Genetic and clinical landscape of Chinese frontotemporal dementia: dominance of TBK1 and OPTN mutations

被引:0
作者
Nan, Haitian [1 ]
Kim, Yeon-Jeong [2 ]
Chu, Min [1 ]
Li, Dan [1 ]
Li, Jieying [3 ]
Jiang, Deming [1 ]
Wu, Yiming [4 ]
Ohtsuka, Toshihisa [2 ]
Wu, Liyong [1 ]
机构
[1] Capital Med Univ, Xuanwu Hosp, Dept Neurol, 45 Changchun St, Beijing 100053, Peoples R China
[2] Univ Yamanashi, Grad Sch Med Sci, Dept Biochem, Yamanashi, 4093898, Japan
[3] Sichuan Acad Med Sci & Sichuan Prov Peoples Hosp, Sichuan Prov Ctr Mental Hlth, Chengdu 610072, Peoples R China
[4] Beijing Normal Univ, Expt High Sch, Beijing 100032, Peoples R China
基金
中国国家自然科学基金;
关键词
Frontotemporal dementia; Genetic spectrum; TBK1; OPTN; Autophagy; OPTINEURIN; PHOSPHORYLATION; ACTIVATION; AUTOPHAGY; CONSENSUS; CRITERIA; BINDING; ALS;
D O I
10.1186/s13195-024-01493-w
中图分类号
R74 [神经病学与精神病学];
学科分类号
摘要
Background Our study aims to evaluate the genetic and phenotypic spectrum of Frontotemporal dementia (FTD) gene variant carriers in Chinese populations, investigate mutation frequencies, and assess the functional properties of TBK1 and OPTN variants. Methods Clinically diagnosed FTD patients underwent genetic analysis through exome sequencing, repeat-primed polymerase chain reaction, and Sanger sequencing. TBK1 and OPTN variants were biologically characterized in vitro using immunofluorescence, immunoprecipitation, and immunoblotting analysis. The frequencies of genes implicated in FTD in China were analyzed through a literature review and meta-analysis. Results Of the 261 Chinese FTD patients, 61 (23.4%) carried potential causative variants in FTD-related genes, including MAPT (n = 17), TBK1 (n = 7), OPTN (n = 6), GRN (n = 6), ANXA11 (n = 4), CHMP2B (n = 3), C9orf72 GGGGCC repeats (n = 2), CYLD (n = 2), PRNP (n = 2), SQSTM1 (n = 2), TARDBP (n = 2), VCP (n = 1), CCNF (n = 1), CHCHD10 (n = 1), SIGMAR1 (n = 1), CHCHD2 (n = 1), FUS (n = 1), TMEM106B (n = 1), and UBQLN2 (n = 1). 29 variants can be considered novel, including the MAPT p.D54N, p.E342K, p.R221P, p.T263I, TBK1 p.E696G, p.I37T, p.E232Q, p.S398F, p.T78A, p.Q150P, p.W259fs, OPTN p.R144G, p.F475V, GRN p.V473fs, p.C307fs, p.R101fs, CHMP2B p.K6N, p.R186Q, ANXA11 p.Q155*, CYLD p.T157I, SQSTM1 p.S403A, UBQLN2 p.P509H, CCNF p.S160N, CHCHD10 p.A8T, SIGMAR1 p.S117L, CHCHD2 p.P53fs, FUS p.S235G & p.S236G, and TMEM106B p.L144V variants. Patients with TBK1 and OPTN variants presented with heterogeneous clinical phenotypes. Functional analysis demonstrated that TBK1 I37T and E232Q mutants showed decreased autophosphorylation, and the OPTN phosphorylation was reduced by the TBK1 I37T mutant. The OPTN-TBK1 complex formation was enhanced by the TBK1 E696G mutant, while OPTN R144G and F475V mutants exhibited reduced recruitment to autophagosomes compared to the wild-type. The overall frequency of TBK1 and OPTN in Chinese FTD patients was 2.0% and 0.3%, respectively. Conclusions Our study demonstrates the extensive genetic and phenotypic heterogeneity of Chinese FTD patients. TBK1 mutations are the second most frequent cause of clinical FTD after MAPT in the Chinese.
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共 44 条
  • [1] Frontotemporal dementia
    Bang, Jee
    Spina, Salvatore
    Miller, Bruce L.
    [J]. LANCET, 2015, 386 (10004) : 1672 - 1682
  • [2] Brooks BR., 2000, Amyotrophic Lateral Sclerosis and Other Motor Neuron Disorders, V1, P293
  • [3] Genetic Features of MAPT, GRN, C9orf72 and CHCHD10 Gene Mutations in Chinese Patients with Frontotemporal Dementia
    Che, Xiang-Qian
    Zhao, Qian-Hua
    Huang, Yue
    Li, Xia
    Ren, Ru-Jing
    Chen, Sheng-Di
    Wang, Gang
    Guo, Qi-Hao
    [J]. CURRENT ALZHEIMER RESEARCH, 2017, 14 (10) : 1102 - 1108
  • [4] Identification and functional characterization of novel variants of MAPT and GRN in Chinese patients with frontotemporal dementia
    Cheng, Hong-Rong
    Lin, Rong-Rong
    Li, Hong -Lei
    Xue, Yan-Yan
    Gao, Pei-Rong
    Chen, Dian -Fu
    Tao, Qing-Qing
    Wu, Zhi-Ying
    [J]. NEUROBIOLOGY OF AGING, 2023, 123 : 233 - 243
  • [5] ALS-associated missense and nonsense TBK1 mutations can both cause loss of kinase function
    de Majo, Martina
    Topp, Simon D.
