A humanized NOVA1 splicing factor alters mouse vocal communications

Y Yoko Tajima C César D. M. Vargas K Keiichi Ito W Wei Wang J Ji-Dung Luo J Jiawei Xing (Simons Center for Quantitative Biology) N Nurdan Kuru L Luiz Carlos Machado (Simons Center for Quantitative Biology) A Adam Siepel (Simons Center for Quantitative Biology) T Thomas S. Carroll (Bioinformatics Resource Center, The Rockefeller University) E Erich D. Jarvis R Robert B. Darnell

Abstract

Abstract NOVA1, a neuronal RNA-binding protein expressed in the central nervous system, is essential for survival in mice and normal development in humans. A single amino acid change (I197V) in NOVA1’s second RNA binding domain is unique to modern humans. To study its physiological effects, we generated mice carrying the human-specific I197V variant (Nova1 hu/hu ) and analyzed the molecular and behavioral consequences. While the I197V substitution had minimal impact on NOVA1’s RNA binding capacity, it led to specific effects on alternative splicing, and CLIP revealed multiple binding peaks in mouse brain transcripts involved in vocalization. These molecular findings were associated with behavioral differences in vocalization patterns in Nova1 hu/hu mice as pups and adults. Our findings suggest that this human-specific NOVA1 substitution may have been part of an ancient evolutionary selective sweep in a common ancestral population of Homo sapiens, possibly contributing to the development of spoken language through differential RNA regulation during brain development.

Article Details

Volume / Issue Vol. 16, Issue 1
Published February 18, 2025
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (12)

Y

Yoko Tajima

C

César D. M. Vargas

K

Keiichi Ito

W

Wei Wang

J

Ji-Dung Luo

J

Jiawei Xing

Simons Center for Quantitative Biology

N

Nurdan Kuru

L

Luiz Carlos Machado

Simons Center for Quantitative Biology

A

Adam Siepel

Simons Center for Quantitative Biology

T

Thomas S. Carroll

Bioinformatics Resource Center, The Rockefeller University

E

Erich D. Jarvis

R

Robert B. Darnell