Age at symptom onset and death and disease duration in genetic frontotemporal dementia: an international retrospective cohort study.
Journal
The Lancet. Neurology
ISSN: 1474-4465
Titre abrégé: Lancet Neurol
Pays: England
ID NLM: 101139309
Informations de publication
Date de publication:
02 2020
02 2020
Historique:
received:
21
05
2019
revised:
04
09
2019
accepted:
13
09
2019
pubmed:
8
12
2019
medline:
16
7
2020
entrez:
8
12
2019
Statut:
ppublish
Résumé
Frontotemporal dementia is a heterogenous neurodegenerative disorder, with about a third of cases being genetic. Most of this genetic component is accounted for by mutations in GRN, MAPT, and C9orf72. In this study, we aimed to complement previous phenotypic studies by doing an international study of age at symptom onset, age at death, and disease duration in individuals with mutations in GRN, MAPT, and C9orf72. In this international, retrospective cohort study, we collected data on age at symptom onset, age at death, and disease duration for patients with pathogenic mutations in the GRN and MAPT genes and pathological expansions in the C9orf72 gene through the Frontotemporal Dementia Prevention Initiative and from published papers. We used mixed effects models to explore differences in age at onset, age at death, and disease duration between genetic groups and individual mutations. We also assessed correlations between the age at onset and at death of each individual and the age at onset and at death of their parents and the mean age at onset and at death of their family members. Lastly, we used mixed effects models to investigate the extent to which variability in age at onset and at death could be accounted for by family membership and the specific mutation carried. Data were available from 3403 individuals from 1492 families: 1433 with C9orf72 expansions (755 families), 1179 with GRN mutations (483 families, 130 different mutations), and 791 with MAPT mutations (254 families, 67 different mutations). Mean age at symptom onset and at death was 49·5 years (SD 10·0; onset) and 58·5 years (11·3; death) in the MAPT group, 58·2 years (9·8; onset) and 65·3 years (10·9; death) in the C9orf72 group, and 61·3 years (8·8; onset) and 68·8 years (9·7; death) in the GRN group. Mean disease duration was 6·4 years (SD 4·9) in the C9orf72 group, 7·1 years (3·9) in the GRN group, and 9·3 years (6·4) in the MAPT group. Individual age at onset and at death was significantly correlated with both parental age at onset and at death and with mean family age at onset and at death in all three groups, with a stronger correlation observed in the MAPT group (r=0·45 between individual and parental age at onset, r=0·63 between individual and mean family age at onset, r=0·58 between individual and parental age at death, and r=0·69 between individual and mean family age at death) than in either the C9orf72 group (r=0·32 individual and parental age at onset, r=0·36 individual and mean family age at onset, r=0·38 individual and parental age at death, and r=0·40 individual and mean family age at death) or the GRN group (r=0·22 individual and parental age at onset, r=0·18 individual and mean family age at onset, r=0·22 individual and parental age at death, and r=0·32 individual and mean family age at death). Modelling showed that the variability in age at onset and at death in the MAPT group was explained partly by the specific mutation (48%, 95% CI 35-62, for age at onset; 61%, 47-73, for age at death), and even more by family membership (66%, 56-75, for age at onset; 74%, 65-82, for age at death). In the GRN group, only 2% (0-10) of the variability of age at onset and 9% (3-21) of that of age of death was explained by the specific mutation, whereas 14% (9-22) of the variability of age at onset and 20% (12-30) of that of age at death was explained by family membership. In the C9orf72 group, family membership explained 17% (11-26) of the variability of age at onset and 19% (12-29) of that of age at death. Our study showed that age at symptom onset and at death of people with genetic frontotemporal dementia is influenced by genetic group and, particularly for MAPT mutations, by the specific mutation carried and by family membership. Although estimation of age at onset will be an important factor in future pre-symptomatic therapeutic trials for all three genetic groups, our study suggests that data from other members of the family will be particularly helpful only for individuals with MAPT mutations. Further work in identifying both genetic and environmental factors that modify phenotype in all groups will be important to improve such estimates. UK Medical Research Council, National Institute for Health Research, and Alzheimer's Society.
