TY - JOUR
T1 - Genetic, transcriptomic, histological, and biochemical analysis of progressive supranuclear palsy implicates glial activation and novel risk genes
AU - PSP Genetics Study Group
AU - Farrell, Kurt
AU - Humphrey, Jack
AU - Chang, Timothy
AU - Zhao, Yi
AU - Leung, Yuk Yee
AU - Kuksa, Pavel P.
AU - Patil, Vishakha
AU - Lee, Wan Ping
AU - Kuzma, Amanda B.
AU - Valladares, Otto
AU - Cantwell, Laura B.
AU - Wang, Hui
AU - Ravi, Ashvin
AU - De Sanctis, Claudia
AU - Han, Natalia
AU - Christie, Thomas D.
AU - Afzal, Robina
AU - Kandoi, Shrishtee
AU - Whitney, Kristen
AU - Krassner, Margaret M.
AU - Ressler, Hadley
AU - Kim, Soong Ho
AU - Dangoor, Diana
AU - Iida, Megan A.
AU - Casella, Alicia
AU - Walker, Ruth H.
AU - Nirenberg, Melissa J.
AU - Renton, Alan E.
AU - Babrowicz, Bergan
AU - Coppola, Giovanni
AU - Raj, Towfique
AU - Höglinger, Günter U.
AU - Müller, Ulrich
AU - Golbe, Lawrence I.
AU - Morris, Huw R.
AU - Hardy, John
AU - Revesz, Tamas
AU - Warner, Tom T.
AU - Jaunmuktane, Zane
AU - Mok, Kin Y.
AU - Rademakers, Rosa
AU - Dickson, Dennis W.
AU - Ross, Owen A.
AU - Wang, Li San
AU - Goate, Alison
AU - Schellenberg, Gerard
AU - Geschwind, Daniel H.
AU - de Yebenes, Justo García
AU - Hinton, Fairlie
AU - Crary, John F.
N1 - Publisher Copyright:
© The Author(s) 2024.
PY - 2024/12
Y1 - 2024/12
N2 - Progressive supranuclear palsy (PSP), a rare Parkinsonian disorder, is characterized by problems with movement, balance, and cognition. PSP differs from Alzheimer’s disease (AD) and other diseases, displaying abnormal microtubule-associated protein tau by both neuronal and glial cell pathologies. Genetic contributors may mediate these differences; however, the genetics of PSP remain underexplored. Here we conduct the largest genome-wide association study (GWAS) of PSP which includes 2779 cases (2595 neuropathologically-confirmed) and 5584 controls and identify six independent PSP susceptibility loci with genome-wide significant (P < 5 × 10−8) associations, including five known (MAPT, MOBP, STX6, RUNX2, SLCO1A2) and one novel locus (C4A). Integration with cell type-specific epigenomic annotations reveal an oligodendrocytic signature that might distinguish PSP from AD and Parkinson’s disease in subsequent studies. Candidate PSP risk gene prioritization using expression quantitative trait loci (eQTLs) identifies oligodendrocyte-specific effects on gene expression in half of the genome-wide significant loci, and an association with C4A expression in brain tissue, which may be driven by increased C4A copy number. Finally, histological studies demonstrate tau aggregates in oligodendrocytes that colocalize with C4 (complement) deposition. Integrating GWAS with functional studies, epigenomic and eQTL analyses, we identify potential causal roles for variation in MOBP, STX6, RUNX2, SLCO1A2, and C4A in PSP pathogenesis.
AB - Progressive supranuclear palsy (PSP), a rare Parkinsonian disorder, is characterized by problems with movement, balance, and cognition. PSP differs from Alzheimer’s disease (AD) and other diseases, displaying abnormal microtubule-associated protein tau by both neuronal and glial cell pathologies. Genetic contributors may mediate these differences; however, the genetics of PSP remain underexplored. Here we conduct the largest genome-wide association study (GWAS) of PSP which includes 2779 cases (2595 neuropathologically-confirmed) and 5584 controls and identify six independent PSP susceptibility loci with genome-wide significant (P < 5 × 10−8) associations, including five known (MAPT, MOBP, STX6, RUNX2, SLCO1A2) and one novel locus (C4A). Integration with cell type-specific epigenomic annotations reveal an oligodendrocytic signature that might distinguish PSP from AD and Parkinson’s disease in subsequent studies. Candidate PSP risk gene prioritization using expression quantitative trait loci (eQTLs) identifies oligodendrocyte-specific effects on gene expression in half of the genome-wide significant loci, and an association with C4A expression in brain tissue, which may be driven by increased C4A copy number. Finally, histological studies demonstrate tau aggregates in oligodendrocytes that colocalize with C4 (complement) deposition. Integrating GWAS with functional studies, epigenomic and eQTL analyses, we identify potential causal roles for variation in MOBP, STX6, RUNX2, SLCO1A2, and C4A in PSP pathogenesis.
UR - https://www.scopus.com/pages/publications/85203379108
U2 - 10.1038/s41467-024-52025-x
DO - 10.1038/s41467-024-52025-x
M3 - Article
AN - SCOPUS:85203379108
SN - 2041-1723
VL - 15
JO - Nature Communications
JF - Nature Communications
IS - 1
M1 - 7880
ER -