FTDALS1 C9orf72

Disease ID
FTDALS1
Gene ID
C9orf72
Updated
May 14, 2026
v2.20.0
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Disease

Name
Frontotemporal dementia (FTD) and/or amyotrophic lateral sclerosis (ALS)
Inheritance
Autosomal dominant
Description
Pure frontotemporal dementia, pure amyotrophic lateral sclerosis or combination of the two1 . Nominal associations with risk of Parkinson's have also been reported2 . May present as non-Huntington chorea in rare cases3 .
Prevalence
The expansion of a hexanucleotide repeat GGGGCC in C9orf72 is the most common known cause of ALS accounting for ~ 40% familial cases and ~ 7% sporadic cases in the European population; overall ALS incidence is 1-2/100,000 person-years, point prevalence is 3-5/100,000 (Europe/US); lifetime risk is 1 in 3004 . Related individuals to patients with C9orf72-ALS appear at an increased risk of disease regardless of carrier status5,6 . C9orf72-FTD is estimated to be 0.04-134:100,0007 , and by our estimates 0.65-1.56/100,000 for C9orf72-ALS. The expansion has been found across ethnicities/ancestries, with population-dependent prevalence, highest in those with northern European ancestry7 .
Age of Onset(Typical)Years20  9150  64
Age of Onset Details
Typical: 50-64; Range: 20-917 .

Locus

Details
FTD and ALS form a clinical spectrum8,9 . The clinical ranges of the C9orf72 locus remain ambiguous10 : most healthy controls have alleles up to 24 repeats11 yet 24-30 repeats are associated with ALS4 and while 60 repeats is frequently used as a threshold for uncertain alleles, the exact threshold of pathogenicity remains unclear7,12 . Repeats of 80 motifs and lower appear to have delayed onset for any phenotype11 . >250 repeats are associated with a full FTD/ALS disease state13 , but pathogenic alleles can range from 30 to more than 4000 repeats12,14 . Recent research suggests that somatic C9orf72 repeat expansions may potentially emerge de novo in CNS tissue from alleles below the pathogenic range, potentially contributing to sporadic ALS/FTD15 . Penetrance appears to also be age-dependent, with environmental factors and specific phenotypes associated with sex and age at onset16 . Methylation appears to increase with expansion length and age14 . ALS from repeat expansion in C9orf72 generally has an earlier disease onset and faster progression than other ALS presentations17 .
Mechanism
Ambiguous
The HRE forms DNA and RNA G-quadruplexes with distinct structures and promotes RNA/DNA hybrids (R-loops). The structural polymorphism causes a repeat length-dependent accumulation of transcripts aborted in the HRE region18 . Addiitonal mechanisms theorized include protein loss of function and RNA gain of function19 . Multiple cell types in the prefrontal cortex, including oligodendrocytes, microglia, astrocytes, and neurons, appear impacted during pathogenesis20 .
Year
201121
Location in Gene
Intron 1 or 5' UTR depending on transcript
Gene Strand

Alleles

Ref. Motif
GGCCCC
Pathogenic (ref.)
GGCCCC
Pathogenic (gene)
CCGGGG
BenignIntermediatePathogenicUnits2  2324  3031  4,088

gnomAD

References

Direct supporting references for info on this page.

