Literature DB >> 25226845

Loss of lysophosphatidic acid receptor LPA1 alters oligodendrocyte differentiation and myelination in the mouse cerebral cortex.

Beatriz García-Díaz1,2, Raquel Riquelme3, Isabel Varela-Nieto3, Antonio Jesús Jiménez4, Isabel de Diego5, Ana Isabel Gómez-Conde6, Elisa Matas-Rico1,7, José Ángel Aguirre8, Jerold Chun9, Carmen Pedraza10, Luis Javier Santín10, Oscar Fernández11, Fernando Rodríguez de Fonseca12, Guillermo Estivill-Torrús13,14.   

Abstract

Lysophosphatidic acid (LPA) is an intercellular signaling lipid that regulates multiple cellular functions, acting through specific G-protein coupled receptors (LPA(1-6)). Our previous studies using viable Malaga variant maLPA1-null mice demonstrated the requirement of the LPA1 receptor for normal proliferation, differentiation, and survival of the neuronal precursors. In the cerebral cortex LPA1 is expressed extensively in differentiating oligodendrocytes, in parallel with myelination. Although exogenous LPA-induced effects have been investigated in myelinating cells, the in vivo contribution of LPA1 to normal myelination remains to be demonstrated. This study identified a relevant in vivo role for LPA1 as a regulator of cortical myelination. Immunochemical analysis in adult maLPA1-null mice demonstrated a reduction in the steady-state levels of the myelin proteins MBP, PLP/DM20, and CNPase in the cerebral cortex. The myelin defects were confirmed using magnetic resonance spectroscopy and electron microscopy. Stereological analysis limited the defects to adult differentiating oligodendrocytes, without variation in the NG2+ precursor cells. Finally, a possible mechanism involving oligodendrocyte survival was demonstrated by the impaired intracellular transport of the PLP/DM20 myelin protein which was accompanied by cellular loss, suggesting stress-induced apoptosis. These findings describe a previously uncharacterized in vivo functional role for LPA1 in the regulation of oligodendrocyte differentiation and myelination in the CNS, underlining the importance of the maLPA1-null mouse as a model for the study of demyelinating diseases.

Entities:  

Keywords:  Cerebral cortex; Lysophosphatidic acid receptor; Myelin; Oligodendrocyte

Mesh:

Substances:

Year:  2014        PMID: 25226845     DOI: 10.1007/s00429-014-0885-7

Source DB:  PubMed          Journal:  Brain Struct Funct        ISSN: 1863-2653            Impact factor:   3.270


  18 in total

1.  Pathway-Focused Profiling of Oligodendrocytes Over-Expressing miR-125a-3p Reveals Alteration of Wnt and Cell-to-Cell Signaling.

Authors:  Maria P Abbracchio; Davide Lecca; Davide Marangon
Journal:  Cell Mol Neurobiol       Date:  2020-04-01       Impact factor: 5.046

2.  Lysophosphatidic Acid Receptor 1 Is Important for Intestinal Epithelial Barrier Function and Susceptibility to Colitis.

Authors:  Songbai Lin; Yiran Han; Kayte Jenkin; Sei-Jung Lee; Maiko Sasaki; Jan-Michael Klapproth; Peijian He; C Chris Yun
Journal:  Am J Pathol       Date:  2017-11-09       Impact factor: 4.307

3.  Anatomical location of LPA1 activation and LPA phospholipid precursors in rodent and human brain.

Authors:  Estibaliz González de San Román; Iván Manuel; María Teresa Giralt; Jerold Chun; Guillermo Estivill-Torrús; Fernando Rodríguez de Fonseca; Luis Javier Santín; Isidro Ferrer; Rafael Rodríguez-Puertas
Journal:  J Neurochem       Date:  2015-04-27       Impact factor: 5.372

4.  Activation of Macrophages by Lysophosphatidic Acid through the Lysophosphatidic Acid Receptor 1 as a Novel Mechanism in Multiple Sclerosis Pathogenesis.

Authors:  Guillermo Estivill-Torrús; Beatriz García-Díaz; Jennifer Fransson; Ana Isabel Gómez-Conde; Jesús Romero-Imbroda; Oscar Fernández; Laura Leyva; Fernando Rodríguez de Fonseca; Jerold Chun; Celine Louapre; Anne Baron Van-Evercooren; Violetta Zujovic
Journal:  Mol Neurobiol       Date:  2020-09-24       Impact factor: 5.590

5.  Activation of Lysophosphatidic Acid Receptor Type 1 Contributes to Pathophysiology of Spinal Cord Injury.

Authors:  Eva Santos-Nogueira; Clara López-Serrano; Joaquim Hernández; Natalia Lago; Alma M Astudillo; Jesús Balsinde; Guillermo Estivill-Torrús; Fernando Rodriguez de Fonseca; Jerold Chun; Rubèn López-Vales
Journal:  J Neurosci       Date:  2015-07-15       Impact factor: 6.167

6.  Human Glial Progenitor Cells Effectively Remyelinate the Demyelinated Adult Brain.

Authors:  Martha S Windrem; Steven J Schanz; Lisa Zou; Devin Chandler-Militello; Nicholas J Kuypers; Maiken Nedergaard; Yuan Lu; John N Mariani; Steven A Goldman
Journal:  Cell Rep       Date:  2020-05-19       Impact factor: 9.423

Review 7.  Stress, Depression, Resilience and Ageing: A Role for the LPA-LPA1 Pathway.

Authors:  Roman Dario Moreno-Fernandez; Sara Tabbai; Estela Castilla-Ortega; Margarita Perez-Martin; Guillermo Estivill-Torrus; Fernando Rodriguez de Fonseca; Luis Javier Santin; Carmen Pedraza
Journal:  Curr Neuropharmacol       Date:  2018-03-05       Impact factor: 7.363

8.  Dysregulation of lysophosphatidic acids in multiple sclerosis and autoimmune encephalomyelitis.

Authors:  K Schmitz; R Brunkhorst; N de Bruin; C A Mayer; A Häussler; N Ferreiros; S Schiffmann; M J Parnham; S Tunaru; J Chun; S Offermanns; C Foerch; K Scholich; J Vogt; S Wicker; J Lötsch; G Geisslinger; I Tegeder
Journal:  Acta Neuropathol Commun       Date:  2017-06-02       Impact factor: 7.801

9.  GABAergic deficits in absence of LPA1 receptor, associated anxiety-like and coping behaviors, and amelioration by interneuron precursor transplants into the dorsal hippocampus.

Authors:  Cristina Rosell-Valle; Magdalena Martínez-Losa; Elisa Matas-Rico; Estela Castilla-Ortega; Emma Zambrana-Infantes; Ana Isabel Gómez-Conde; Lourdes Sánchez-Salido; David Ladrón de Guevara-Miranda; Carmen Pedraza; Pedro Jesús Serrano-Castro; Jerold Chun; Fernando Rodríguez de Fonseca; Manuel Álvarez-Dolado; Luis Javier Santín; Guillermo Estivill-Torrús
Journal:  Brain Struct Funct       Date:  2021-04-01       Impact factor: 3.270

10.  The Autotaxin-Lysophosphatidic Acid Axis Modulates Histone Acetylation and Gene Expression during Oligodendrocyte Differentiation.

Authors:  Natalie A Wheeler; James A Lister; Babette Fuss
Journal:  J Neurosci       Date:  2015-08-12       Impact factor: 6.167

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