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Genome-wide Association Identifies Novel Etiological Insights Associated with Parkinson’s Disease in African and African Admixed Populations

Authors :
Rizig, Mie
Bandres-Ciga, Sara
Makarious, Mary B
Ojo, Oluwadamilola
Crea, Peter Wild
Abiodun, Oladunni
Levine, Kristin S
Abubakar, Sani
Achoru, Charles
Vitale, Dan
Adeniji, Olaleye
Agabi, Osigwe
Koretsky, Mathew J
Agulanna, Uchechi
Hall, Deborah A.
Akinyemi, Rufus
Xie, Tao
Ali, Mohammed
Shamim, Ejaz A.
Ani-Osheku, Ifeyinwa
Padmanaban, Mahesh
Arigbodi, Owotemu
Standaert, David G
Bello, Abiodun
Dean, Marissa
Erameh, Cyril
Elsayed, Inas
Farombi, Temitope
Okunoye, Olaitan
Fawale, Michael
Billingsley, Kimberley J
Imarhiagbe, Frank
Jerez, Pilar Alvarez
Iwuozo, Emmanuel
Baker, Breeana
Komolafe, Morenikeji
Malik, Laksh
Nwani, Paul
Daida, Kensuke
Nwazor, Ernest
Miano-Burkhardt, Abigail
Nyandaiti, Yakub
Fang, Zih-Hua
Obiabo, Yahaya
Kluss, Jillian H.
Odeniyi, Olanike
Hernandez, Dena
Odiase, Francis
Tayebi, Nahid
Ojini, Francis
Sidranksy, Ellen
Onwuegbuzie, Gerald
D’Souza, Andrea M.
Osaigbovo, Godwin
Berhe, Bahafta
Osemwegie, Nosakhare
Reed, Xylena
Oshinaike, Olajumoke
Leonard, Hampton
Otubogun, Folajimi
Alvarado, Chelsea X
Oyakhire, Shyngle
Ozomma, Simon
Samuel, Sarah
Taiwo, Funmilola
Wahab, Kolawole
Zubair, Yusuf
Iwaki, Hirotaka
Kim, Jonggeol Jeffrey
Morris, Huw R
Hardy, John
Nalls, Mike
Heilbron, Karl
Norcliffe-Kaufmann, Lucy
Blauwendraat, Cornelis
Houlden, Henry
Singleton, Andrew
Okubadejo, Njideka
Source :
medRxiv
Publication Year :
2023
Publisher :
Cold Spring Harbor Laboratory, 2023.

Abstract

BACKGROUND: Understanding the genetic mechanisms underlying diseases in ancestrally diverse populations is a critical step towards the realization of the global application of precision medicine. The African and African admixed populations enable mapping of complex traits given their greater levels of genetic diversity, extensive population substructure, and distinct linkage disequilibrium patterns. METHODS: Here we perform a comprehensive genome-wide assessment of Parkinson’s disease (PD) in 197,918 individuals (1,488 cases; 196,430 controls) of African and African admixed ancestry, characterizing population-specific risk, differential haplotype structure and admixture, coding and structural genetic variation and polygenic risk profiling. FINDINGS: We identified a novel common risk factor for PD and age at onset at the GBA1 locus (risk, rs3115534-G; OR=1.58, 95% CI = 1.37 – 1.80, P=2.397E-14; age at onset, BETA =−2.004, SE =0.57, P = 0.0005), that was found to be rare in non-African/African admixed populations. Downstream short- and long-read whole genome sequencing analyses did not reveal any coding or structural variant underlying the GWAS signal. However, we identified that this signal mediates PD risk via expression quantitative trait locus (eQTL) mechanisms. While previously identified GBA1 associated disease risk variants are coding mutations, here we suggest a novel functional mechanism consistent with a trend in decreasing glucocerebrosidase activity levels. Given the high population frequency of the underlying signal and the phenotypic characteristics of the homozygous carriers, we hypothesize that this variant may not cause Gaucher disease. Additionally, the prevalence of Gaucher’s disease in Africa is low. INTERPRETATION: The present study identifies a novel African-ancestry genetic risk factor in GBA1 as a major mechanistic basis of PD in the African and African admixed populations. This striking result contrasts to previous work in Northern European populations, both in terms of mechanism and attributable risk. This finding highlights the importance of understanding population-specific genetic risk in complex diseases, a particularly crucial point as the field moves toward precision medicine in PD clinical trials and while recognizing the need for equitable inclusion of ancestrally diverse groups in such trials. Given the distinctive genetics of these underrepresented populations, their inclusion represents a valuable step towards insights into novel genetic determinants underlying PD etiology. This opens new avenues towards RNA-based and other therapeutic strategies aimed at reducing lifetime risk.

Subjects

Subjects :
Article

Details

Language :
English
Database :
OpenAIRE
Journal :
medRxiv
Accession number :
edsair.pmid..........55335ef208858ac0974dfa9a220b833f