» Articles » PMID: 18269217

Membrane Lipid Rafts and Their Role in Axon Guidance

Overview
Date 2008 Feb 14
PMID 18269217
Citations 40
Authors
Affiliations
Soon will be listed here.
Abstract

The plasma membrane of cells contains a variety of lipid and protein molecules that are often segregated and heterogeneously distributed in microdomains. Lipid rafts represent a generalized concept of membrane microdomains that are enriched in cholesterol and sphingolipids and, characteristically, resistant to cold detergent extraction. Lipid rafts have recently received considerable attention because they are thought to be involved in many cellular functions, in particular, signal transduction for extracellular stimuli. Many of these functions are also intimately related to the processes involved in neural development, including neurotrophic factor signaling and synaptic plasticity. Recent studies from our lab and others have indicated an important role for lipid rafts in axonal growth and guidance. Specifically, our data show that lipid rafts on the plasma membrane provide platforms for spatial and temporal control of guidance signaling by extracellular cues. In addition, lipid rafts may also function in other aspects of axonal growth and guidance, including spatial and temporal regulation of adhesion, cytoskeletal dynamics, and growth cone motility. Further elucidating how membrane rafts are involved in guided axonal growth would provide important insights into the intricate signaling mechanisms underlying neuronal wiring, which is fundamental for normal brain development and functional recovery after injury and diseases.

Citing Articles

Transcriptomic and proteomic profiling of the anterior cingulate cortex in neuropathic pain model rats.

Qiu X, Guo C, Ma L, Li X, Zhang Q, Huang F Front Mol Neurosci. 2023; 16:1164426.

PMID: 37396788 PMC: 10311218. DOI: 10.3389/fnmol.2023.1164426.


One Raft to Guide Them All, and in Axon Regeneration Inhibit Them.

Hernaiz-Llorens M, Martinez-Marmol R, Rosello-Busquets C, Soriano E Int J Mol Sci. 2021; 22(9).

PMID: 34066896 PMC: 8125918. DOI: 10.3390/ijms22095009.


The Effect of Prenatal Food Restriction on Brain Proteome in Appropriately Grown and Growth Restricted Male Wistar Rats.

Potiris A, Manousopoulou A, Zouridis A, Sarli P, Pervanidou P, Eliades G Front Neurosci. 2021; 15:665354.

PMID: 33935642 PMC: 8079747. DOI: 10.3389/fnins.2021.665354.


Effect of Amyloid-β Monomers on Lipid Membrane Mechanical Parameters-Potential Implications for Mechanically Driven Neurodegeneration in Alzheimer's Disease.

Drabik D, Chodaczek G, Kraszewski S Int J Mol Sci. 2020; 22(1).

PMID: 33375009 PMC: 7792773. DOI: 10.3390/ijms22010018.


Caveolin 1 is required for axonal outgrowth of motor neurons and affects Xenopus neuromuscular development.

Breuer M, Berger H, Borchers A Sci Rep. 2020; 10(1):16446.

PMID: 33020520 PMC: 7536398. DOI: 10.1038/s41598-020-73429-x.