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An autosomal dominant neurological disorder caused by de novo variants in FAR1 resulting in uncontrolled synthesis of ether lipids.

Authors :
Ferdinandusse, Sacha
Ferdinandusse, Sacha
McWalter, Kirsty
Te Brinke, Heleen
IJlst, Lodewijk
Mooijer, Petra M
Ruiter, Jos PN
van Lint, Alida EM
Pras-Raves, Mia
Wever, Eric
Millan, Francisca
Guillen Sacoto, Maria J
Begtrup, Amber
Tarnopolsky, Mark
Brady, Lauren
Ladda, Roger L
Sell, Susan L
Nowak, Catherine B
Douglas, Jessica
Tian, Cuixia
Ulm, Elizabeth
Perlman, Seth
Drack, Arlene V
Chong, Karen
Martin, Nicole
Brault, Jennifer
Brokamp, Elly
Toro, Camilo
Gahl, William A
Macnamara, Ellen F
Wolfe, Lynne
Undiagnosed Diseases Network
Waisfisz, Quinten
Zwijnenburg, Petra JG
Ziegler, Alban
Barth, Magalie
Smith, Rosemarie
Ellingwood, Sara
Gaebler-Spira, Deborah
Bakhtiari, Somayeh
Kruer, Michael C
van Kampen, Antoine HC
Wanders, Ronald JA
Waterham, Hans R
Cassiman, David
Vaz, Frédéric M
Ferdinandusse, Sacha
Ferdinandusse, Sacha
McWalter, Kirsty
Te Brinke, Heleen
IJlst, Lodewijk
Mooijer, Petra M
Ruiter, Jos PN
van Lint, Alida EM
Pras-Raves, Mia
Wever, Eric
Millan, Francisca
Guillen Sacoto, Maria J
Begtrup, Amber
Tarnopolsky, Mark
Brady, Lauren
Ladda, Roger L
Sell, Susan L
Nowak, Catherine B
Douglas, Jessica
Tian, Cuixia
Ulm, Elizabeth
Perlman, Seth
Drack, Arlene V
Chong, Karen
Martin, Nicole
Brault, Jennifer
Brokamp, Elly
Toro, Camilo
Gahl, William A
Macnamara, Ellen F
Wolfe, Lynne
Undiagnosed Diseases Network
Waisfisz, Quinten
Zwijnenburg, Petra JG
Ziegler, Alban
Barth, Magalie
Smith, Rosemarie
Ellingwood, Sara
Gaebler-Spira, Deborah
Bakhtiari, Somayeh
Kruer, Michael C
van Kampen, Antoine HC
Wanders, Ronald JA
Waterham, Hans R
Cassiman, David
Vaz, Frédéric M
Source :
Genetics in medicine : official journal of the American College of Medical Genetics; vol 23, iss 4, 740-750; 1098-3600
Publication Year :
2021

Abstract

PurposeIn this study we investigate the disease etiology in 12 patients with de novo variants in FAR1 all resulting in an amino acid change at position 480 (p.Arg480Cys/His/Leu).MethodsFollowing next-generation sequencing and clinical phenotyping, functional characterization was performed in patients' fibroblasts using FAR1 enzyme analysis, FAR1 immunoblotting/immunofluorescence, and lipidomics.ResultsAll patients had spastic paraparesis and bilateral congenital/juvenile cataracts, in most combined with speech and gross motor developmental delay and truncal hypotonia. FAR1 deficiency caused by biallelic variants results in defective ether lipid synthesis and plasmalogen deficiency. In contrast, patients' fibroblasts with the de novo FAR1 variants showed elevated plasmalogen levels. Further functional studies in fibroblasts showed that these variants cause a disruption of the plasmalogen-dependent feedback regulation of FAR1 protein levels leading to uncontrolled ether lipid production.ConclusionHeterozygous de novo variants affecting the Arg480 residue of FAR1 lead to an autosomal dominant disorder with a different disease mechanism than that of recessive FAR1 deficiency and a diametrically opposed biochemical phenotype. Our findings show that for patients with spastic paraparesis and bilateral cataracts, FAR1 should be considered as a candidate gene and added to gene panels for hereditary spastic paraplegia, cerebral palsy, and juvenile cataracts.

Details

Database :
OAIster
Journal :
Genetics in medicine : official journal of the American College of Medical Genetics; vol 23, iss 4, 740-750; 1098-3600
Notes :
application/pdf, Genetics in medicine : official journal of the American College of Medical Genetics vol 23, iss 4, 740-750 1098-3600
Publication Type :
Electronic Resource
Accession number :
edsoai.on1367386807
Document Type :
Electronic Resource