Ribonuclease 4 Functions in Nociceptor-Mediated Nerve Homeostasis

X Xiaona Feng K Kaiwen Zhang P Prach Techameena R Rolen M. Quadros C Csaba Adori A Aliia Murtazina I Igor Adameyko S Sofia Biagini O Ozun Gokce Bayramlik F Francois Lallemend C Channabasavaiah B. Gurumurthy S Saida Hadjab

Abstract

Abstract The regulation of nociceptor identity and function is essential, as disruptions can significantly influence pain sensation, yet our understanding of the molecular mechanisms involved remains incomplete. In this study, we identified ribonuclease 4 (RNase4) as selectively expressed in the unmyelinated nociceptor lineage. Analysis of RNase4 -deficient mice and single-cell transcriptomic data revealed a cell-autonomous role for RNase4 in regulating nociceptor function. Moreover, in a neuropathic pain model, RNase4 expression was upregulated in nociceptors during the pain and recovery phases, and its deletion altered mechanical sensation. Additionally, RNase4 exerted non-cell- autonomous effects on the myelin structural organization of adjacent myelinated axons. Together, these findings implicate RNase4 as a dual regulator of nociceptor biology and myelin integrity, revealing a molecular pathway for pain regulation and nerve repair.

Article Details

Volume / Issue Vol. 17, Issue 1
Published March 24, 2026
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (12)

X

Xiaona Feng

K

Kaiwen Zhang

P

Prach Techameena

R

Rolen M. Quadros

C

Csaba Adori

A

Aliia Murtazina

I

Igor Adameyko

S

Sofia Biagini

O

Ozun Gokce Bayramlik

F

Francois Lallemend

C

Channabasavaiah B. Gurumurthy

S

Saida Hadjab