Sections du résumé
BACKGROUND
Frontotemporal dementia is a heterogenous neurodegenerative disorder, with about a third of cases being genetic. Most of this genetic component is accounted for by mutations in GRN, MAPT, and C9orf72. In this study, we aimed to complement previous phenotypic studies by doing an international study of age at symptom onset, age at death, and disease duration in individuals with mutations in GRN, MAPT, and C9orf72.
METHODS
In this international, retrospective cohort study, we collected data on age at symptom onset, age at death, and disease duration for patients with pathogenic mutations in the GRN and MAPT genes and pathological expansions in the C9orf72 gene through the Frontotemporal Dementia Prevention Initiative and from published papers. We used mixed effects models to explore differences in age at onset, age at death, and disease duration between genetic groups and individual mutations. We also assessed correlations between the age at onset and at death of each individual and the age at onset and at death of their parents and the mean age at onset and at death of their family members. Lastly, we used mixed effects models to investigate the extent to which variability in age at onset and at death could be accounted for by family membership and the specific mutation carried.
FINDINGS
Data were available from 3403 individuals from 1492 families: 1433 with C9orf72 expansions (755 families), 1179 with GRN mutations (483 families, 130 different mutations), and 791 with MAPT mutations (254 families, 67 different mutations). Mean age at symptom onset and at death was 49·5 years (SD 10·0; onset) and 58·5 years (11·3; death) in the MAPT group, 58·2 years (9·8; onset) and 65·3 years (10·9; death) in the C9orf72 group, and 61·3 years (8·8; onset) and 68·8 years (9·7; death) in the GRN group. Mean disease duration was 6·4 years (SD 4·9) in the C9orf72 group, 7·1 years (3·9) in the GRN group, and 9·3 years (6·4) in the MAPT group. Individual age at onset and at death was significantly correlated with both parental age at onset and at death and with mean family age at onset and at death in all three groups, with a stronger correlation observed in the MAPT group (r=0·45 between individual and parental age at onset, r=0·63 between individual and mean family age at onset, r=0·58 between individual and parental age at death, and r=0·69 between individual and mean family age at death) than in either the C9orf72 group (r=0·32 individual and parental age at onset, r=0·36 individual and mean family age at onset, r=0·38 individual and parental age at death, and r=0·40 individual and mean family age at death) or the GRN group (r=0·22 individual and parental age at onset, r=0·18 individual and mean family age at onset, r=0·22 individual and parental age at death, and r=0·32 individual and mean family age at death). Modelling showed that the variability in age at onset and at death in the MAPT group was explained partly by the specific mutation (48%, 95% CI 35-62, for age at onset; 61%, 47-73, for age at death), and even more by family membership (66%, 56-75, for age at onset; 74%, 65-82, for age at death). In the GRN group, only 2% (0-10) of the variability of age at onset and 9% (3-21) of that of age of death was explained by the specific mutation, whereas 14% (9-22) of the variability of age at onset and 20% (12-30) of that of age at death was explained by family membership. In the C9orf72 group, family membership explained 17% (11-26) of the variability of age at onset and 19% (12-29) of that of age at death.
INTERPRETATION
Our study showed that age at symptom onset and at death of people with genetic frontotemporal dementia is influenced by genetic group and, particularly for MAPT mutations, by the specific mutation carried and by family membership. Although estimation of age at onset will be an important factor in future pre-symptomatic therapeutic trials for all three genetic groups, our study suggests that data from other members of the family will be particularly helpful only for individuals with MAPT mutations. Further work in identifying both genetic and environmental factors that modify phenotype in all groups will be important to improve such estimates.
