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DNAMethylation as a Potential Molecular Mechanism in X-Linked Dystonia-Parkinsonism
被引:6
|作者:
Krause, Christin
[1
,2
]
Schaake, Susen
[3
]
Grutz, Karen
[3
]
Sievert, Helen
[1
]
Reyes, Charles Jourdan
[3
]
Konig, Inke R.
[4
]
Laabs, Bjoern-Hergen
[4
]
Jamora, Roland Dominic
[5
]
Rosales, Raymond L.
[6
]
Diesta, Cid Czarina E.
[7
]
Pozojevic, Jelena
[2
,8
]
Gemoll, Timo
[9
,10
]
Westenberger, Ana
[3
]
Kaiser, Frank J.
[8
,11
]
Klein, Christine
[3
]
Kirchner, Henriette
[1
,2
]
机构:
[1] Univ Lubeck, Inst Human Genet, Div Epigenet & Metab, Lubeck, Germany
[2] Univ Lubeck, Ctr Brain Behav & Metab CBBM, Ratzeburger Allee 160, D-23562 Lubeck, Germany
[3] Univ Lubeck, Inst Neurogenet, Ratzeburger Allee 160, D-23538 Lubeck, Germany
[4] Univ Lubeck, Inst Med Biometry & Stat, Lubeck, Germany
[5] Univ Philippines, Philippine Gen Hosp, Coll Med, Dept Neurosci, Manila, Philippines
[6] Univ Santo Tomas Hosp, Manila, Philippines
[7] Makati Med Ctr, Dept Neurosci, Movement Disorders Clin, Makati, Philippines
[8] Univ Lubeck, Inst Human Genet, Sect Funct Genet, Lubeck, Germany
[9] Univ Lubeck, Dept Surg, Sect Translat Surg Oncol & Biobanking, Kiel, Germany
[10] Univ Hosp Schleswig Holstein, Kiel, Germany
[11] Univ Duisburg Essen, Univ Hosp Essen, Inst Human Genet, Essen, Germany
关键词:
X-linked dystonia-parkinsonism;
DNAmethylation;
TAF1;
GATA2;
DNA-METHYLATION;
GENE-EXPRESSION;
TRANSCRIPTION;
PATIENT;
BINDING;
GENOME;
ONSET;
XDP;
D O I:
10.1002/mds.28239
中图分类号:
R74 [神经病学与精神病学];
学科分类号:
摘要:
Background X-linked dystonia-parkinsonism is a neurodegenerative movement disorder. The underlying molecular basis has still not been completely elucidated, but likely involves dysregulation ofTAF1expression. In X-linked dystonia-parkinsonism, 3 disease-specific single-nucleotide changes (DSCs) introduce (DSC12) or abolish (DSC2 and DSC3) CpG dinucleotides and consequently sites of putative DNA methylation. Because transcriptional regulation tightly correlates with specific epigenetic marks, we investigated the role of DNA methylation in the pathogenesis of X-linked dystonia-parkinsonism. Methods DNA methylation at DSC12, DSC3, and DSC2 was quantified by bisulfite pyrosequencing in DNA from peripheral blood leukocytes, fibroblasts, induced pluripotent stem cell-derived cortical neurons and brain tissue from X-linked dystonia-parkinsonism patients and age- and sex-matched healthy Filipino controls in a prospective study. Results Compared with controls, X-linked dystonia-parkinsonism patients showed striking differences in DNA methylation at the 3 investigated CpG sites. Using methylation-sensitive luciferase reporter gene assays and immunoprecipitation, we demonstrated (1) that lack of DNA methylation because of DSC2 and DSC3 affects gene promoter activity and (2) that methylation at all 3 investigated CpG sites alters DNA-protein interaction. Interestingly, DSC3 decreased promoter activity per se compared with wild type, and promoter activity further decreased when methylation was present. Moreover, we identified specific binding of proteins to the investigated DSCs that are associated with splicing and RNA and DNA binding. Conclusions We identified altered DNA methylation in X-linked dystonia-parkinsonism patients as a possible additional mechanism modulatingTAF1expression and putative novel targets for future therapies using DNA methylation-modifying agents. (c) 2020 The Authors.Movement Disorderspublished by Wiley Periodicals LLC on behalf of International Parkinson and Movement Disorder Society.
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页码:2220 / 2229
页数:10
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