The glial growth factors deficiency and synaptic destabilization hypothesis of schizophrenia
Open Access
- 3 July 2002
- journal article
- research article
- Published by Springer Nature in BMC Psychiatry
- Vol. 2 (1) , 8
- https://doi.org/10.1186/1471-244x-2-8
Abstract
A systems approach to understanding the etiology of schizophrenia requires a theory which is able to integrate genetic as well as neurodevelopmental factors. Based on a co-localization of loci approach and a large amount of circumstantial evidence, we here propose that a functional deficiency of glial growth factors and of growth factors produced by glial cells are among the distal causes in the genotype-to-phenotype chain leading to the development of schizophrenia. These factors include neuregulin, insulin-like growth factor I, insulin, epidermal growth factor, neurotrophic growth factors, erbB receptors, phosphatidylinositol-3 kinase, growth arrest specific genes, neuritin, tumor necrosis factor alpha, glutamate, NMDA and cholinergic receptors. A genetically and epigenetically determined low baseline of glial growth factor signaling and synaptic strength is expected to increase the vulnerability for additional reductions (e.g., by viruses such as HHV-6 and JC virus infecting glial cells). This should lead to a weakening of the positive feedback loop between the presynaptic neuron and its targets, and below a certain threshold to synaptic destabilization and schizophrenia. Supported by informed conjectures and empirical facts, the hypothesis makes an attractive case for a large number of further investigations. The hypothesis suggests glial cells as the locus of the genes-environment interactions in schizophrenia, with glial asthenia as an important factor for the genetic liability to the disorder, and an increase of prolactin and/or insulin as possible working mechanisms of traditional and atypical neuroleptic treatments.Keywords
This publication has 192 references indexed in Scilit:
- The α7-nicotinic acetylcholine receptor and the pathology of hippocampal interneurons in schizophreniaJournal of Chemical Neuroanatomy, 2000
- Evidence suggestive of a locus on chromosome 5q31 contributing to susceptibility for schizophrenia in German and Israeli families by multipoint affected sib-pair linkage analysisMolecular Psychiatry, 1997
- Support for a possible schizophrenia vulnerability locus in region 5q22–31 in Irish familiesMolecular Psychiatry, 1997
- Suggestive evidence for linkage of schizophrenia to markers on chromosome 13 in Caucasian but not Oriental populationsHuman Genetics, 1997
- Stimulation of Myogenic Differentiation by a Neuregulin, Glial Growth Factor 2Journal of Biological Chemistry, 1996
- Polymorphic Functional Imprinting of the Human IGF2 Gene among Individuals, in Blood Cells, Is Associated with H19 ExpressionBiochemical and Biophysical Research Communications, 1996
- Schizophrenia susceptibility and chromosome 6p24–22Nature Genetics, 1995
- Evaluation of a susceptibility gene for schizophrenia on chromosome 6p by multipoint affected sib–pair linkage analysisNature Genetics, 1995
- Genetic dissection of complex traits: guidelines for interpreting and reporting linkage resultsNature Genetics, 1995
- Regional Distribution in Rat Brain of 1-Pyrroline-5-Carboxylate Dehydrogenase and Its Localization to Specific Glial CellsJournal of Neurochemistry, 1985