1
Repeat expansion disorders.
Zhongbo,Chen, Huw R,Morris, James,Polke, Nicholas W,Wood, Sonia,Gandhi, Mina,Ryten, Henry,Houlden, Arianna,Tucci
Practical neurology · 2025-05-15
pmid:39349043
2
Association of Non-Coding Repeat Expansions with Parkinson's Disease Risk: Evidence from a UK Biobank-Based Whole-Genome Sequencing Study.
Zhen,Hu, Qin-Qin,Yan, Jing-Jin,Wan, Yu,Fan, Jun,Liu
Movement disorders : official journal of the Movement Disorder Society · 2025-10-11
pmid:41074692
4
C9orf72 intermediate expansions of 24-30 repeats are associated with ALS.
Alfredo,Iacoangeli, Ahmad,Al Khleifat, Ashley R,Jones, William,Sproviero, Aleksey,Shatunov, Sarah,Opie-Martin, Karen E,Morrison, Pamela J,Shaw, Christopher E,Shaw, Isabella,Fogh, Richard J,Dobson, Stephen J,Newhouse, Ammar,Al-Chalabi
Acta neuropathologica communications · 2019-07-17
pmid:31315673
5
Marie,Ryan, Mark A,Doherty, Ahmad,Al Khleifat, Emmet,Costello, Jennifer C,Hengeveld, Mark,Heverin, Ammar,Al-Chalabi, Russell L,Mclaughlin, Orla,Hardiman
Neurology. Genetics · 2023-12-22
pmid:38149039
6
Personalised penetrance estimation for C9orf72-related amyotrophic lateral sclerosis and frontotemporal dementia.
Andrew G L,Douglas, Alexander G,Thompson, Martin R,Turner, Kevin,Talbot
BMJ neurology open · 2024-09-18
pmid:39315390
7
C9orf72 Frontotemporal Dementia and/or Amyotrophic Lateral Sclerosis
Helena,Gossye, Sebastiaan,Engelborghs, Christine,Van Broeckhoven, Julie,Zee
GeneReviews® · 1993-01-01
genereviews:NBK268647
8
Genome-wide structural variant analysis identifies risk loci for non-Alzheimer's dementias.
Karri,Kaivola, Ruth,Chia, Jinhui,Ding, Memoona,Rasheed, Masashi,Fujita, Vilas,Menon, Ronald L,Walton, Ryan L,Collins, Kimberley,Billingsley, Harrison,Brand, Michael,Talkowski, Xuefang,Zhao, Ramita,Dewan, Ali,Stark, Anindita,Ray, Sultana,Solaiman, Pilar,Alvarez Jerez, Laksh,Malik, Ted M,Dawson, Liana S,Rosenthal, Marilyn S,Albert, Olga,Pletnikova, Juan C,Troncoso, Mario,Masellis, Julia,Keith, Sandra E,Black, Luigi,Ferrucci, Susan M,Resnick, Toshiko,Tanaka, Eric,Topol, Ali,Torkamani, Pentti,Tienari, Tatiana M,Foroud, Bernardino,Ghetti, John E,Landers, Mina,Ryten, Huw R,Morris, John A,Hardy, Letizia,Mazzini, Sandra,D'Alfonso, Cristina,Moglia, Andrea,Calvo, Geidy E,Serrano, Thomas G,Beach, Tanis,Ferman, Neill R,Graff-Radford, Bradley F,Boeve, Zbigniew K,Wszolek, Dennis W,Dickson, Adriano,Chiò, David A,Bennett, Philip L,De Jager, Owen A,Ross, Clifton L,Dalgard, J Raphael,Gibbs, Bryan J,Traynor, Sonja W,Scholz
Cell genomics · 2023-05-04
pmid:37388914
9
Frequency of the C9orf72 hexanucleotide repeat expansion in patients with amyotrophic lateral sclerosis and frontotemporal dementia: a cross-sectional study.
Elisa,Majounie, Alan E,Renton, Kin,Mok, Elise G P,Dopper, Adrian,Waite, Sara,Rollinson, Adriano,Chiò, Gabriella,Restagno, Nayia,Nicolaou, Javier,Simon-Sanchez, John C,van Swieten, Yevgeniya,Abramzon, Janel O,Johnson, Michael,Sendtner, Roger,Pamphlett, Richard W,Orrell, Simon,Mead, Katie C,Sidle, Henry,Houlden, Jonathan D,Rohrer, Karen E,Morrison, Hardev,Pall, Kevin,Talbot, Olaf,Ansorge, Dena G,Hernandez, Sampath,Arepalli, Mario,Sabatelli, Gabriele,Mora, Massimo,Corbo, Fabio,Giannini, Andrea,Calvo, Elisabet,Englund, Giuseppe,Borghero, Gian Luca,Floris, Anne M,Remes, Hannu,Laaksovirta, Leo,McCluskey, John Q,Trojanowski, Vivianna M,Van Deerlin, Gerard D,Schellenberg, Michael A,Nalls, Vivian E,Drory, Chin-Song,Lu, Tu-Hsueh,Yeh, Hiroyuki,Ishiura, Yuji,Takahashi, Shoji,Tsuji, Isabelle,Le Ber, Alexis,Brice, Carsten,Drepper, Nigel,Williams, Janine,Kirby, Pamela,Shaw, John,Hardy, Pentti J,Tienari, Peter,Heutink, Huw R,Morris, Stuart,Pickering-Brown, Bryan J,Traynor
