Find in Library
Search millions of books, articles, and more
Indexed Open Access Databases
Targeted Suppression of Lipoprotein Receptor LSR in Astrocytes Leads to Olfactory and Memory Deficits in Mice
oleh: Aseel El Hajj, Ameziane Herzine, Gaetano Calcagno, Frédéric Désor, Fathia Djelti, Vincent Bombail, Isabelle Denis, Thierry Oster, Catherine Malaplate, Maxime Vigier, Sandra Kaminski, Lynn Pauron, Catherine Corbier, Frances T. Yen, Marie-Claire Lanhers, Thomas Claudepierre
Format: | Article |
---|---|
Diterbitkan: | MDPI AG 2022-02-01 |
Deskripsi
Perturbations of cholesterol metabolism have been linked to neurodegenerative diseases. Glia–neuron crosstalk is essential to achieve a tight regulation of brain cholesterol trafficking. Adequate cholesterol supply from glia via apolipoprotein E-containing lipoproteins ensures neuronal development and function. The lipolysis-stimulated lipoprotein receptor (LSR), plays an important role in brain cholesterol homeostasis. Aged heterozygote <i>Lsr+/−</i> mice show altered brain cholesterol distribution and increased susceptibility to amyloid stress. Since LSR expression is higher in astroglia as compared to neurons, we sought to determine if astroglial LSR deficiency could lead to cognitive defects similar to those of Alzheimer’s disease (AD). Cre recombinase was activated in adult <i>Glast-CreERT/lsrfl/fl</i> mice by tamoxifen to induce astroglial <i>Lsr</i> deletion. Behavioral phenotyping of young and old astroglial <i>Lsr</i> KO animals revealed hyperactivity during the nocturnal period, deficits in olfactory function affecting social memory and causing possible apathy, as well as visual memory and short-term working memory problems, and deficits similar to those reported in neurodegenerative diseases, such as AD. Furthermore, GFAP staining revealed astroglial activation in the olfactory bulb. Therefore, astroglial LSR is important for working, spatial, and social memory related to sensory input, and represents a novel pathway for the study of brain aging and neurodegeneration.