Skip to main content
Top
Published in: Acta Neuropathologica Communications 1/2023

Open Access 01-12-2023 | Case report

A heterozygous splicing variant IVS9-7A > T in intron 9 of the MAPT gene in a patient with right-temporal variant frontotemporal dementia with atypical 4 repeat tauopathy

Authors: Kohji Mori, Kazue Shigenobu, Goichi Beck, Ryota Uozumi, Yuto Satake, Maki Suzuki, Shizuko Kondo, Shiho Gotoh, Yuki Yonenobu, Makiko Kawai, Yuki Suzuki, Yuko Saito, Eiichi Morii, Masato Hasegawa, Hideki Mochizuki, Shigeo Murayama, Manabu Ikeda

Published in: Acta Neuropathologica Communications | Issue 1/2023

Login to get access

Abstract

Right temporal variant frontotemporal dementia, also called right-predominant semantic dementia, often has an unclear position within the framework of the updated diagnostic criteria for behavioral variant frontotemporal dementia or primary progressive aphasia. Recent studies have suggested that this population may be clinically, neuropathologically, and genetically distinct from those with behavioral variant frontotemporal dementia or left-predominant typical semantic variant primary progressive aphasia. Here we describe a Japanese case of right temporal variant frontotemporal dementia with novel heterozygous MAPT mutation Adenine to Thymidine in intervening sequence (IVS) 9 at position -7 from 3ʹ splicing site of intron 9/exon 10 boundary (MAPT IVS9-7A > T). Postmortem neuropathological analysis revealed a predominant accumulation of 4 repeat tau, especially in the temporal lobe, amygdala, and substantia nigra, but lacked astrocytic plaques or tufted astrocytes. Immunoelectron microscopy of the tau filaments extracted from the brain revealed a ribbon-like structure. Moreover, a cellular MAPT splicing assay confirmed that this novel variant promoted the inclusion of exon 10, resulting in the predominant production of 4 repeat tau. These data strongly suggest that the MAPT IVS9-7 A > T variant found in our case is a novel mutation that stimulates the inclusion of exon 10 through alternative splicing of MAPT transcript and causes predominant 4 repeat tauopathy which clinically presents as right temporal variant frontotemporal dementia.
Literature
1.
go back to reference Neary D, Snowden J, Gustafson L, Passant U, Stuss D, Black S et al (1998) Frontotemporal lobar degeneration: a consensus on clinical diagnostic criteria. Neurology 51:1546–1554CrossRefPubMed Neary D, Snowden J, Gustafson L, Passant U, Stuss D, Black S et al (1998) Frontotemporal lobar degeneration: a consensus on clinical diagnostic criteria. Neurology 51:1546–1554CrossRefPubMed
2.
go back to reference Rascovsky K, Hodges JR, Knopman D, Mendez MF, Kramer JH, Neuhaus J et al (2011) Sensitivity of revised diagnostic criteria for the behavioural variant of frontotemporal dementia. Brain 134:2456–2477CrossRefPubMedPubMedCentral Rascovsky K, Hodges JR, Knopman D, Mendez MF, Kramer JH, Neuhaus J et al (2011) Sensitivity of revised diagnostic criteria for the behavioural variant of frontotemporal dementia. Brain 134:2456–2477CrossRefPubMedPubMedCentral
4.
go back to reference Seeley WW, Bauer AM, Miller BL, Gorno-Tempini ML, Kramer JH, Weiner M et al (2005) The natural history of temporal variant frontotemporal dementia. Neurology 64:1384–1390CrossRefPubMed Seeley WW, Bauer AM, Miller BL, Gorno-Tempini ML, Kramer JH, Weiner M et al (2005) The natural history of temporal variant frontotemporal dementia. Neurology 64:1384–1390CrossRefPubMed
5.
go back to reference Hodges JR, Patterson K, Oxbury S, Funnell E (1992) Semantic dementia: progressive fluent aphasia with temporal lobe atrophy. Brain 115:1783–1806CrossRefPubMed Hodges JR, Patterson K, Oxbury S, Funnell E (1992) Semantic dementia: progressive fluent aphasia with temporal lobe atrophy. Brain 115:1783–1806CrossRefPubMed
