Population analyses of mosaic X chromosome loss identify genetic drivers and widespread signatures of cellular selection
Liu, A.; Genovese, G.; Zhao, Y.; Pirinen, M.; Zekavat, M. M.; Kentistou, K.; Yang, Z.; Yu, K.; Vlasschaert, C.; Liu, X.; Brown, D. W.; Hudjashov, G.; Gorman, B.; Dennis, J.; Zhou, W.; Momozawa, Y.; Pyarajan, S.; Tuzov, V.; Pajuste, F.-D.; Aavikko, M.; Sipila, T. P.; Ghazal, A.; Huang, W.-Y.; Freedman, N.; Song, L.; Gardner, E.; FinnGen, ; BCAC, ; MVP, ; Sankaran, V. G.; Palotie, A. G.; Ollila, H. M.; Tukiainen, T.; Chanock, S.; Magi, R.; Natarajan, P.; Daly, M. J.; Bick, A. G.; McCarroll, S. A.; Terao, C.; Loh, P.-R.; ganna, a.; Perry, J. R. B.; Machiela, M. J.
Show abstract
Mosaic loss of the X chromosome (mLOX) is the most commonly occurring clonal somatic alteration detected in the leukocytes of women, yet little is known about its genetic determinants or phenotypic consequences. To address this, we estimated mLOX in >900,000 women across eight biobanks, identifying 10% of women with detectable X loss in approximately 2% of their leukocytes. Out of 1,253 diseases examined, women with mLOX had an elevated risk of myeloid and lymphoid leukemias and pneumonia. Genetic analyses identified 49 common variants influencing mLOX, implicating genes with established roles in chromosomal missegregation, cancer predisposition, and autoimmune diseases. Complementary exome-sequence analyses identified rare missense variants in FBXO10 which confer a two-fold increased risk of mLOX. A small fraction of these associations were shared with mosaic Y chromosome loss in men, suggesting different biological processes drive the formation and clonal expansion of sex chromosome missegregation events. Allelic shift analyses identified alleles on the X chromosome which are preferentially retained, demonstrating that variation at many loci across the X chromosome is under cellular selection. A novel polygenic score including 44 independent X chromosome allelic shift loci correctly inferred the retained X chromosomes in 80.7% of mLOX cases in the top decile. Collectively our results support a model where germline variants predispose women to acquiring mLOX, with the allelic content of the X chromosome possibly shaping the magnitude of subsequent clonal expansion.
Matching journals
The top 3 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Genome-wide analyses of 200,453 individuals yields new insights into the causes and consequences of clonal hematopoiesis 98%
- Cell type-specific consequences of mosaic structural variants in hematopoietic stem and progenitor cells 97%
- Polygenic basis and biomedical consequences of telomere length variation 97%
Similar papers in this journal
- Colocalization of blood cell traits GWAS associations and variation in PU.1 genomic occupancy prioritizes causal noncoding regulatory variants 97%
- Genetic adaptation to pathogens and increased risk of inflammatory disorders in post-Neolithic Europe 96%
- Cystatin C is glucocorticoid-responsive, directs recruitment of Trem2+ macrophages and predicts failure of cancer immunotherapy 96%
Similar papers in this journal
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.