A Mutation in the 5′-UTR of GRN Gene Associated with Frontotemporal Lobar Degeneration: Phenotypic Variability and Possible Pathogenetic Mechanisms

被引:10
作者
Puoti, Gianfranco [1 ]
Lerza, Maria Cristina [1 ]
Ferretti, Maria Giulia [2 ]
Bugiani, Orso [2 ]
Tagliavini, Fabrizio [2 ]
Rossi, Giacomina [2 ]
机构
[1] Univ Naples 2, Dept Clin & Expt Med, Div Neurol, Naples, Italy
[2] Fdn IRCCS Ist Neurol Carlo Besta, Div Neurol Neuropathol 5, I-20133 Milan, Italy
关键词
Frontotemporal lobar degeneration; GRN; haploinsufficiency; mutation; phenotype; progranulin; C9ORF72 HEXANUCLEOTIDE REPEAT; NEURITE OUTGROWTH; NULL MUTATIONS; PROGRANULIN; DEMENTIA; HETEROGENEITY; TRANSCRIPTS; COMMON; TAU;
D O I
10.3233/JAD-140717
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Frontotemporal lobar degeneration (FTLD) is a very heterogeneous disorder. It is genetically linked to three major genes: microtubule-associated protein tau (MAPT), progranulin (GRN), and C9ORF72. In particular, mutations in GRN account for 5-10% of all cases and give rise to a wide spectrum of clinical phenotypes, ranging from behavioral frontotemporal dementia (bvFTD) to primary progressive aphasia, including progressive non-fluent aphasia (PNFA) and semantic dementia, and corticobasal syndrome (CBS). We studied a family affected by FTLD whose members showed three different phenotypes: bvFTD, PNFA, and CBS. We performed plasma progranulin measurement before any genetic analyses and, due to the low level detected, we sequenced GRN and found the new mutation EX0-5' splice site A > G in the 5'-UTR region, where no pathogenic mutations had been previously demonstrated. Genetic analyses of MAPT and C9ORF72 were normal. GRN mRNA expression showed about 50% reduction caused by this mutation, and similar results were found for progranulin level. Testing of nonsense mediated RNA decay gave negative results, suggesting a different mechanism of mRNA degradation. In summary, the EX0-5' splice site A > G mutation widens the GRN regions affected by null mutations, including the 5'-UTR, and confirms once more the large phenotypic variability linked to GRN mutations.
引用
收藏
页码:939 / 947
页数:9
相关论文
共 33 条
[1]   Mutations in progranulin cause tau-negative frontotemporal dementia linked to chromosome 17 [J].
Baker, Matt ;
Mackenzie, Ian R. ;
Pickering-Brown, Stuart M. ;
Gass, Jennifer ;
Rademakers, Rosa ;
Lindholm, Caroline ;
Snowden, Julie ;
Adamson, Jennifer ;
Sadovnick, A. Dessa ;
Rollinson, Sara ;
Cannon, Ashley ;
Dwosh, Emily ;
Neary, David ;
Melquist, Stacey ;
Richardson, Anna ;
Dickson, Dennis ;
Berger, Zdenek ;
Eriksen, Jason ;
Robinson, Todd ;
Zehr, Cynthia ;
Dickey, Chad A. ;
Crook, Richard ;
McGowan, Eileen ;
Mann, David ;
Boeve, Bradley ;
Feldman, Howard ;
Hutton, Mike .
NATURE, 2006, 442 (7105) :916-919
[2]   A distinct clinical, neuropsychological and radiological phenotype is associated with progranulin gene mutations in a large UK series [J].
Beck, Jonathan ;
Rohrer, Jonathan D. ;
Campbell, Tracy ;
Isaacs, Adrian ;
Morrison, Karen E. ;
Goodall, Emily F. ;
Warrington, Elizabeth K. ;
Stevens, John ;
Revesz, Tamas ;
Holton, Janice ;
Al-Sarraj, Safa ;
King, Andrew ;
Scahill, Rachael ;
Warren, Jason D. ;
Fox, Nick C. ;
Rossor, Martin N. ;
Collinge, John ;
Mead, Simon .
BRAIN, 2008, 131 :706-720
[3]   Progranulin Leu271LeufsX10 is one of the most common FTLD and CBS associated mutations worldwide [J].
Benussi, Luisa ;
Ghidoni, Roberta ;
Pegoiani, Eleonora ;
Moretti, Davide V. ;
Zanetti, Orazio ;
Binetti, Giuliano .
