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PMID: 8786814 Published · ppublish English Journal Article Research Support, U.S. Gov't, P.H.S. Review

GM2 ganglioside and pyramidal neuron dendritogenesis.

Neurochemical research ·Vol. 20 ·No. 11 ·1995-11-00 ·Pages 1287-99

Walkley SU, Siegel DA, Dobrenis K

Abstract

GM2 ganglioside, although scarce in normal adult brain, is the predominant ganglioside accumulating in several types of lysosomal disorders, most notably Tay-Sachs disease. Pyramidal neurons of cerebral cortex in Tay-Sachs, as well as many other types of neuronal storage disorders, are known to exhibit a phenomenon believed unique to storage disorders: growth of ectopic dendrites. Recent studies have shown that a common metabolic abnormality shared by storage diseases with ectopic dendrite growth is the abnormal accumulation of GM2 ganglioside. The correlation between increased levels of GM2 and the presence of ectopic dendrites has been found in both ganglioside and nonganglioside storage disorders, the latter including sphingomyelin-cholesterol lipidosis, mucopolysaccharidosis, and alpha-mannosidosis. Quantitative HPTLC analysis has shown that increases in GM2 occur in proportion to the incidence of ectopic dendrite growth, whereas other gangliosides, including GM1, lack similar increases. Immunocytochemical studies of all nonganglioside storage diseases which exhibit ectopic dendritogenesis have revealed heightened GM2 ganglioside-immunoreactivity in the cortical pyramidal cell population, whereas nerurons in normal adult brain exhibit little or no staining for this ganglioside. Further, studies examining disease development have consistently shown that accumulation of GM2 ganglioside precedes growth of ectopic dendrites, indicating that it is not simply occurring secondary to new membrane production. These findings have prompted an examination for a similar relationship between GM2 ganglioside and dendritogenesis in cortical neurons of normal developing brain. Results show that GM2 ganglioside-immunoreactivity is consistently elevated in immature neurons during the period when they are undergoing active dendritic initiation, but this staining diminishes dramatically as the dendritic trees of these cells mature. Collectively, these studies on diseased and normal brain offer compelling evidence that GM2 ganglioside plays a pivotal role in the regulation of dendritogenesis in cortical pyramidal neurons.

MeSH Terms
Adult Biological Transport/physiology Carbohydrate Sequence Cerebral Cortex/metabolism,pathology Dendrites/ultrastructure G(M2) Ganglioside/chemistry,metabolism Humans Molecular Sequence Data Molecular Structure Pyramidal Cells/metabolism,ultrastructure Tay-Sachs Disease/metabolism,pathology
Chemicals
G(M2) Ganglioside
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Walkley S U
Department of Neuroscience, Rose F. Kennedy Center for Research in Mental Retardation and Human Development, Albert Einstein College of Medicine, Bronx, New York 10461, USA.
Siegel D A
Dobrenis K
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Article Info
Journal
Neurochemical research
Abbr.
Neurochem Res
ISSN
0364-3190
Published
1995-11-00
Pages
1287-99
Language
English
Region
United States
NLM ID
7613461
Subset
IM
Grants
NINDS NIH HHS · NS 18804 · United States
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