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Jump from Pre-mutation to Pathologic Expansion in C9orf72
Author(s) -
Zhengrui Xi,
Marka van Blitterswijk,
Ming Zhang,
Philip McGoldrick,
Jesse R. McLean,
Yana Yunusova,
Erin Knock,
Danielle Moreno,
Christine Sato,
Paul M. McKeever,
Raphaël Schneider,
Julia Keith,
Nicolae Petrescu,
Paul E. Fraser,
Maria Carmela Tartaglia,
Matthew Baker,
Neill R. GraffRadford,
Khrista Boylan,
Dennis W. Dickson,
Ian R. Mackenzie,
Rosa Rademakers,
Janice Robertson,
Lorne Zinman,
Ekaterina Rogaeva
Publication year - 2015
Publication title -
the american journal of human genetics
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 6.661
H-Index - 302
eISSN - 1537-6605
pISSN - 0002-9297
DOI - 10.1016/j.ajhg.2015.04.016
Subject(s) - c9orf72 , trinucleotide repeat expansion , allele , offspring , biology , genetics , amyotrophic lateral sclerosis , population , haplotype , family history , frontotemporal lobar degeneration , frontotemporal dementia , disease , gene , pathology , medicine , dementia , pregnancy , environmental health
An expanded G4C2 repeat in C9orf72 represents the most common known genetic cause of amyotrophic lateral sclerosis (ALS) and frontotemporal lobar degeneration (FTLD). However, the lower limit for pathological expansions is unknown (the suggested cutoff is 30 repeats). It has been proposed that the expansion might have occurred only once in human history and subsequently spread throughout the population. However, our present findings support a hypothesis of multiple origins for the expansion. We report a British-Canadian family in whom a ∼70-repeat allele from the father (unaffected by ALS or FTLD at age 89 years) expanded during parent-offspring transmission and started the first generation affected by ALS (four children carry an ∼1,750-repeat allele). Epigenetic and RNA-expression analyses further discriminated the offspring's large expansions (which were methylated and associated with reduced C9orf72 expression) from the ∼70-repeat allele (which was unmethylated and associated with upregulation of C9orf72). Moreover, RNA foci were only detected in fibroblasts from offspring with large expansions, but not in the father, who has the ∼70-repeat allele. All family members with expansions were found to have an ancient known risk haplotype, although it was inherited on a unique 5-Mb genetic backbone. We conclude that small expansions (e.g., 70 repeats) might be considered "pre-mutations" to reflect their propensity to expand in the next generation. Follow-up studies might help explain the high frequency of ALS- or FTLD-affected individuals with an expansion but without a familial history (e.g., 21% among Finnish ALS subjects).

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