FUNDING
UK Medical Research Council, National Institute for Health Research, and Alzheimer's Society.
Identifiants
pubmed: 31810826
pii: S1474-4422(19)30394-1
doi: 10.1016/S1474-4422(19)30394-1
pmc: PMC7007771
mid: NIHMS1067362
pii:
doi:
Substances chimiques
C9orf72 Protein
0
C9orf72 protein, human
0
GRN protein, human
0
MAPT protein, human
0
Progranulins
0
tau Proteins
0
Types de publication
Journal Article
Research Support, Non-U.S. Gov't
Langues
eng
Sous-ensembles de citation
IM
Pagination
145-156Subventions
Organisme : NIA NIH HHS
ID : P30 AG013854
Pays : United States
Organisme : Medical Research Council
ID : MC_U123160651
Pays : United Kingdom
Organisme : Medical Research Council
ID : MR/M008525/1
Pays : United Kingdom
Organisme : Medical Research Council
ID : MR/M023664/1
Pays : United Kingdom
Organisme : NIA NIH HHS
ID : P01 AG066597
Pays : United States
Organisme : NIA NIH HHS
ID : P30 AG072977
Pays : United States
Organisme : Medical Research Council
ID : MR/M018288/1
Pays : United Kingdom
Organisme : Medical Research Council
ID : MR/J009482/1
Pays : United Kingdom
Organisme : NIA NIH HHS
ID : P30 AG062421
Pays : United States
Organisme : NIA NIH HHS
ID : P50 AG008702
Pays : United States
Organisme : Medical Research Council
ID : MC_UU_00024/1
Pays : United Kingdom
Organisme : NIA NIH HHS
ID : U19 AG063911
Pays : United States
Investigateurs
Carolin Heller
(C)
Rhian S Convery
(RS)
Ione Oc Woollacott
(IO)
Rachelle M Shafei
(RM)
Jonathan Graff-Radford
(J)
David T Jones
(DT)
Christina M Dheel
(CM)
Rodolfo Savica
(R)
Maria I Lapid
(MI)
Matt Baker
(M)
Julie A Fields
(JA)
Ralitza Gavrilova
(R)
Kimiko Domoto-Reilly
(K)
Jackie M Poos
(JM)
Emma L Van der Ende
(EL)
Jessica L Panman
(JL)
Laura Donker Kaat
(L)
Harro Seelaar
(H)
Anna Richardson
(A)
Giovanni Frisoni
(G)
Anna Mega
(A)
Silvia Fostinelli
(S)
Huei-Hsin Chiang
(HH)
Antonella Alberici
(A)
Andrea Arighi
(A)
Chiara Fenoglio
(C)
Hilary Heuer
(H)
Bruce Miller
(B)
Anna Karydas
(A)
Jamie Fong
(J)
Maria João Leitão
(M)
Beatriz Santiago
(B)
Diana Duro
(D)
Carlos Ferreira
(C)
Alazne Gabilondo
(A)
Maria De Arriba
(M)
Mikel Tainta
(M)
Miren Zulaica
(M)
Catarina Ferreira
(C)
Elisa Semler
(E)
Albert Ludolph
(A)
Bernhard Landwehrmeyer
(B)
Alexander E Volk
(AE)
Gabriel Miltenberger
(G)
Ana Verdelho
(A)
Sónia Afonso
(S)
Maria Carmela Tartaglia
(MC)
Morris Freedman
(M)
Ekaterina Rogaeva
(E)
Camilla Ferrari
(C)
Irene Piaceri
(I)
Valentina Bessi
(V)
Gemma Lombardi
(G)
Frédéric St-Onge
(F)
Marie-Claire Doré
(MC)
Rose Bruffaerts
(R)
Mathieu Vandenbulcke
(M)
Jan Van den Stock
(J)
M Marsel Mesulam
(MM)
Eileen Bigio
(E)
Christos Koros
(C)
John Papatriantafyllou
(J)
Christos Kroupis
(C)
Leonidas Stefanis
(L)
Christien Shoesmith
(C)
Erik Robertson
(E)
Giovanni Coppola
(G)
Eliana Marisa Da Silva Ramos
(EM)
Daniel Geschwind
(D)
Commentaires et corrections
Type : CommentIn
Type : ErratumIn
Informations de copyright
Copyright © 2020 Elsevier Ltd. All rights reserved.
