Back

Leveraging human genetic variation to therapeutically target hundreds of genes with dominant & dispensable disease alleles

Ramey, G. D.; Cowan, Q. T.; Saxena, A. G.; Macklin, B. L.; Watry, H. L.; Mei, S.; Dierks, P.; Judge, L. M.; Conklin, B. R.; Capra, J. A.

2026-03-27 genetic and genomic medicine
10.64898/2026.03.26.26349431 medRxiv
Show abstract

Here we identify a novel therapeutic opportunity for over 500 genes with putative "dominant & dispensable" (D&D) disease alleles. In these haplosufficient genes, a single functional allele may be sufficient for health, presenting the opportunity for therapeutic approaches that silence the pathogenic allele. We show that allele-specific targeting of common heterozygous genetic variation linked to D&D alleles enables a disease mutation-agnostic gene therapy approach that increases the number of patients treatable with a single therapy. In some disease genes, this approach would allow >80 times as many patients to be treated as mutation-specific strategies. D&D alleles cause diverse diseases, including neurodegeneration, cardiomyopathies, retinopathies, and diabetes, demonstrating the therapeutic opportunity of this approach across physiological systems. To enable broad application of allele-specific mutation-agnostic targeting, we provide genome-wide maps of common heterozygous variants that support D&D disease allele disruption by multiple CRISPR-based editing technologies, including Cas9 nucleases, base editors, and epigenome editors.

Matching journals

The top 5 journals account for 50% of the predicted probability mass.

50% of probability mass above

"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.