6.
go back to reference Thompson SA, Patterson K, Hodges JR (2003) Left/right asymmetry of atrophy in semantic dementia. Neurology 61:1196–1203CrossRefPubMed Thompson SA, Patterson K, Hodges JR (2003) Left/right asymmetry of atrophy in semantic dementia. Neurology 61:1196–1203CrossRefPubMed
7.
go back to reference Chan D, Anderson V, Pijnenburg Y, Whitwell J, Barnes J, Scahill R et al (2009) The clinical profile of right temporal lobe atrophy. Brain 132:1287–1298CrossRefPubMed Chan D, Anderson V, Pijnenburg Y, Whitwell J, Barnes J, Scahill R et al (2009) The clinical profile of right temporal lobe atrophy. Brain 132:1287–1298CrossRefPubMed
8.
go back to reference Kumfor F, Landin-Romero R, Devenney E, Hutchings R, Grasso R, Hodges JR et al (2016) On the right side? A longitudinal study of left- versus right-lateralized semantic dementia. Brain 139:986–998CrossRefPubMed Kumfor F, Landin-Romero R, Devenney E, Hutchings R, Grasso R, Hodges JR et al (2016) On the right side? A longitudinal study of left- versus right-lateralized semantic dementia. Brain 139:986–998CrossRefPubMed
9.
go back to reference Gorno-Tempini M, Hillis A, Weintraub S, Kertesz A, Mendez M, Cappa S et al (2011) Classification of primary progressive aphasia and its variants. Neurology 76:1006–1014CrossRefPubMedPubMedCentral Gorno-Tempini M, Hillis A, Weintraub S, Kertesz A, Mendez M, Cappa S et al (2011) Classification of primary progressive aphasia and its variants. Neurology 76:1006–1014CrossRefPubMedPubMedCentral
10.
go back to reference Miller BL, Chang L, Mena I, Boone K, Lesser IM (1993) Progressive right frontotemporal degeneration: clinical, neuropsychological and SPECT characteristics. Dement Geriatr Cogn 4:204–213CrossRef Miller BL, Chang L, Mena I, Boone K, Lesser IM (1993) Progressive right frontotemporal degeneration: clinical, neuropsychological and SPECT characteristics. Dement Geriatr Cogn 4:204–213CrossRef
11.
go back to reference Josephs KA, Whitwell JL, Knopman DS, Boeve BF, Vemuri P, Senjem ML et al (2009) Two distinct subtypes of right temporal variant frontotemporal dementia. Neurology 73:1443–1450CrossRefPubMedPubMedCentral Josephs KA, Whitwell JL, Knopman DS, Boeve BF, Vemuri P, Senjem ML et al (2009) Two distinct subtypes of right temporal variant frontotemporal dementia. Neurology 73:1443–1450CrossRefPubMedPubMedCentral
12.
go back to reference Erkoyun HU, Groot C, Heilbron R, Nelissen A, van Rossum J, Jutten R et al (2020) A clinical-radiological framework of the right temporal variant of frontotemporal dementia. Brain 143:2831–2843CrossRef Erkoyun HU, Groot C, Heilbron R, Nelissen A, van Rossum J, Jutten R et al (2020) A clinical-radiological framework of the right temporal variant of frontotemporal dementia. Brain 143:2831–2843CrossRef
13.
go back to reference Rohrer JD, Guerreiro R, Vandrovcova J, Uphill J, Reiman D, Beck J et al (2009) The heritability and genetics of frontotemporal lobar degeneration. Neurology 73:1451–1456CrossRefPubMedPubMedCentral Rohrer JD, Guerreiro R, Vandrovcova J, Uphill J, Reiman D, Beck J et al (2009) The heritability and genetics of frontotemporal lobar degeneration. Neurology 73:1451–1456CrossRefPubMedPubMedCentral
14.
go back to reference Goldman JS, Farmer JM, Wood EM, Johnson JK, Boxer A, Neuhaus J et al (2005) Comparison of family histories in FTLD subtypes and related tauopathies. Neurology 65:1817–1819CrossRefPubMed Goldman JS, Farmer JM, Wood EM, Johnson JK, Boxer A, Neuhaus J et al (2005) Comparison of family histories in FTLD subtypes and related tauopathies. Neurology 65:1817–1819CrossRefPubMed
