Muscle AMP deaminase activity was lower in Neandertals than in modern humans

D Dominik Macak S Shin-Yu Lee (Okinawa Institute of Science and Technology Graduate University) T Tomas Nyman H Henry Ampah-Korsah E Emilia Strandback S Svante Pääbo H Hugo Zeberg

Abstract

Abstract The enzyme AMPD1 is expressed in skeletal muscle and is involved in ATP production. All available Neandertal genomes carry a lysine-to-isoleucine substitution at position 287 in AMPD1. This variant, which occurs at an allele frequency of 0–8% outside Africa, was introduced to modern humans by gene flow from Neandertals. Here, we show that the catalytic activity of the purified Neandertal AMPD1 is ~25% lower than the ancestral enzyme, and when introduced in mice, it reduces AMPD activity in muscle extracts by ~80%. Among present-day Europeans, another AMPD1 variant encoding a stop codon occurs at an allele frequency of 9–14%. Individuals heterozygous for this variant are less likely to be top-performing athletes in various sports, but otherwise reduced AMPD1 activity is well tolerated in present-day humans. While being conserved among vertebrates, AMPD1 seems to have become less functionally important among Neandertals and modern humans.

Article Details

Volume / Issue Vol. 16, Issue 1
Published July 10, 2025
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (7)

D

Dominik Macak

S

Shin-Yu Lee

Okinawa Institute of Science and Technology Graduate University

T

Tomas Nyman

H

Henry Ampah-Korsah

E

Emilia Strandback

S

Svante Pääbo

H

Hugo Zeberg