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Deep resequencing of the 1q22 locus in non-lobar intracerebral hemorrhage.

Publication ,  Journal Article
Parodi, L; Comeau, ME; Georgakis, MK; Mayerhofer, E; Chung, J; Falcone, GJ; Malik, R; Demel, SL; Worrall, BB; Koch, S; Testai, FD; Kittner, SJ ...
Published in: medRxiv
April 24, 2023

OBJECTIVE: Genome-wide association studies have identified 1q22 as a susceptibility locus for cerebral small vessel diseases (CSVDs), including non-lobar intracerebral hemorrhage (ICH) and lacunar stroke. In the present study we performed targeted high-depth sequencing of 1q22 in ICH cases and controls to further characterize this locus and prioritize potential causal mechanisms, which remain unknown. METHODS: 95,000 base pairs spanning 1q22 , including SEMA4A, SLC25A44 and PMF1 / PMF1-BGLAP were sequenced in 1,055 spontaneous ICH cases (534 lobar and 521 non-lobar) and 1,078 controls. Firth regression and RIFT analysis were used to analyze common and rare variants, respectively. Chromatin interaction analyses were performed using Hi-C, ChIP-Seq and ChIA-PET databases. Multivariable Mendelian randomization (MVMR) assessed whether alterations in gene-specific expression relative to regionally co-expressed genes at 1q22 could be causally related to ICH risk. RESULTS: Common and rare variant analyses prioritized variants in SEMA4A 5'-UTR and PMF1 intronic regions, overlapping with active promoter and enhancer regions based on ENCODE annotation. Hi-C data analysis determined that 1q22 is spatially organized in a single chromatin loop and that the genes therein belong to the same Topologically Associating Domain. ChIP-Seq and ChIA-PET data analysis highlighted the presence of long-range interactions between the SEMA4A -promoter and PMF1 -enhancer regions prioritized by association testing. MVMR analyses demonstrated that PMF1 overexpression could be causally related to non-lobar ICH risk. INTERPRETATION: Altered promoter-enhancer interactions leading to PMF1 overexpression, potentially dysregulating polyamine catabolism, could explain demonstrated associations with non-lobar ICH risk at 1q22 , offering a potential new target for prevention of ICH and CSVD.

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medRxiv

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Publication Date

April 24, 2023

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United States
 

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Parodi, L., Comeau, M. E., Georgakis, M. K., Mayerhofer, E., Chung, J., Falcone, G. J., … Anderson, C. D. (2023). Deep resequencing of the 1q22 locus in non-lobar intracerebral hemorrhage. MedRxiv. https://doi.org/10.1101/2023.04.18.23288754
Parodi, Livia, Mary E. Comeau, Marios K. Georgakis, Ernst Mayerhofer, Jaeyoon Chung, Guido J. Falcone, Rainer Malik, et al. “Deep resequencing of the 1q22 locus in non-lobar intracerebral hemorrhage.MedRxiv, April 24, 2023. https://doi.org/10.1101/2023.04.18.23288754.
Parodi L, Comeau ME, Georgakis MK, Mayerhofer E, Chung J, Falcone GJ, et al. Deep resequencing of the 1q22 locus in non-lobar intracerebral hemorrhage. medRxiv. 2023 Apr 24;
Parodi, Livia, et al. “Deep resequencing of the 1q22 locus in non-lobar intracerebral hemorrhage.MedRxiv, Apr. 2023. Pubmed, doi:10.1101/2023.04.18.23288754.
Parodi L, Comeau ME, Georgakis MK, Mayerhofer E, Chung J, Falcone GJ, Malik R, Demel SL, Worrall BB, Koch S, Testai FD, Kittner SJ, McCauley JL, Hall CE, Mayson DJ, Elkind MS, James ML, Woo D, Rosand J, Langefeld CD, Anderson CD. Deep resequencing of the 1q22 locus in non-lobar intracerebral hemorrhage. medRxiv. 2023 Apr 24;

Published In

medRxiv

DOI

Publication Date

April 24, 2023

Location

United States