← Explorer/Network

Glial fibrillary acidic protein gene promoter is differently modulated by transforming growth factor‐beta 1 in astrocytes from distinct brain regions

Sousa Vde O, Romao L, Neto V +1 more2004European Journal of NeuroscienceJournal Article
10.1111/j.1460-9568.2004.03249.xPubMed
Neurological

Abstract

AbstractThe expression of glial fibrillary acidic protein (GFAP), the major intermediate filament protein of mature astrocytes, is regulated under developmental and pathological conditions. Recently, we have investigated GFAP gene modulation by using a transgenic mouse bearing part of the GFAP gene promoter linked to the β‐galactosidase reporter gene. We demonstrated that cerebral cortex neurons activate the GFAP gene promoter, inducing transforming growth factor‐beta 1 (TGF‐β1) secretion by astrocytes. Here, we report that cortical neurons or conditioned medium derived from them do not activate the GFAP gene promoter of transgenic astrocytes derived from midbrain and cerebellum suggesting a neuroanatomical regional specificity of this phenomenon. Surprisingly, they do induce synthesis of TGF‐β1 by these cells. Western blot and immunocytochemistry assays revealed wild distribution of TGF receptor in all subpopulations of astrocytes and expression of TGF‐β1 in neurons derived from all regions, thus indicating that the unresponsiveness of the cerebellar and midbrain GFAP gene to TGF‐β1 is not due to a defect in TGF‐β1 signalling. Together, our data highlight the great complexity of neuron–glia interactions and might suggest a distinct mechanism underlying modulation of the GFAP gene in the heterogeneous population of astrocytes throughout the central nervous system.

Key Biomarkers

glial fibrillary acidic protein (GFAP)TGF receptorTransforming Growth Factor-Beta 1 (TGF-β1)

Cited By (3)

  • Central nervous system cytokine gene expression: modulation by leadJournal of Biochemical and Molecular Toxicology · 2011
  • Structural brain abnormalities in patients with inflammatory illness acquired following exposure to water-damaged buildings: a volumetric MRI study using NeuroQuantNeurotoxicology and Teratology · 2014
  • Glutamate activates GFAP gene promoter from cultured astrocytes through TGF‐β1 pathwaysJournal of Neurochemistry · 2008

References (3)

  • Neuro–glia interaction effects on GFAP gene: a novel role for transforming growth factor‐β1European Journal of Neuroscience · 2002
  • Glial fibrillary acidic protein (GFAP): modulation by growth factors and its implication in astrocyte differentiationBrazilian Journal of Medical and Biological Research · 1999
  • Inactivation of the glial fibrillary acidic protein gene, but not that of vimentin, improves neuronal survival and neurite growth by modifying adhesion molecule expressionJournal of Neuroscience · 2001

Related Papers

  • Association of mold exposure and solid household fuel use with depression and anxiety among older adults in ChinaEnvironmental Health · 2025 · 1 shared tag
  • Pain, Fear, Anxiety, and Stress: Relations to the Endogenous Opioid SystemAdvances in neurobiology · 2024 · 1 shared tag
  • Probing the VIPR2 Microduplication Linkage to Schizophrenia in Animal and Cellular ModelsFrontiers in Neuroscience · 2021 · 1 shared tag
  • CGRP sensory neurons promote tissue healing via neutrophils and macrophagesNature · 2024 · 1 shared tag
  • High Value Phycotoxins From the Dinoflagellate ProrocentrumFrontiers in Marine Science · 2021 · 1 shared tag
  • Invited review: Mechanisms of hypophagia during diseaseJournal of Dairy Science · 2021 · 1 shared tag