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Association of Variants in the SPTLC1 Gene With Juvenile Amyotrophic Lateral Sclerosis.

Authors :
Johnson JO
Chia R
Miller DE
Li R
Kumaran R
Abramzon Y
Alahmady N
Renton AE
Topp SD
Gibbs JR
Cookson MR
Sabir MS
Dalgard CL
Troakes C
Jones AR
Shatunov A
Iacoangeli A
Al Khleifat A
Ticozzi N
Silani V
Gellera C
Blair IP
Dobson-Stone C
Kwok JB
Bonkowski ES
Palvadeau R
Tienari PJ
Morrison KE
Shaw PJ
Al-Chalabi A
Brown RH Jr
Calvo A
Mora G
Al-Saif H
Gotkine M
Leigh F
Chang IJ
Perlman SJ
Glass I
Scott AI
Shaw CE
Basak AN
Landers JE
Chiò A
Crawford TO
Smith BN
Traynor BJ
Smith BN
Ticozzi N
Fallini C
Gkazi AS
Topp SD
Scotter EL
Kenna KP
Keagle P
Tiloca C
Vance C
Troakes C
Colombrita C
King A
Pensato V
Castellotti B
Baas F
Ten Asbroek ALMA
McKenna-Yasek D
McLaughlin RL
Polak M
Asress S
Esteban-Pérez J
Stevic Z
D'Alfonso S
Mazzini L
Comi GP
Del Bo R
Ceroni M
Gagliardi S
Querin G
Bertolin C
van Rheenen W
Rademakers R
van Blitterswijk M
Lauria G
Duga S
Corti S
Cereda C
Corrado L
Sorarù G
Williams KL
Nicholson GA
Blair IP
Leblond-Manry C
Rouleau GA
Hardiman O
Morrison KE
Veldink JH
van den Berg LH
Al-Chalabi A
Pall H
Shaw PJ
Turner MR
Talbot K
Taroni F
García-Redondo A
Wu Z
Glass JD
Gellera C
Ratti A
Brown RH Jr
Silani V
Shaw CE
Landers JE
Dalgard CL
Adeleye A
Soltis AR
Alba C
Viollet C
Bacikova D
Hupalo DN
Sukumar G
Pollard HB
Wilkerson MD
Martinez EM
Abramzon Y
Ahmed S
Arepalli S
Baloh RH
Bowser R
Brady CB
Brice A
Broach J
Campbell RH
Camu W
Chia R
Cooper-Knock J
Ding J
Drepper C
Drory VE
Dunckley TL
Eicher JD
England BK
Faghri F
Feldman E
Floeter MK
Fratta P
Geiger JT
Gerhard G
Gibbs JR
Gibson SB
Glass JD
Hardy J
Harms MB
Heiman-Patterson TD
Hernandez DG
Jansson L
Kirby J
Kowall NW
Laaksovirta H
Landeck N
Landi F
Le Ber I
Lumbroso S
MacGowan DJL
Maragakis NJ
Mora G
Mouzat K
Murphy NA
Myllykangas L
Nalls MA
Orrell RW
Ostrow LW
Pamphlett R
Pickering-Brown S
Pioro EP
Pletnikova O
Pliner HA
Pulst SM
Ravits JM
Renton AE
Rivera A
Robberecht W
Rogaeva E
Rollinson S
Rothstein JD
Scholz SW
Sendtner M
Shaw PJ
Sidle KC
Simmons Z
Singleton AB
Smith N
Stone DJ
Tienari PJ
Troncoso JC
Valori M
Van Damme P
Van Deerlin VM
Van Den Bosch L
Zinman L
Landers JE
Chiò A
Traynor BJ
Angelocola SM
Ausiello FP
Barberis M
Bartolomei I
Battistini S
Bersano E
Bisogni G
Borghero G
Brunetti M
Cabona C
Calvo A
Canale F
Canosa A
Cantisani TA
Capasso M
Caponnetto C
Cardinali P
Carrera P
Casale F
Chiò A
Colletti T
Conforti FL
Conte A
Conti E
Corbo M
Cuccu S
Dalla Bella E
D'Errico E
DeMarco G
Dubbioso R
Ferrarese C
Ferraro PM
Filippi M
Fini N
Floris G
Fuda G
Gallone S
Gianferrari G
Giannini F
Grassano M
Greco L
Iazzolino B
Introna A
La Bella V
Lattante S
Lauria G
Liguori R
Logroscino G
Logullo FO
Lunetta C
Mandich P
Mandrioli J
Manera U
Manganelli F
Marangi G
Marinou K
Marrosu MG
Martinelli I
Messina S
Moglia C
Mora G
Mosca L
Murru MR
Origone P
Passaniti C
Petrelli C
Petrucci A
Pozzi S
Pugliatti M
Quattrini A
Ricci C
Riolo G
Riva N
Russo M
Sabatelli M
Salamone P
Salivetto M
Salvi F
Santarelli M
Sbaiz L
Sideri R
Simone I
Simonini C
Spataro R
Tanel R
Tedeschi G
Ticca A
Torriello A
Tranquilli S
Tremolizzo L
Trojsi F
Vasta R
Vacchiano V
Vita G
Volanti P
Zollino M
Zucchi E
Source :
JAMA neurology [JAMA Neurol] 2021 Oct 01; Vol. 78 (10), pp. 1236-1248.
Publication Year :
2021

Abstract

Importance: Juvenile amyotrophic lateral sclerosis (ALS) is a rare form of ALS characterized by age of symptom onset less than 25 years and a variable presentation.<br />Objective: To identify the genetic variants associated with juvenile ALS.<br />Design, Setting, and Participants: In this multicenter family-based genetic study, trio whole-exome sequencing was performed to identify the disease-associated gene in a case series of unrelated patients diagnosed with juvenile ALS and severe growth retardation. The patients and their family members were enrolled at academic hospitals and a government research facility between March 1, 2016, and March 13, 2020, and were observed until October 1, 2020. Whole-exome sequencing was also performed in a series of patients with juvenile ALS. A total of 66 patients with juvenile ALS and 6258 adult patients with ALS participated in the study. Patients were selected for the study based on their diagnosis, and all eligible participants were enrolled in the study. None of the participants had a family history of neurological disorders, suggesting de novo variants as the underlying genetic mechanism.<br />Main Outcomes and Measures: De novo variants present only in the index case and not in unaffected family members.<br />Results: Trio whole-exome sequencing was performed in 3 patients diagnosed with juvenile ALS and their parents. An additional 63 patients with juvenile ALS and 6258 adult patients with ALS were subsequently screened for variants in the SPTLC1 gene. De novo variants in SPTLC1 (p.Ala20Ser in 2 patients and p.Ser331Tyr in 1 patient) were identified in 3 unrelated patients diagnosed with juvenile ALS and failure to thrive. A fourth variant (p.Leu39del) was identified in a patient with juvenile ALS where parental DNA was unavailable. Variants in this gene have been previously shown to be associated with autosomal-dominant hereditary sensory autonomic neuropathy, type 1A, by disrupting an essential enzyme complex in the sphingolipid synthesis pathway.<br />Conclusions and Relevance: These data broaden the phenotype associated with SPTLC1 and suggest that patients presenting with juvenile ALS should be screened for variants in this gene.

Details

Language :
English
ISSN :
2168-6157
Volume :
78
Issue :
10
Database :
MEDLINE
Journal :
JAMA neurology
Publication Type :
Academic Journal
Accession number :
34459874
Full Text :
https://doi.org/10.1001/jamaneurol.2021.2598