx29 and Cx32 were previously found to be concentrated along these fibers. By immunogold labeling, Cx47 was found in numerous small gap junctions linking myelin to astrocytes, but not within deeper layers of myelin. Brain subcellular fractionation revealed a lack of Cx47 enrichment in myelin fractions, which nevertheless contained an enrichment of Cx32 and Cx29. Oligodendrocytes were immunopositive for ZO-1, and displayed almost total Cx47/ZO-1 co-localization. ZO-1 was found to co-immunoprecipitate with Cx47, and pull-down assays indicated binding of Cx47 to the second PDZ domain of ZO-1. Our results indicate widespread expression of Cx47 by oligodendrocytes, but with a distribution pattern in relative levels inverse to the abundance of Cx29 in myelin and paucity of Cx29 in oligodendrocyte somata. Further, our findings suggest a scaffolding and/or regulatory role of ZO-1 at the oligodendrocyte side of astrocyte-to-oligodendrocyte gap junctions.

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Year:  2004        PMID: 15183511      PMCID: PMC1817902          DOI: 10.1016/j.neuroscience.2004.03.063

Source DB:  PubMed          Journal:  Neuroscience        ISSN: 0306-4522            Impact factor:   3.590


  72 in total

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2.  The oligodendrocytic junctional complex.

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3.  Connexin29 expression, immunocytochemistry and freeze-fracture replica immunogold labelling (FRIL) in sciatic nerve.

Authors:  Xinbo Li; B D Lynn; C Olson; C Meier; K G V Davidson; T Yasumura; J E Rash; J I Nagy
Journal:  Eur J Neurosci       Date:  2002-09       Impact factor: 3.386

4.  A reporter allele for investigating connexin 26 gene expression in the mouse brain.

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5.  Connexin32-containing gap junctions in Schwann cells at the internodal zone of partial myelin compaction and in Schmidt-Lanterman incisures.

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6.  High-resolution proteomic mapping in the vertebrate central nervous system: close proximity of connexin35 to NMDA glutamate receptor clusters and co-localization of connexin36 with immunoreactivity for zonula occludens protein-1 (ZO-1).

Authors:  J E Rash; A Pereda; N Kamasawa; C S Furman; T Yasumura; K G V Davidson; F E Dudek; C Olson; X Li; J I Nagy
Journal:  J Neurocytol       Date:  2004-01

7.  Neuronal connexin36 association with zonula occludens-1 protein (ZO-1) in mouse brain and interaction with the first PDZ domain of ZO-1.

Authors:  Xinbo Li; Carl Olson; Shijun Lu; Naomi Kamasawa; Thomas Yasumura; John E Rash; James I Nagy
Journal:  Eur J Neurosci       Date:  2004-04       Impact factor: 3.386

8.  Coupling of astrocyte connexins Cx26, Cx30, Cx43 to oligodendrocyte Cx29, Cx32, Cx47: Implications from normal and connexin32 knockout mice.

Authors:  J I Nagy; A-V Ionescu; B D Lynn; J E Rash
Journal:  Glia       Date:  2003-12       Impact factor: 7.452

9.  Comparative analysis of junctions in the myelin sheath of central and peripheral axons of fish, amphibians and mammals: a freeze-fracture study using complementary replicas.

Authors:  N L Shinowara; W B Beutel; J P Revel
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10.  Cellular expression of connexins in the rat brain: neuronal localization, effects of kainate-induced seizures and expression in apoptotic neuronal cells.

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  54 in total

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Journal:  Brain Res       Date:  2012-07-10       Impact factor: 3.252

2.  Electrical transmission between mammalian neurons is supported by a small fraction of gap junction channels.

Authors:  Sebastian Curti; Gregory Hoge; James I Nagy; Alberto E Pereda
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Review 3.  White matter rafting--membrane microdomains in myelin.

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Review 4.  Gap junctions couple astrocytes and oligodendrocytes.

Authors:  Jennifer L Orthmann-Murphy; Charles K Abrams; Steven S Scherer
Journal:  J Mol Neurosci       Date:  2008-05       Impact factor: 3.444

5.  Connexin and pannexin mediated cell-cell communication.

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6.  Characterisation of Peptide5 systemic administration for treating traumatic spinal cord injured rats.

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7.  Association of connexin36 and zonula occludens-1 with zonula occludens-2 and the transcription factor zonula occludens-1-associated nucleic acid-binding protein at neuronal gap junctions in rodent retina.

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Journal:  Neuroscience       Date:  2006-05-02       Impact factor: 3.590

8.  Connexin45-containing neuronal gap junctions in rodent retina also contain connexin36 in both apposing hemiplaques, forming bihomotypic gap junctions, with scaffolding contributed by zonula occludens-1.

Authors:  Xinbo Li; Naomi Kamasawa; Cristina Ciolofan; Carl O Olson; Shijun Lu; Kimberly G V Davidson; Thomas Yasumura; Ryuichi Shigemoto; John E Rash; James I Nagy
Journal:  J Neurosci       Date:  2008-09-24       Impact factor: 6.167

Review 9.  Modulation of brain hemichannels and gap junction channels by pro-inflammatory agents and their possible role in neurodegeneration.

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Review 10.  Polarity proteins as regulators of cell junction complexes: implications for breast cancer.

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