LM and EM immunolocalization of the gap junctional protein connexin 43 in rat brain.
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Summary
The results suggest that connexin 43 is one of the major gap junctional proteins utilized for junctional coupling between astrocytes and between cells lining the surfaces of the brain.
- Type
- article
- Published
- 1990-02-05
- Cited by
- 208
- References
- 19
- OpenAlex
- https://openalex.org/W1964405560
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:40093670
Keywords
Gap junction, Connexin, Ependymal Cell, Cell biology, Cell junction
References
- Development, morphology, and regional specialization of astrocytes
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- A protein homologous to the 27,000 dalton liver gap junction protein is present in a wide variety of species and tissues.
- Functional interactions between neurons and astrocytes. II. Potassium homeostasis at the cellular level.
- Two homologous protein components of hepatic gap junctions
- Gap junction protein in rat hippocampus: Correlative light and electron microscope immunohistochemical localization
- Dye-coupling between glial cells in the guinea pig neocortical slice.
- Cell junctions and intramembrane particles of astrocytes and oligodendrocytes: a freeze-fracture study.
- Gap junctions between non‐pyramidal cell dendrites in the rat hippocampus (CA1 and CA3 regions): A combined Golgi‐electron microscopy study
- Electrical coupling between astrocytes and between oligodendrocytes studied in mammalian cell cultures
- Gap junction protein in rat hippocampus: Light microscope immunohistochemical localization
- High potassium conductance in astrocyte endfeet.
- Antisera directed against connexin43 peptides react with a 43-kD protein localized to gap junctions in myocardium and other tissues
- Does the release of potassium from astrocyte endfeet regulate cerebral blood flow?
- Connexin43: a protein from rat heart homologous to a gap junction protein from liver
- Gap junction protein in weakly electric fish (gymnotide): Immunohistochemical localization with emphasis on structures of the electrosensory system
- The 43-kD polypeptide of heart gap junctions: immunolocalization, topology, and functional domains
- ELECTROPHYSIOLOGICAL PROPERTIES OF ASTROCYTES
- CELL JUNCTIONS OF ASTROCYTES, EPENDYMA, AND RELATED CELLS IN THE MAMMALIAN CENTRAL NERVOUS SYSTEM, WITH EMPHASIS ON THE HYPOTHESIS OF A GENERALIZED FUNCTIONAL SYNCYTIUM OF SUPPORTING CELLS
Cited by
- Expression of connexin43 in the developing rat heart.
- Changes in connexin43, the gap junction protein of astrocytes, during development of the rat pineal gland
- The Distribution and Functional Properties of PMLD-Linked CX47 Mutations on CX47/CX47 Homotypic and CX47/CX43 Heterotypic Gap Junctions
- Role of Schwann cells in retinal ganglion cell axon regeneration.
- Characterisation of Peptide5 systemic administration for treating traumatic spinal cord injured rats
- Structural changes in lenses of mice lacking the gap junction protein connexin43.
- Prevention of organochlorine-induced inhibition of gap junctional communication by chaetoglobosin K in astrocytes
- Are there functional gap junctions or junctional hemichannels in macrophages?
- Novel mutations in the connexin 32 gene associated with X‐linked Charcot‐Marie tooth disease
- Cell-Specific Expression of Connexins and Evidence of Restricted Gap Junctional Coupling between Glial Cells and between Neurons
- Structure--function relationships in gap junctions.
- Signal processing in the C2 module of the flocculus and its role in head movement control.
- On CNS injury and olfactory ensheathing cell engraftment strategies
- Connexin 43 and hearing: Possible implications for retrocochlear auditory processing
- Early disruption of glial communication via connexin gap junction in multiple sclerosis, Baló's disease and neuromyelitis optica
- Association of Cell and Substrate Adhesion Molecules with Connexin43 During Intramembranous Bone Formation
- The dendritic lamellar body: a new neuronal organelle putatively associated with dendrodendritic gap junctions
- Activation of human polymorphonuclear cells induces formation of functional gap junctions and expression of connexins.
- Expression of zonula occludens‐1 (ZO‐1) and the transcription factor ZO‐1‐associated nucleic acid‐binding protein (ZONAB)–MsY3 in glial cells and colocalization at oligodendrocyte and astrocyte gap junctions in mouse brain
- Pericytes are involved in the pathogenesis of cerebral autosomal dominant arteriopathy with subcortical infarcts and leukoencephalopathy
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