    Smith, Bradley N.
    Nishimura, Agnes L.
    Chen, Han-Jou
    Gkazi, Athina Soragia
    Miller, Jack
    Wong, Chun Hao
    Vance, Caroline
    Baas, Frank
    ten Asbroek, Anneloor L. M. A.
    Kenna, Kevin P.
    Ticozzi, Nicola
    Garcia Redondo, Alberto
    Esteban-Perez, Jesus
    Tiloca, Cinzia
    Verde, Federico
    Duga, Stefano
    Morrison, Karen E.
    Shaw, Pamela J.
    Kirby, Janine
    Turner, Martin R.
    Talbot, Kevin
    Hardiman, Orla
    Glass, Jonathan D.
    de Belleroche, Jacqueline
    Gellera, Cinzia
    Ratti, Antonia
    Al-Chalabi, Ammar
    Brown, Robert H.
    Silani, Vincenzo
    Landers, John E.
    Shaw, Christopher E.
    [J]. NEUROBIOLOGY OF AGING, 2018, 71 : 266.e1 - 266.e10
  • [6] Expanded GGGGCC Hexanucleotide Repeat in Noncoding Region of C9ORF72 Causes Chromosome 9p-Linked FTD and ALS
    DeJesus-Hernandez, Mariely
    Mackenzie, Ian R.
    Boeve, Bradley F.
    Boxer, Adam L.
    Baker, Matt
    Rutherford, Nicola J.
    Nicholson, Alexandra M.
    Finch, NiCole A.
    Flynn, Heather
    Adamson, Jennifer
    Kouri, Naomi
    Wojtas, Aleksandra
    Sengdy, Pheth
    Hsiung, Ging-Yuek R.
    Karydas, Anna
    Seeley, William W.
    Josephs, Keith A.
    Coppola, Giovanni
    Geschwind, Daniel H.
    Wszolek, Zbigniew K.
    Feldman, Howard
    Knopman, David S.
    Petersen, Ronald C.
    Miller, Bruce L.
    Dickson, Dennis W.
    Boylan, Kevin B.
    Graff-Radford, Neill R.
    Rademakers, Rosa
    [J]. NEURON, 2011, 72 (02) : 245 - 256
  • [7] Genetic Spectrum and Clinical Heterogeneity of Chinese Frontotemporal Dementia Patients: Data from PUMCH Dementia Cohort
    Dong, Liling
    Wang, Jie
    Liu, Caiyan
    Li, Jie
    Mao, Chenhui
    Huang, Xinying
    Chu, Shanshan
    Peng, Bin
    Cui, Liying
    Gao, Jing
    [J]. JOURNAL OF ALZHEIMERS DISEASE, 2022, 89 (03) : 893 - 901
  • [8] Novel mutation in optineurin causing aggressive ALS+/-frontotemporal dementia
    Feng, Shu-Man
    Che, Chun-Hui
    Feng, Shu-Yan
    Liu, Chang-Yun
    Li, Liu-Yi
    Li, Yuan-Xiao
    Huang, Hua-Pin
    Zou, Zhang-Yu
    [J]. ANNALS OF CLINICAL AND TRANSLATIONAL NEUROLOGY, 2019, 6 (12): : 2377 - 2383
  • [9] Haploinsufficiency of TBK1 causes familial ALS and fronto-temporal dementia
    Freischmidt, Axel
    Wieland, Thomas
    Richter, Benjamin
    Ruf, Wolfgang
    Schaeffer, Veronique
    Mueller, Kathrin
    Marroquin, Nicolai
    Nordin, Frida
    Huebers, Annemarie
    Weydt, Patrick
    Pinto, Susana
    Press, Rayomond
    Millecamps, Stephanie
    Molko, Nicolas
    Bernard, Emilien
    Desnuelle, Claude
    Soriani, Marie-Helene
    Dorst, Johannes
    Graf, Elisabeth
    Nordstrom, Ulrika
    Feiler, Marisa S.
    Putz, Stefan
    Boeckers, Tobias M.
    Meyer, Thomas
    Winkler, Andrea S.
    Winkelman, Juliane
    de Carvalho, Mamede
    Thal, Dietmar R.
    Otto, Markus
    Brannstrom, Thomas
    Volk, Alexander E.
    Kursula, Petri
    Danzer, Karin M.
    Lichtner, Peter
    Dikic, Ivan
    Meitinger, Thomas
    Ludolph, Albert C.
    Strom, Tim M.
    Andersen, Peter M.
    Weishaupt, Jochen H.
    [J]. NATURE NEUROSCIENCE, 2015, 18 (05) : 631 - +
  • [10] Loss of TBK1 is a frequent cause of frontotemporal dementia in a Belgian cohort
    Gijselinck, Ilse
    Van Mossevelde, Sara
    van der Zee, Julie
    Sieben, Anne
    Philtjens, Stephanie
    Heeman, Bavo
    Engelborghs, Sebastiaan
    Vandenbulcke, Mathieu
    De Baets, Greet
    Baumer, Veerle
    Cuijt, Ivy
    Van den Broeck, Marleen
    Peeters, Karin
    Mattheijssens, Maria
    Rousseau, Frederic
    Vandenberghe, Rik
    De Jonghe, Peter
    Cras, Patrick
    De Deyn, Peter P.
    Martin, Jean-Jacques
    Cruts, Marc
    Van Broeckhoven, Christine
    [J]. NEUROLOGY, 2015, 85 (24) : 2116 - 2125