The Lancet. Neurology · 2012-03-09
pmid:22406228
10
STRipy - STRs database (C9ORF72 locus)
stripy:C9ORF72
11
Relationship between C9orf72 repeat size and clinical phenotype.
Sara,Van Mossevelde, Julie,van der Zee, Marc,Cruts, Christine,Van Broeckhoven
Current opinion in genetics & development · 2017-03-17
pmid:28319737
12
Analysis of normal
Silvia,Peverelli, Alberto,Brusati, Valeria,Casiraghi, Marta Nice,Sorce, Sabrina,Invernizzi, Serena,Santangelo, Claudia,Morelli, Federico,Verde, Vincenzo,Silani, Nicola,Ticozzi, Antonia,Ratti
Amyotrophic lateral sclerosis & frontotemporal degeneration · 2024-01-23
pmid:38099605
13
C9orf72 and triplet repeat disorder RNAs: G-quadruplex formation, binding to PRC2 and implications for disease mechanisms.
Xueyin,Wang, Karen J,Goodrich, Erin G,Conlon, Jianchao,Gao, Annette H,Erbse, James L,Manley, Thomas R,Cech
RNA (New York, N.Y.) · 2019-05-02
pmid:31048495
14
Targeted long-read sequencing to quantify methylation of the C9orf72 repeat expansion.
Evan,Udine, NiCole A,Finch, Mariely,DeJesus-Hernandez, Jazmyne L,Jackson, Matthew C,Baker, Siva Arumugam,Saravanaperumal, Eric,Wieben, Mark T W,Ebbert, Jaimin,Shah, Leonard,Petrucelli, Rosa,Rademakers, Björn,Oskarsson, Marka,van Blitterswijk
Molecular neurodegeneration · 2024-12-21
pmid:39709476
16
Age-related penetrance of the C9orf72 repeat expansion.
Natalie A,Murphy, Karissa C,Arthur, Pentti J,Tienari, Henry,Houlden, Adriano,Chiò, Bryan J,Traynor
Scientific reports · 2017-05-18
pmid:28522837
19
Roadmap for C9ORF72 in Frontotemporal Dementia and Amyotrophic Lateral Sclerosis: Report on the C9ORF72 FTD/ALS Summit.
Rita,Sattler, Bryan J,Traynor, Janice,Robertson, Ludo,Van Den Bosch, Sami J,Barmada, Clive N,Svendsen, Matthew D,Disney, Tania F,Gendron, Philip C,Wong, Martin R,Turner, Adam,Boxer, Suma,Babu, Michael,Benatar, Michael,Kurnellas, Jonathan D,Rohrer, Christopher J,Donnelly, Lynette M,Bustos, Kendall,Van Keuren-Jensen, Penny A,Dacks, Marwan N,Sabbagh
Neurology and therapy · 2023-10-17
pmid:37847372
20
pTDP-43 levels correlate with cell type-specific molecular alterations in the prefrontal cortex of
Hsiao-Lin V,Wang, Jian-Feng,Xiang, Chenyang,Yuan, Austin M,Veire, Tania F,Gendron, Melissa E,Murray, Malú G,Tansey, Jian,Hu, Marla,Gearing, Jonathan D,Glass, Peng,Jin, Victor G,Corces, Zachary T,McEachin
Proceedings of the National Academy of Sciences of the United States of America · 2025-02-25
pmid:39999167
21
Expanded GGGGCC hexanucleotide repeat in noncoding region of C9ORF72 causes chromosome 9p-linked FTD and ALS.
Mariely,DeJesus-Hernandez, Ian R,Mackenzie, Bradley F,Boeve, Adam L,Boxer, Matt,Baker, Nicola J,Rutherford, Alexandra M,Nicholson, NiCole A,Finch, Heather,Flynn, Jennifer,Adamson, Naomi,Kouri, Aleksandra,Wojtas, Pheth,Sengdy, Ging-Yuek R,Hsiung, Anna,Karydas, William W,Seeley, Keith A,Josephs, Giovanni,Coppola, Daniel H,Geschwind, Zbigniew K,Wszolek, Howard,Feldman, David S,Knopman, Ronald C,Petersen, Bruce L,Miller, Dennis W,Dickson, Kevin B,Boylan, Neill R,Graff-Radford, Rosa,Rademakers
Neuron · 2011-09-21
pmid:21944778

