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Multi-ancestry genome-wide meta-analysis of 56,241 individuals identifies LRRC4C, LHX5-AS1 and nominates ancestry-specific loci PTPRK, GRB14, and KIAA0825 as novel risk loci for Alzheimer disease: the Alzheimer Disease Genetics Consortium

Rajabli, F.; Benchek, P.; Tosto, G.; Kushch, N.; Sha, J.; Bazemore, K.; Zhu, C.; Lee, W.-P.; Haut, J.; Hamilton-Nelson, K. L.; Wheeler, N. R.; Zhao, Y.; Farrell, J. J.; Grunin, M. A.; Leung, Y. Y.; Kuksa, P. P.; Li, D.; Lucio da Fonseca, E.; Mez, J. B.; Palmer, E. L.; Pillai, J.; Sherva, R. M.; Song, Y. E.; Zhang, X.; Iqbal, T.; Pathak, O.; Valladares, O.; Kuzma, A. B.; Abner, E.; Adams, P. M.; Aguirre, A.; Albert, M. S.; Albin, R. L.; Allen, M.; Alvarez, L.; Apostolova, L. G.; Arnold, S. E.; Asthana, S.; Atwood, C. S.; Ayres, G.; Baldwin, C. T.; Barber, R. C.; Barnes, L. L.; Barral, S.; Beach

2023-07-08 genetic and genomic medicine
10.1101/2023.07.06.23292311 medRxiv
Show abstract

Limited ancestral diversity has impaired our ability to detect risk variants more prevalent in non-European ancestry groups in genome-wide association studies (GWAS). We constructed and analyzed a multi-ancestry GWAS dataset in the Alzheimers Disease (AD) Genetics Consortium (ADGC) to test for novel shared and ancestry-specific AD susceptibility loci and evaluate underlying genetic architecture in 37,382 non-Hispanic White (NHW), 6,728 African American, 8,899 Hispanic (HIS), and 3,232 East Asian individuals, performing within-ancestry fixed-effects meta-analysis followed by a cross-ancestry random-effects meta-analysis. We identified 13 loci with cross-ancestry associations including known loci at/near CR1, BIN1, TREM2, CD2AP, PTK2B, CLU, SHARPIN, MS4A6A, PICALM, ABCA7, APOE and two novel loci not previously reported at 11p12 (LRRC4C) and 12q24.13 (LHX5-AS1). Reflecting the power of diverse ancestry in GWAS, we observed the SHARPIN locus using 7.1% the sample size of the original discovering single-ancestry GWAS (n=788,989). We additionally identified three GWS ancestry-specific loci at/near (PTPRK (P=2.4x10-8) and GRB14 (P=1.7x10-8) in HIS), and KIAA0825 (P=2.9x10-8 in NHW). Pathway analysis implicated multiple amyloid regulation pathways (strongest with Padjusted=1.6x10-4) and the classical complement pathway (Padjusted=1.3x10-3). Genes at/near our novel loci have known roles in neuronal development (LRRC4C, LHX5-AS1, and PTPRK) and insulin receptor activity regulation (GRB14). These findings provide compelling support for using traditionally-underrepresented populations for gene discovery, even with smaller sample sizes.

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