De novo rates of a <i>Trypanosoma</i> -resistant mutation in two human populations

D Daniel Melamed (Department of Evolutionary and Environmental Biology) R Revital Shemer (The Ruth and Bruce Rappaport Faculty of Medicine & Research Institute) E Evgeni Bolotin (Department of Evolutionary and Environmental Biology) M Michael B. Yakass (Department of Biochemistry, Cell and Molecular Biology) D Dorit Fink-Barkai (Department of Evolutionary and Environmental Biology) E Edem K. Hiadzi (Assisted Conception Unit) K Karl L. Skorecki (The Azrieli Faculty of Medicine) A Adi Livnat (Department of Evolutionary and Environmental Biology)

Abstract

Mutation rates have long been measured as averages across many genomic positions. Recently, a method to measure the rates of individual mutations was applied to a narrow region in the human hemoglobin subunit beta ( HBB ) gene containing the site of the hemoglobin S (HbS) mutation as well as to a paralogous hemoglobin subunit delta ( HBD ) region, in sperm samples from sub-Saharan African and northern European donors [Melamed et al ., Genome Res. 32 , 488–498 (2022)]. The HbS mutation, which protects against malaria while causing sickle-cell anemia in homozygotes, originated de novo significantly more frequently in the HBB gene in Africans compared to the other three test cases combined (the European HBB gene and the European and African HBD gene). Here, we apply this approach to the human apolipoprotein L1 ( APOL1 ) gene containing the site of the G1 1024A→G mutation, which protects against African sleeping sickness caused by Trypanosoma brucei gambiense while causing a substantially increased risk of chronic kidney disease in homozygotes. We find that the 1024A→G mutation is the mutation of highest de novo origination rate and deviates most from the genome-wide average rate for its type (A→G) compared to all other observable mutations in the region and that it originates de novo significantly more frequently in Africans than in Europeans—i.e., in the population where it is of adaptive significance. The results are unexpected given the notion that the probability of a specific mutational event is independent of its value to the organism and underscore the importance of studying mutation rates at the individual-mutation resolution.

Article Details

Volume / Issue Vol. 122, Issue 35
Published September 02, 2025
ISSN 0027-8424
Publisher National Academy of Sciences

Authors (8)

D

Daniel Melamed

Department of Evolutionary and Environmental Biology

R

Revital Shemer

The Ruth and Bruce Rappaport Faculty of Medicine & Research Institute

E

Evgeni Bolotin

Department of Evolutionary and Environmental Biology

M

Michael B. Yakass

Department of Biochemistry, Cell and Molecular Biology

D

Dorit Fink-Barkai

Department of Evolutionary and Environmental Biology

E

Edem K. Hiadzi

Assisted Conception Unit

K

Karl L. Skorecki

The Azrieli Faculty of Medicine

A

Adi Livnat

Department of Evolutionary and Environmental Biology