15.
go back to reference Hodges JR, Mitchell J, Dawson K, Spillantini MG, Xuereb JH, McMonagle P et al (2010) Semantic dementia: demography, familial factors and survival in a consecutive series of 100 cases. Brain 133:300–306CrossRefPubMed Hodges JR, Mitchell J, Dawson K, Spillantini MG, Xuereb JH, McMonagle P et al (2010) Semantic dementia: demography, familial factors and survival in a consecutive series of 100 cases. Brain 133:300–306CrossRefPubMed
16.
go back to reference Bergeron D, Gorno-Tempini ML, Rabinovici GD, Santos-Santos MA, Seeley W, Miller BL et al (2018) Prevalence of amyloid-β pathology in distinct variants of primary progressive aphasia. Ann Neurol 84:729CrossRefPubMedPubMedCentral Bergeron D, Gorno-Tempini ML, Rabinovici GD, Santos-Santos MA, Seeley W, Miller BL et al (2018) Prevalence of amyloid-β pathology in distinct variants of primary progressive aphasia. Ann Neurol 84:729CrossRefPubMedPubMedCentral
17.
go back to reference Spinelli EG, Mandelli M, Miller ZA, Santos-Santos MA, Wilson SM, Agosta F et al (2017) Typical and atypical pathology in primary progressive aphasia variants. Ann Neurol 81:430–443CrossRefPubMedPubMedCentral Spinelli EG, Mandelli M, Miller ZA, Santos-Santos MA, Wilson SM, Agosta F et al (2017) Typical and atypical pathology in primary progressive aphasia variants. Ann Neurol 81:430–443CrossRefPubMedPubMedCentral
18.
go back to reference Erkoyun HU, van der Lee SJ, Nijmeijer B, van Spaendonk R, Nelissen A, Scarioni M et al (2021) The right temporal variant of frontotemporal dementia is not genetically sporadic: a case series. J Alzheimer’s Dis 79:1195–1201CrossRef Erkoyun HU, van der Lee SJ, Nijmeijer B, van Spaendonk R, Nelissen A, Scarioni M et al (2021) The right temporal variant of frontotemporal dementia is not genetically sporadic: a case series. J Alzheimer’s Dis 79:1195–1201CrossRef
19.
go back to reference Kawakatsu S, Kobayashi R, Morioka D, Hayashi H, Utsunomiya A, Kabasawa T et al (2023) Clinicopathological diversity of semantic dementia: comparisons of patients with early-onset versus late-onset, left-sided versus right-sided temporal atrophy, and TDP-type A versus type C pathology. Neuropathology 43:5–26CrossRefPubMed Kawakatsu S, Kobayashi R, Morioka D, Hayashi H, Utsunomiya A, Kabasawa T et al (2023) Clinicopathological diversity of semantic dementia: comparisons of patients with early-onset versus late-onset, left-sided versus right-sided temporal atrophy, and TDP-type A versus type C pathology. Neuropathology 43:5–26CrossRefPubMed
20.
go back to reference Olszewska DA, Fearon C, McGuigan C, McVeigh TP, Houlden H, Polke JM et al (2021) A clinical, molecular genetics and pathological study of a FTDP-17 family with a heterozygous splicing variant c.823–10G>T at the intron 9/exon 10 of the MAPT gene. Neurobiol Aging 106:343.e1-343.e8CrossRefPubMed Olszewska DA, Fearon C, McGuigan C, McVeigh TP, Houlden H, Polke JM et al (2021) A clinical, molecular genetics and pathological study of a FTDP-17 family with a heterozygous splicing variant c.823–10G>T at the intron 9/exon 10 of the MAPT gene. Neurobiol Aging 106:343.e1-343.e8CrossRefPubMed
21.
go back to reference Shigenobu K, Ikeda M, Fukuhara R, Maki N, Hokoishi K, Nebu A et al (2002) The Stereotypy Rating Inventory for frontotemporal lobar degeneration. Psychiat Res 110:175–187CrossRef Shigenobu K, Ikeda M, Fukuhara R, Maki N, Hokoishi K, Nebu A et al (2002) The Stereotypy Rating Inventory for frontotemporal lobar degeneration. Psychiat Res 110:175–187CrossRef
22.