NEUROBIOLOGY OF DISEASE, 2009, 33 (03) :379-385
[4]   Heterogeneity within a large kindred with frontotemporal dementia - A novel progranulin mutation [J].
Bruni, A. C. ;
Momeni, P. ;
Bernardi, L. ;
Tomaino, C. ;
Frangipane, F. ;
Elder, J. ;
Kawarai, T. ;
Sato, C. ;
Pradella, S. ;
Wakutani, Y. ;
Anfossi, M. ;
Gallo, M. ;
Geracitano, S. ;
Costanzo, A. ;
Smirne, N. ;
Curcio, S. A. M. ;
Mirabelli, M. ;
Puccio, G. ;
Colao, R. ;
Maletta, R. G. ;
Kertesz, A. ;
St. George-Hyslop, P. ;
Hardy, J. ;
Rogaeva, E. .
NEUROLOGY, 2007, 69 (02) :140-147
[5]   Null mutations in progranulin cause ubiquitin-positive frontotemporal dementia linked to chromosome 17q21 [J].
Cruts, Marc ;
Gijselinck, Ilse ;
van der Zee, Julie ;
Engelborghs, Sebastiaan ;
Wils, Hans ;
Pirici, Daniel ;
Rademakers, Rosa ;
Vandenberghe, Rik ;
Dermaut, Bart ;
Martin, Jean-Jacques ;
van Duijn, Cornelia ;
Peeters, Karin ;
Sciot, Raf ;
Santens, Patrick ;
De Pooter, Tim ;
Mattheijssens, Maria ;
Van den Broeck, Marleen ;
Cuijt, Ivy ;
Vennekens, Krist'l ;
De Deyn, Peter P. ;
Kumar-Singh, Samir ;
Van Broeckhoven, Christine .
NATURE, 2006, 442 (7105) :920-924
[6]   Genetic study on frontotemporal lobar degeneration in India [J].
Das, Gautami ;
Sadhukhan, Tamal ;
Sadhukhan, Dipanwita ;
Biswas, Atanu ;
Pal, Sandip ;
Ghosh, Amitabha ;
Das, Shyamal K. ;
Ray, Kunal ;
Ray, Jharna .
PARKINSONISM & RELATED DISORDERS, 2013, 19 (04) :487-489
[7]   Expanded GGGGCC Hexanucleotide Repeat in Noncoding Region of C9ORF72 Causes Chromosome 9p-Linked FTD and ALS [J].
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 .
NEURON, 2011, 72 (02) :245-256
[8]   Parkinsonism and Frontotemporal Dementia: The Clinical Overlap [J].
Espay, Alberto J. ;
Litvan, Irene .
JOURNAL OF MOLECULAR NEUROSCIENCE, 2011, 45 (03) :343-349
[9]   TMEM106B regulates progranulin levels and the penetrance of FTLD in GRN mutation carriers [J].
Finch, N. ;
Carrasquillo, M. M. ;
Baker, M. ;
Rutherford, N. J. ;
Coppola, G. ;
DeJesus-Hernandez, M. ;
Crook, R. ;
Hunter, T. ;
Ghidoni, R. ;
Benussi, L. ;
Crook, J. ;
Finger, E. ;
Hantanpaa, K. J. ;
Karydas, A. M. ;
Sengdy, P. ;
Gonzalez, J. ;
Seeley, W. W. ;
Johnson, N. ;
Beach, T. G. ;
Mesulam, M. ;
Forloni, G. ;
Kertesz, A. ;
Knopman, D. S. ;
Uitti, R. ;
White, C. L., III ;
Caselli, R. ;
Lippa, C. ;
Bigio, E. H. ;
Wszolek, Z. K. ;
Binetti, G. ;
Mackenzie, I. R. ;
Miller, B. L. ;
Boeve, B. F. ;
Younkin, S. G. ;
Dickson, D. W. ;
Petersen, R. C. ;
Graff-Radford, N. R. ;
Geschwind, D. H. ;
Rademakers, R. .
NEUROLOGY, 2011, 76 (05) :467-474
[10]   Progranulin promotes neurite outgrowth and neuronal differentiation by regulating GSK-3β [J].
Gao, Xue ;
Joselin, Alvin P. ;
Wang, Lei ;
Kar, Amar ;
Ray, Payal ;
Bateman, Andrew ;
Goate, Alison M. ;
Wu, Jane Y. .
PROTEIN & CELL, 2010, 1 (06) :552-562