Novel partial deletions, frameshift and missense mutations of CSF1R in patents with CSF1R‐related leukoencephalopathy

Author:

Ishiguro Takanobu1,Konno Takuya1,Hara Norikazu2ORCID,Zhu Bin2,Okada Satoshi3,Shibata Mamoru3ORCID,Saika Reiko4,Kitano Takaya5,Toko Megumi6,Nezu Tomohisa6ORCID,Hama Yuka7,Kawazoe Tomoya8,Takahashi‐Iwata Ikuko9,Yabe Ichiro9,Sato Kota10,Takeda Hayato11,Toda Shintaro12,Nishimiya Jin13,Teduka Toshiyuki1,Nozaki Hiroaki1,Kasuga Kensaku2ORCID,Miyashita Akinori2,Onodera Osamu1ORCID,Ikeuchi Takeshi2ORCID

Affiliation:

1. Department of Neurology, Brain Research Institute Niigata University Niigata Japan

2. Department of Molecular Genetics, Brain Research Institute Niigata University Niigata Japan

3. Department of Neurology Ichikawa General Hospital, Tokyo Dental College Ichikawa Japan

4. Department of Neurology Osaka Red Cross Hospital Osaka Japan

5. Department of Neurology Osaka University Graduate School of Medicine Osaka Japan

6. Department of Clinical Neuroscience and Therapeutics Hiroshima University Graduate School of Biomedical and Health Sciences Hiroshima Japan

7. Department of Neurology, National Center Hospital National Center of Neurology and Psychiatry Kodaira Japan

8. Department of Neurology Tokyo Metropolitan Neurological Hospital Fuchu Japan

9. Department of Neurology Hokkaido University School of Medicine Sapporo Japan

10. Department of Neurology Brain Attack Center Ota Memorial Hospital Fukuyama Japan

11. Department of Neurology University of Tsukuba Tsukuba Japan

12. Department of Neurology Kyoto Katsura Hospital Katsura Japan

13. Department of Neurology Gyotoku General Hospital Ichikawa Japan

Abstract

AbstractBackground and purposeColony‐stimulating factor 1 receptor (CSF1R)‐related leukoencephalopathy is an adult‐onset leukoencephalopathy caused by mutations in CSF1R. The present study aimed to explore the broader genetic spectrum of CSF1R‐related leukoencephalopathy in association with clinical and imaging features.MethodsMutational analysis of CSF1R was performed for 100 consecutive patients with adult‐onset leukoencephalopathy. Sequence and copy number variation (CNV) analyses of CSF1R were performed. The genomic ranges of the deletions were determined by long‐read sequencing. Ligand‐dependent autophosphorylation of CSF1R was examined in cells expressing the CSF1R mutants identified in this study.ResultsCSF1R mutations were identified in 15 patients, accounting for 15% of the adult‐onset leukoencephalopathy cases. Seven novel and five previously reported CSF1R mutations were identified. The novel mutations, including three missense and one in‐frame 3 bp deletion, were located in the tyrosine kinase domain (TKD) of CSF1R. Functional assays revealed that none of the novel mutations in the TKD showed autophosphorylation of CSF1R. Two partial deletions of CSF1R were identified that resulted in lack of the C‐terminal region, including the distal TKD, in two patients. Various clinical features including cognitive impairment, psychiatric symptoms and gait disturbance were observed. Various degrees of the white matter lesions and corpus callosum abnormalities on magnetic resonance imaging and characteristic calcifications on computed tomography were observed as imaging features.ConclusionsOur results highlight the importance of examining the CNV of CSF1R even when Sanger or exome sequencing reveals no CSF1R mutations. Genetic examination of sequences and CNV analyses of CSF1R are recommended for an accurate diagnosis of CSF1R‐related leukoencephalopathy.

Funder

Japan Agency for Medical Research and Development

Japan Society for the Promotion of Science

Ministry of Health, Labour and Welfare

Publisher

Wiley

Subject

Neurology (clinical),Neurology

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