go back to reference Mioshi E, Dawson K, Mitchell J, Arnold R, Hodges JR (2006) The Addenbrooke’s Cognitive Examination Revised (ACE-R): a brief cognitive test battery for dementia screening. Int J Geriatr Psychiatry 21:1078–1085CrossRefPubMed Mioshi E, Dawson K, Mitchell J, Arnold R, Hodges JR (2006) The Addenbrooke’s Cognitive Examination Revised (ACE-R): a brief cognitive test battery for dementia screening. Int J Geriatr Psychiatry 21:1078–1085CrossRefPubMed
23.
go back to reference Japan Society for Higher Brain Dysfunction. Visual Perception Test for Agnosia Famous Face Test version 2 (VPTA-FFT ver.2). Shinkoh Igaku Shuppan Co., Ltd.; 2015. Japan Society for Higher Brain Dysfunction. Visual Perception Test for Agnosia Famous Face Test version 2 (VPTA-FFT ver.2). Shinkoh Igaku Shuppan Co., Ltd.; 2015.
24.
go back to reference Fujita I, Monoi H, Okudaira N, Ueda M, Ono K, Shimogaki Y et al (2000) Developing a test of lexical processing in aphasia (TLPA). Jpn J Logop Phoniatr 41:179–202CrossRef Fujita I, Monoi H, Okudaira N, Ueda M, Ono K, Shimogaki Y et al (2000) Developing a test of lexical processing in aphasia (TLPA). Jpn J Logop Phoniatr 41:179–202CrossRef
25.
go back to reference Armstrong MJ, Litvan I, Lang AE, Bak TH, Bhatia KP, Borroni B et al (2013) Criteria for the diagnosis of corticobasal degeneration. Neurology 80:496–503CrossRefPubMedPubMedCentral Armstrong MJ, Litvan I, Lang AE, Bak TH, Bhatia KP, Borroni B et al (2013) Criteria for the diagnosis of corticobasal degeneration. Neurology 80:496–503CrossRefPubMedPubMedCentral
26.
go back to reference Thal DR, Rüb U, Orantes M, Braak H (2002) Phases of Abeta-deposition in the human brain and its relevance for the development of AD. Neurology 58:1791–1800CrossRefPubMed Thal DR, Rüb U, Orantes M, Braak H (2002) Phases of Abeta-deposition in the human brain and its relevance for the development of AD. Neurology 58:1791–1800CrossRefPubMed
27.
go back to reference Tarutani A, Adachi T, Akatsu H, Hashizume Y, Hasegawa K, Saito Y et al (2022) Ultrastructural and biochemical classification of pathogenic tau, α-synuclein and TDP-43. Acta Neuropathol 143:613–640CrossRefPubMedPubMedCentral Tarutani A, Adachi T, Akatsu H, Hashizume Y, Hasegawa K, Saito Y et al (2022) Ultrastructural and biochemical classification of pathogenic tau, α-synuclein and TDP-43. Acta Neuropathol 143:613–640CrossRefPubMedPubMedCentral
28.
go back to reference D’Souza I, Schellenberg GD (2002) tau Exon 10 expression involves a bipartite intron 10 regulatory sequence and weak 5′ and 3′ splice sites. J Biol Chem 277:26587–26599CrossRefPubMed D’Souza I, Schellenberg GD (2002) tau Exon 10 expression involves a bipartite intron 10 regulatory sequence and weak 5′ and 3′ splice sites. J Biol Chem 277:26587–26599CrossRefPubMed
29.
go back to reference Malkani R, D’Souza I, Gwinn-Hardy K, Schellenberg GD, Hardy J, Momeni P (2006) A MAPT mutation in a regulatory element upstream of exon 10 causes frontotemporal dementia. Neurobiol Dis 22:401–403CrossRefPubMed Malkani R, D’Souza I, Gwinn-Hardy K, Schellenberg GD, Hardy J, Momeni P (2006) A MAPT mutation in a regulatory element upstream of exon 10 causes frontotemporal dementia. Neurobiol Dis 22:401–403CrossRefPubMed
30.
go back to reference Spillantini MG, Murrell JR, Goedert M, Farlow MR, Klug A, Ghetti B (1998) Mutation in the tau gene in familial multiple system tauopathy with presenile dementia. Proc Natl Acad Sci 95:7737–7741CrossRefPubMedPubMedCentral Spillantini MG, Murrell JR, Goedert M, Farlow MR, Klug A, Ghetti B (1998) Mutation in the tau gene in familial multiple system tauopathy with presenile dementia. Proc Natl Acad Sci 95:7737–7741CrossRefPubMedPubMedCentral
31.
