Literature DB >> 11186892

Family and molecular data for a fine analysis of age at onset in Huntington disease.

F Squitieri1, G Sabbadini, P Mandich, C Gellera, E Di Maria, E Bellone, B Castellotti, E Nargi, U de Grazia, M Frontali, A Novelletto.   

Abstract

We analyzed the data on age at onset and CAG size of 319 patients clinically diagnosed with Huntington disease (HD) and 86 presymptomatic subjects recorded by four Italian Centers over the last 14 years. To overcome the problem of different CAG numbers found in each subject, also in the same family, the data were analyzed in terms of deviations from the average exponential relationship between onset and CAG number. The subject's year of birth was also considered to quantify possible sampling biases. Observations between relatives were compared with those of the whole group. The deviations were equal, on average, in subjects who inherited their HD gene from their fathers or mothers. Overall, our data argue in favor of a greater similarity across the same generation than across successive generations. In particular, an excess of parents with later than expected age of onset was observed, paralleled by a CAG-independent anticipation of onset in parent-child transmissions. These results can be interpreted in terms of a shared environment determining similar departures from the average CAG-onset relationship but also of a systematic effect that differentiates the two generations here examined.

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Year:  2000        PMID: 11186892     DOI: 10.1002/1096-8628(20001211)95:4<366::aid-ajmg13>3.0.co;2-2

Source DB:  PubMed          Journal:  Am J Med Genet        ISSN: 0148-7299


  15 in total

1.  Genetic background modulates behavioral impairments in R6/2 mice and suggests a role for dominant genetic modifiers in Huntington’s disease pathogenesis.

Authors:  Randi-Michelle Cowin; Nghiem Bui; Deanna Graham; Jennie R Green; Lisa A Yuva-Paylor; Andreas Weiss; Richard Paylor
Journal:  Mamm Genome       Date:  2012-06       Impact factor: 2.957

2.  Reduced penetrance alleles for Huntington's disease: a multi-centre direct observational study.

Authors:  Oliver W J Quarrell; Alan S Rigby; L Barron; Y Crow; A Dalton; N Dennis; A E Fryer; F Heydon; E Kinning; A Lashwood; M Losekoot; L Margerison; S McDonnell; P J Morrison; A Norman; M Peterson; F L Raymond; S Simpson; E Thompson; J Warner
Journal:  J Med Genet       Date:  2007-03       Impact factor: 6.318

3.  Death of neuronal clusters contributes to variance of age at onset in Huntington's disease.

Authors:  Branka Cajavec; Hanspeter Herzel; Samuel Bernard
Journal:  Neurogenetics       Date:  2006-01-14       Impact factor: 2.660

Review 4.  CAG-repeat length and the age of onset in Huntington disease (HD): a review and validation study of statistical approaches.

Authors:  Douglas R Langbehn; Michael R Hayden; Jane S Paulsen
Journal:  Am J Med Genet B Neuropsychiatr Genet       Date:  2010-03-05       Impact factor: 3.568

Review 5.  Molecular medicine: predicting and preventing Huntington's disease.

Authors:  Ferdinando Squitieri; Milena Cannella; Luigi Frati
Journal:  Neurol Sci       Date:  2008-09-20       Impact factor: 3.307

6.  Indexing disease progression at study entry with individuals at-risk for Huntington disease.

Authors:  Ying Zhang; Jeffrey D Long; James A Mills; John H Warner; Wenjing Lu; Jane S Paulsen
Journal:  Am J Med Genet B Neuropsychiatr Genet       Date:  2011-08-19       Impact factor: 3.568

7.  18F-FDG PET uptake in the pre-Huntington disease caudate affects the time-to-onset independently of CAG expansion size.

Authors:  Andrea Ciarmiello; Giampiero Giovacchini; Sara Orobello; Laura Bruselli; Francesca Elifani; Ferdinando Squitieri
Journal:  Eur J Nucl Med Mol Imaging       Date:  2012-04-12       Impact factor: 9.236

8.  NR2A and NR2B receptor gene variations modify age at onset in Huntington disease in a sex-specific manner.

Authors:  Larissa Arning; Carsten Saft; Stefan Wieczorek; Jürgen Andrich; Peter H Kraus; Jörg T Epplen
Journal:  Hum Genet       Date:  2007-06-14       Impact factor: 4.132

9.  Venezuelan kindreds reveal that genetic and environmental factors modulate Huntington's disease age of onset.

Authors:  Nancy S Wexler; Judith Lorimer; Julie Porter; Fidela Gomez; Carol Moskowitz; Edith Shackell; Karen Marder; Graciela Penchaszadeh; Simone A Roberts; Javier Gayán; Denise Brocklebank; Stacey S Cherny; Lon R Cardon; Jacqueline Gray; Stephen R Dlouhy; Sandra Wiktorski; Marion E Hodes; P Michael Conneally; Jack B Penney; James Gusella; Jang-Ho Cha; Michael Irizarry; Diana Rosas; Steven Hersch; Zane Hollingsworth; Marcy MacDonald; Anne B Young; J Michael Andresen; David E Housman; Margot Mieja De Young; Ernesto Bonilla; Theresa Stillings; Americo Negrette; S Robert Snodgrass; Maria Dolores Martinez-Jaurrieta; Maria A Ramos-Arroyo; Jacqueline Bickham; Juan Sanchez Ramos; Frederick Marshall; Ira Shoulson; Gustavo J Rey; Andrew Feigin; Norman Arnheim; Amarilis Acevedo-Cruz; Leticia Acosta; Jose Alvir; Kenneth Fischbeck; Leslie M Thompson; Angela Young; Leon Dure; Christopher J O'Brien; Jane Paulsen; Adam Brickman; Denise Krch; Shelley Peery; Penelope Hogarth; Donald S Higgins; Bernhard Landwehrmeyer
Journal:  Proc Natl Acad Sci U S A       Date:  2004-03-01       Impact factor: 11.205

10.  A Drosophila model of Huntington disease-like 2 exhibits nuclear toxicity and distinct pathogenic mechanisms from Huntington disease.

Authors:  Megan Krench; Richard W Cho; J Troy Littleton
Journal:  Hum Mol Genet       Date:  2016-06-10       Impact factor: 6.150

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