Literature DB >> 20142524

The spectrum of mutations in progranulin: a collaborative study screening 545 cases of neurodegeneration.

Chang-En Yu1, Thomas D Bird, Lynn M Bekris, Thomas J Montine, James B Leverenz, Ellen Steinbart, Nichole M Galloway, Howard Feldman, Randall Woltjer, Carol A Miller, Elisabeth McCarty Wood, Murray Grossman, Leo McCluskey, Christopher M Clark, Manuela Neumann, Adrian Danek, Douglas R Galasko, Steven E Arnold, Alice Chen-Plotkin, Anna Karydas, Bruce L Miller, John Q Trojanowski, Virginia M-Y Lee, Gerard D Schellenberg, Vivianna M Van Deerlin.   

Abstract

BACKGROUND: Mutation in the progranulin gene (GRN) can cause frontotemporal dementia (FTD). However, it is unclear whether some rare FTD-related GRN variants are pathogenic and whether neurodegenerative disorders other than FTD can also be caused by GRN mutations.
OBJECTIVES: To delineate the range of clinical presentations associated with GRN mutations and to define pathogenic candidacy of rare GRN variants.
DESIGN: Case-control study.
SETTING: Clinical and neuropathology dementia research studies at 8 academic centers. PARTICIPANTS: Four hundred thirty-four patients with FTD, including primary progressive aphasia, semantic dementia, FTD/amyotrophic lateral sclerosis (ALS), FTD/motor neuron disease, corticobasal syndrome/corticobasal degeneration, progressive supranuclear palsy, Pick disease, dementia lacking distinctive histopathology, and pathologically confirmed cases of frontotemporal lobar degeneration with ubiquitin-positive inclusions (FTLD-U); and 111 non-FTD cases (controls) in which TDP-43 deposits were a prominent neuropathological feature, including subjects with ALS, Guam ALS and/or parkinsonism dementia complex, Guam dementia, Alzheimer disease, multiple system atrophy, and argyrophilic grain disease. MAIN OUTCOME MEASURES: Variants detected on sequencing of all 13 GRN exons and at least 80 base pairs of flanking introns, and their pathogenic candidacy determined by in silico and ex vivo splicing assays.
RESULTS: We identified 58 genetic variants that included 26 previously unknown changes. Twenty-four variants appeared to be pathogenic, including 8 novel mutations. The frequency of GRN mutations was 6.9% (30 of 434) of all FTD-spectrum cases, 21.4% (9 of 42) of cases with a pathological diagnosis of FTLD-U, 16.0% (28 of 175) of FTD-spectrum cases with a family history of a similar neurodegenerative disease, and 56.2% (9 of 16) of cases of FTLD-U with a family history.
CONCLUSIONS: Pathogenic mutations were found only in FTD-spectrum cases and not in other related neurodegenerative diseases. Haploinsufficiency of GRN is the predominant mechanism leading to FTD.

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Year:  2010        PMID: 20142524      PMCID: PMC2901991          DOI: 10.1001/archneurol.2009.328

Source DB:  PubMed          Journal:  Arch Neurol        ISSN: 0003-9942


  54 in total

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6.  Frontotemporal dementia in The Netherlands: patient characteristics and prevalence estimates from a population-based study.

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Journal:  Brain       Date:  2003-07-22       Impact factor: 13.501

7.  Familial aggregation in frontotemporal dementia.

Authors:  M Stevens; C M van Duijn; W Kamphorst; P de Knijff; P Heutink; W A van Gool; P Scheltens; R Ravid; B A Oostra; M F Niermeijer; J C van Swieten
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Review 8.  Genomic variants in exons and introns: identifying the splicing spoilers.

Authors:  Franco Pagani; Francisco E Baralle
Journal:  Nat Rev Genet       Date:  2004-05       Impact factor: 53.242

9.  Inheritance of frontotemporal dementia.

Authors:  T W Chow; B L Miller; V N Hayashi; D H Geschwind
Journal:  Arch Neurol       Date:  1999-07

10.  Familial amyotrophic lateral sclerosis with frontotemporal dementia is linked to a locus on chromosome 9p13.2-21.3.

Authors:  Caroline Vance; Ammar Al-Chalabi; Deborah Ruddy; Bradley N Smith; Xun Hu; Jemeen Sreedharan; Teepu Siddique; H Jurgen Schelhaas; Benno Kusters; Dirk Troost; Frank Baas; Vianney de Jong; Christopher E Shaw
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  75 in total

1.  Frontotemporal dementia-related gene mutations in clinical dementia patients from a Chinese population.

Authors:  Zhihong Shi; Shuai Liu; Lei Xiang; Ying Wang; Mengyuan Liu; Shuling Liu; Tong Han; Yuying Zhou; Jinhuan Wang; Li Cai; Shuo Gao; Yong Ji
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2.  An algorithm for genetic testing of frontotemporal lobar degeneration.

Authors:  J S Goldman; R Rademakers; E D Huey; A L Boxer; R Mayeux; B L Miller; B F Boeve
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Review 3.  Frontotemporal lobar degeneration: current knowledge and future challenges.

Authors:  Chiara Cerami; Elio Scarpini; Stefano F Cappa; Daniela Galimberti
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Review 5.  Extrapyramidal syndromes in frontotemporal degeneration.

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7.  Circulating progranulin as a biomarker for neurodegenerative diseases.

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8.  C9ORF72 repeat expansions and other FTD gene mutations in a clinical AD patient series from Mayo Clinic.

Authors:  Aleksandra Wojtas; Kristin A Heggeli; Nicole Finch; Matt Baker; Mariely Dejesus-Hernandez; Steven G Younkin; Dennis W Dickson; Neill R Graff-Radford; Rosa Rademakers
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9.  C9orf72 hexanucleotide repeat expansion and Guam amyotrophic lateral sclerosis-Parkinsonism-dementia complex.

Authors:  Beth A Dombroski; Douglas R Galasko; Ignacio F Mata; Cyrus P Zabetian; Ulla-Katrina Craig; Ralph M Garruto; Kiyomitsu Oyanagi; Gerard D Schellenberg
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10.  Missense mutations in progranulin gene associated with frontotemporal lobar degeneration: study of pathogenetic features.

Authors:  Celeste M Karch; Lubov Ezerskiy; Veronica Redaelli; Anna Rita Giovagnoli; Pietro Tiraboschi; Giuseppe Pelliccioni; Paolo Pelliccioni; Dimos Kapetis; Ilaria D'Amato; Elena Piccoli; Maria Giulia Ferretti; Fabrizio Tagliavini; Giacomina Rossi
Journal:  Neurobiol Aging       Date:  2015-11-02       Impact factor: 4.673

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