Conformational dynamics, RNA binding, and phase separation regulate the multifunctionality of rabies virus P protein

S Stephen M. Rawlinson S Shatabdi Chakraborty A Ashish Sethi C Cassandra T. David A Angela R. Harrison L Lauren E. Bird A Ashley M. Rozario S Sanjeev Uthishtran K Katie Ardipradja T Tianyue Zhao S Sibil Oksayan D David A. Jans C Ching-Seng Ang Z Zhi Hui Lu F Fei Yan N Nicholas A. Williamson S Senthil Arumugam V Vinod Sundaramoorthy T Toby D. M. Bell P Paul R. Gooley G Gregory W. Moseley

Abstract

Abstract RNA viruses encode multifunctional proteins to overcome limited genomic capacity and mediate diverse processes in viral replication and host cell modulation. The rabies virus P gene encodes full-length P1 protein and the truncated isoform, P3, which acquires phenotypes absent from P1, including interactions with cellular membrane-less organelles (MLOs) formed by liquid-liquid phase separation (LLPS). This gain-of-function suggests that isoform multifunctionality arises not only from discrete functions of protein modules/domains, but also from conformational regulation involving interactions of the globular C-terminal domain and N-terminal intrinsically disordered regions (IDRs). The precise mechanisms underlying gain-of-function, however, remain unresolved. Here, we compare the structure and function of P1 and P3, identifying isoform-specific long-range intra-protomer interactions between the IDRs and C-terminal domain that correlate with conformational states, LLPS behavior, and subcellular localization. Mutations in P3 that alter MLO interactions correspondingly modulate these interactions. P1 and P3 can interact with similar/overlapping sets of MLO-associated proteins and have similar LLPS capacity, but only P3 binds RNA, and this interaction correlates with gain-/loss-of-function mutations. Our findings reveal that conformational differences in isoforms regulate LLPS behavior and contribute to protein-RNA interactions, which controls access to host LLPS structures, uncovering a previously unrecognized strategy in P protein multifunctionality.

Article Details

Volume / Issue Vol. 16, Issue 1
Published October 29, 2025
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (21)

S

Stephen M. Rawlinson

S

Shatabdi Chakraborty

A

Ashish Sethi

C

Cassandra T. David

A

Angela R. Harrison

L

Lauren E. Bird

A

Ashley M. Rozario

S

Sanjeev Uthishtran

K

Katie Ardipradja

T

Tianyue Zhao

S

Sibil Oksayan

D

David A. Jans

C

Ching-Seng Ang

Z

Zhi Hui Lu

F

Fei Yan

N

Nicholas A. Williamson

S

Senthil Arumugam

V

Vinod Sundaramoorthy

T

Toby D. M. Bell

P

Paul R. Gooley

G

Gregory W. Moseley