Additional Literature

Additional literature related to this locus.

Raw PubMed search results
(All PubMed results returned by searching for this gene, tandem repeats, and disease, in medline format)

17
C9orf72 gene repeat expansion phenotype profile of motor neurone disease in Portugal.
Cláudia,Santos Silva, Marta,Gormicho, Sara,Simão, Ana Catarina,Pronto-Laborinho, Inês,Alves, Susana,Pinto, Miguel,Oliveira Santos, Mamede,de Carvalho
Journal of the neurological sciences · 2024-08-30
pmid:39226712
Condensate protein aggregation in ALS/FTD is regulated by GGGGCC-repeat RNA scaffolds.
Yu,Liu, Minghui,Song, Liqi,Wan, Pei,Guo, Da,Han
Nature structural & molecular biology · 2026-03-31
pmid:41917466
Carmelo,Milioto, Mireia,Carcolé, Matteo,Zanovello, Mhoriam,Ahmed, Raja S,Nirujogi, Daniel,Biggs, Martha J,Roberts, Kyra,Schweers, Alexander J,Cammack, Paolo M,Marchi, Eszter,Katona, Idoia,Glaria, Almudena,Santos, Anny,Devoy, Pietro,Fratta, Dario R,Alessi, Ben,Davies, Linda,Greensmith, Elizabeth M C,Fisher, Adrian M,Isaacs
Brain communications · 2026-03-17
pmid:41884597
Repeat expansion RNA elicits toxicity through hybrid G-quadruplexes with promoter DNA.
Lien,Nguyen
Neuron · 2026-03-18
pmid:41856038
PAICS mediates DNA damage and cerebellar neuronal loss in C9orf72 amyotrophic lateral sclerosis.
Jaskaran,Singh, Léa,Lescouzères, Charlotte,Zaouter, Mathilde,Chaineau, Ghazal,Haghi, Thomas M,Durcan, Shunmoogum A,Patten
Brain : a journal of neurology · 2026-03-11
pmid:41810938
White Matter Hyperintensities in Behavioral Variant Frontotemporal Dementia and Semantic Variant Primary Progressive Aphasia.
Rafi,Hadad, Yann,Cobigo, Andjelika,Milicic, Elena,Tsoy, Maria Luisa,Mandelli, Amy A,Wolf, Leslie S,Gaynor, Katherine L,Possin, Isabel,Allen, Joel,Kramer, Howard J,Rosen, Maria Luisa,Gorno-Tempini, Bruce L,Miller, Victor,Valcour
Neurology open access · 2026-01-23
pmid:41799019
Hypothesis-free evaluation of circulating metabolome provides cell-specific insights regarding the role of energy substrate availability in amyotrophic lateral sclerosis.
Elham,Alhathli, Johnathan,Cooper-Knock, Zain-Ul-Abideen,Girach, Thomas H,Julian, Claudia,Bauer, Hannah O,Timmons, Billie D,Ward, Heather,Walker, Mimoun,Azzouz, Mohamed A,Elrayess, Fatima,Al-Khelaifi, Noha A,Yousri, Aytac,Gul, Alan,Kelsall, Tobias,Moll, Calum,Harvey, Sarah,Gornall, Kari,Wong, Scott P,Allen, Andrew,Strange, Pamela J,Shaw
BMC medicine · 2026-03-06
pmid:41787388
Respiratory Onset Amyotrophic Lateral Sclerosis in a Patient With C9orf72 Expansion.
Reece M,Hass, Sandra,Reiter-Campeau, Ruple S,Laughlin, Teerin,Liewluck
Journal of clinical neuromuscular disease · 2026-03-03
pmid:41766077
Ginsenoside compound K inhibited the gelation of GGGGCC repeats and regulated co-aggregation with arginine-rich poly-dipeptides in C9orf72-related ALS.
Youduan,Li, Shujie,Liu, Lingling,Cao, Ming,Zhu, Shuang,Lin, Xinxin,Wang, Zhidong,Qiu, Ye,Teng
International journal of biological macromolecules · 2026-02-26
pmid:41763422