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PMID: 22425995 Published · epublish English Journal Article Research Support, N.I.H., Extramural Research Support, Non-U.S. Gov't

Wild-type microglia arrest pathology in a mouse model of Rett syndrome.

Nature ·Vol. 484 ·No. 7392 ·2012-03-18 ·Pages 105-9

Derecki NC, Cronk JC, Lu Z, Xu E, Abbott SB, Guyenet PG, Kipnis J

Abstract

Rett syndrome is an X-linked autism spectrum disorder. The disease is characterized in most cases by mutation of the MECP2 gene, which encodes a methyl-CpG-binding protein. Although MECP2 is expressed in many tissues, the disease is generally attributed to a primary neuronal dysfunction. However, as shown recently, glia, specifically astrocytes, also contribute to Rett pathophysiology. Here we examine the role of another form of glia, microglia, in a murine model of Rett syndrome. Transplantation of wild-type bone marrow into irradiation-conditioned Mecp2-null hosts resulted in engraftment of brain parenchyma by bone-marrow-derived myeloid cells of microglial phenotype, and arrest of disease development. However, when cranial irradiation was blocked by lead shield, and microglial engraftment was prevented, disease was not arrested. Similarly, targeted expression of MECP2 in myeloid cells, driven by Lysm(cre) on an Mecp2-null background, markedly attenuated disease symptoms. Thus, through multiple approaches, wild-type Mecp2-expressing microglia within the context of an Mecp2-null male mouse arrested numerous facets of disease pathology: lifespan was increased, breathing patterns were normalized, apnoeas were reduced, body weight was increased to near that of wild type, and locomotor activity was improved. Mecp2(+/-) females also showed significant improvements as a result of wild-type microglial engraftment. These benefits mediated by wild-type microglia, however, were diminished when phagocytic activity was inhibited pharmacologically by using annexin V to block phosphatydilserine residues on apoptotic targets, thus preventing recognition and engulfment by tissue-resident phagocytes. These results suggest the importance of microglial phagocytic activity in Rett syndrome. Our data implicate microglia as major players in the pathophysiology of this devastating disorder, and suggest that bone marrow transplantation might offer a feasible therapeutic approach for it.

MeSH Terms
Animals Annexin A5/administration & dosage,metabolism,pharmacology Apoptosis/drug effects Body Weight/physiology Bone Marrow Transplantation Brain/cytology Disease Models, Animal Disease Progression Female Insulin-Like Growth Factor I/metabolism Locomotion Male Methyl-CpG-Binding Protein 2/deficiency,genetics,metabolism Mice Mice, Inbred C57BL Microglia/cytology,pathology,physiology,transplantation Phagocytosis/drug effects Phosphatidylserines/metabolism Respiration/drug effects Rett Syndrome/genetics,pathology,physiopathology,therapy Rotarod Performance Test
Chemicals
Annexin A5 Mecp2 protein, mouse Methyl-CpG-Binding Protein 2 Phosphatidylserines insulin-like growth factor-1, mouse Insulin-Like Growth Factor I
Authors & Affiliations
7 authors, click to expand affiliations / ORCID
Derecki Noël C
Department of Neuroscience, School of Medicine, University of Virginia, Charlottesville, Virginia 22908, USA.
Cronk James C
Lu Zhenjie
Xu Eric
Abbott Stephen B G
Guyenet Patrice G
Kipnis Jonathan
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Article Info
Journal
Nature
Abbr.
Nature
ISSN
1476-4687
Published
2012-03-18
Epub
2012-00-18
Pages
105-9
Language
English
Region
England
NLM ID
0410462
PMCID
PMC3321067
Subset
IM
Grants
NICHD NIH HHS · R21 HD056293 · United States
NIA NIH HHS · R01 AG034113 · United States
NICHD NIH HHS · HD056293 · United States
NIA NIH HHS · R01 AG034113-01A2 · United States
NICHD NIH HHS · R21 HD056293-01A2 · United States
NIA NIH HHS · AG034113 · United States
NINDS NIH HHS · R01 NS081026 · United States
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