CSF1R mutations link POLD and HDLS as a single disease entity.

Details

Serval ID
serval:BIB_A875C17CB365
Type
Article: article from journal or magazin.
Collection
Publications
Institution
Title
CSF1R mutations link POLD and HDLS as a single disease entity.
Journal
Neurology
Author(s)
Nicholson A.M., Baker M.C., Finch N.A., Rutherford N.J., Wider C., Graff-Radford N.R., Nelson P.T., Clark H.B., Wszolek Z.K., Dickson D.W., Knopman D.S., Rademakers R.
ISSN
1526-632X (Electronic)
ISSN-L
0028-3878
Publication state
Published
Issued date
2013
Volume
80
Number
11
Pages
1033-1040
Language
english
Notes
Publication types: JOURNAL ARTICLEPublication Status: ppublish
Abstract
OBJECTIVE: Pigmented orthochromatic leukodystrophy (POLD) and hereditary diffuse leukoencephalopathy with axonal spheroids (HDLS) are rare neurodegenerative disorders characterized by cerebral white matter abnormalities, myelin loss, and axonal swellings. The striking overlap of clinical and pathologic features of these disorders suggested a common pathogenesis; however, no genetic or mechanistic link between POLD and HDLS has been established. Recently, we reported that mutations in the colony-stimulating factor 1 receptor (CSF1R) gene cause HDLS. In this study, we determined whether CSF1R mutations are also a cause of POLD. METHODS: We performed sequencing of CSF1R in 2 pathologically confirmed POLD families. For the largest family (FTD368), a detailed case report was provided and brain samples from 2 affected family members previously diagnosed with POLD were re-evaluated to determine whether they had HDLS features. In vitro functional characterization of wild-type and mutant CSF1R was also performed. RESULTS: We identified CSF1R mutations in both POLD families: in family 5901, we found c.2297T>C (p.M766T), previously reported by us in HDLS family CA1, and in family FTD368, we identified c.2345G>A (p.R782H), recently reported in a biopsy-proven HDLS case. Immunohistochemical examination in family FTD368 showed the typical neuronal and glial findings of HDLS. Functional analyses of CSF1R mutant p.R782H (identified in this study) and p.M875T (previously observed in HDLS), showed a similar loss of CSF1R autophosphorylation of selected tyrosine residues in the kinase domain for both mutations when compared with wild-type CSF1R. CONCLUSIONS: We provide the first genetic and mechanistic evidence that POLD and HDLS are a single clinicopathologic entity.
Pubmed
Web of science
Create date
12/04/2013 18:23
Last modification date
20/08/2019 16:12
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