go back to reference Miyamoto K, Kowalska A, Hasegawa M, Tabira T, Takahashi K, Araki W et al (2001) Familial frontotemporal dementia and parkinsonism with a novel mutation at an intron 10+11-splice site in the tau gene. Ann Neurol 50:117–120CrossRefPubMed Miyamoto K, Kowalska A, Hasegawa M, Tabira T, Takahashi K, Araki W et al (2001) Familial frontotemporal dementia and parkinsonism with a novel mutation at an intron 10+11-splice site in the tau gene. Ann Neurol 50:117–120CrossRefPubMed
32.
go back to reference Kowalska A, Hasegawa M, Miyamoto K, Akiguchi I, Ikemoto A, Takahashi K et al (2002) A novel mutation at position +11 in the intron following exon 10 of the tau gene in FTDP-17. J Appl Genet 43:535–543PubMed Kowalska A, Hasegawa M, Miyamoto K, Akiguchi I, Ikemoto A, Takahashi K et al (2002) A novel mutation at position +11 in the intron following exon 10 of the tau gene in FTDP-17. J Appl Genet 43:535–543PubMed
33.
go back to reference Stanford PM, Shepherd CE, Halliday GM, Brooks WS, Schofield PW, Brodaty H et al (2003) Mutations in the tau gene that cause an increase in three repeat tau and frontotemporal dementia. Brain 126:814–826CrossRefPubMed Stanford PM, Shepherd CE, Halliday GM, Brooks WS, Schofield PW, Brodaty H et al (2003) Mutations in the tau gene that cause an increase in three repeat tau and frontotemporal dementia. Brain 126:814–826CrossRefPubMed
34.
go back to reference Sato S, Hashimoto M, Yoshiyama K, Kanemoto H, Hotta M, Azuma S et al (2021) Characteristics of behavioral symptoms in right-sided predominant semantic dementia and their impact on caregiver burden: a cross-sectional study. Alzheimer’s Res Ther 13:166CrossRef Sato S, Hashimoto M, Yoshiyama K, Kanemoto H, Hotta M, Azuma S et al (2021) Characteristics of behavioral symptoms in right-sided predominant semantic dementia and their impact on caregiver burden: a cross-sectional study. Alzheimer’s Res Ther 13:166CrossRef
35.
go back to reference Ulugut H, Dijkstra AA, Scarioni M, Bank NB, Barkhof F, Scheltens P et al (2021) Right temporal variant frontotemporal dementia is pathologically heterogeneous: a case-series and a systematic review. Acta Neuropathol Commun 9:131CrossRefPubMedPubMedCentral Ulugut H, Dijkstra AA, Scarioni M, Bank NB, Barkhof F, Scheltens P et al (2021) Right temporal variant frontotemporal dementia is pathologically heterogeneous: a case-series and a systematic review. Acta Neuropathol Commun 9:131CrossRefPubMedPubMedCentral
36.
go back to reference Richards S, Aziz N, Bale S, Bick D, Das S, Gastier-Foster J et al (2015) Standards and guidelines for the interpretation of sequence variants: a joint consensus recommendation of the American College of Medical Genetics and Genomics and the Association for Molecular Pathology. Genet Med Off J Am Coll Med Genet 17:405–424 Richards S, Aziz N, Bale S, Bick D, Das S, Gastier-Foster J et al (2015) Standards and guidelines for the interpretation of sequence variants: a joint consensus recommendation of the American College of Medical Genetics and Genomics and the Association for Molecular Pathology. Genet Med Off J Am Coll Med Genet 17:405–424
Metadata
Title
A heterozygous splicing variant IVS9-7A > T in intron 9 of the MAPT gene in a patient with right-temporal variant frontotemporal dementia with atypical 4 repeat tauopathy
Authors
Kohji Mori
Kazue Shigenobu
Goichi Beck
Ryota Uozumi
Yuto Satake
Maki Suzuki
Shizuko Kondo
Shiho Gotoh
Yuki Yonenobu
Makiko Kawai
Yuki Suzuki
Yuko Saito
Eiichi Morii
Masato Hasegawa
Hideki Mochizuki
Shigeo Murayama
Manabu Ikeda
Publication date
01-12-2023
Publisher
BioMed Central
Published in
Acta Neuropathologica Communications / Issue 1/2023
Electronic ISSN: 2051-5960
DOI
https://doi.org/10.1186/s40478-023-01629-3

Other articles of this Issue 1/2023

Acta Neuropathologica Communications 1/2023 Go to the issue