Références
J Neurol Neurosurg Psychiatry. 2013 Sep;84(9):956-62
pubmed: 23543794
Brain. 2018 Oct 1;141(10):2895-2907
pubmed: 30252044
J Alzheimers Dis. 2017;56(4):1271-1278
pubmed: 28128768
Ann Neurol. 2003 Nov;54(5):573-81
pubmed: 14595646
Neurobiol Aging. 2019 Feb;74:234.e1-234.e8
pubmed: 30337192
Lancet Neurol. 2018 Jun;17(6):548-558
pubmed: 29724592
Mol Psychiatry. 2016 Aug;21(8):1112-24
pubmed: 26481318
Glia. 2017 Feb;65(2):278-292
pubmed: 27778404
Alzheimers Dement (Amst). 2019 Mar 19;11:277-280
pubmed: 30949567
J Neuroinflammation. 2011 Jun 06;8:65
pubmed: 21645364
Mov Disord. 2008 Apr 30;23(6):892-5
pubmed: 18307268
Alzheimer Dis Assoc Disord. 2011 Jan-Mar;25(1):96-9
pubmed: 21343707
JAMA Neurol. 2017 Apr 1;74(4):445-452
pubmed: 28192553
Neurobiol Aging. 2009 May;30(5):739-51
pubmed: 17949857
Alzheimer Dis Assoc Disord. 2011 Jan-Mar;25(1):93-5
pubmed: 20711061
J Neurol Neurosurg Psychiatry. 2013 Feb;84(2):163-9
pubmed: 23117491
Acta Neuropathol. 2016 Nov;132(5):639-651
pubmed: 27543298
Am J Alzheimers Dis Other Demen. 2007 Aug-Sep;22(4):294-9
pubmed: 17712160
Neurology. 2014 Jul 15;83(3):253-60
pubmed: 24928124
Hum Mol Genet. 2006 Oct 15;15(20):2988-3001
pubmed: 16950801
Neurol Genet. 2017 Dec 13;3(6):e203
pubmed: 29264395
Acta Neuropathol. 2017 Aug;134(2):271-279
pubmed: 28439722
Acta Neuropathol. 2015 Jan;129(1):39-52
pubmed: 25388784
Lancet Neurol. 2013 Oct;12(10):978-88
pubmed: 24011653
Brain. 2008 Mar;131(Pt 3):706-20
pubmed: 18234697
Neurology. 2013 Nov 19;81(21):1832-9
pubmed: 24142474
Alzheimers Res Ther. 2018 Jan 9;10(1):2
pubmed: 29370822
Brain. 2008 Mar;131(Pt 3):732-46
pubmed: 18245784
Sci Rep. 2017 May 18;7(1):2116
pubmed: 28522837
BMJ. 2013 Aug 06;347:f4827
pubmed: 23920254
Amyotroph Lateral Scler Frontotemporal Degener. 2018 Feb;19(1-2):87-92
pubmed: 28990425
Nature. 2006 Aug 24;442(7105):916-9
pubmed: 16862116
J Clin Invest. 2012 Nov;122(11):3955-9
pubmed: 23041626
Neurology. 2009 Nov 3;73(18):1451-6
pubmed: 19884572
Lancet Neurol. 2015 Mar;14(3):253-62
pubmed: 25662776
Nature. 2006 Aug 24;442(7105):920-4
pubmed: 16862115
Hum Mol Genet. 2015 Jun 1;24(11):3133-42
pubmed: 25712133