PACT prevents aberrant activation of PKR by endogenous dsRNA without sequestration

S Sadeem Ahmad T Tao Zou (Beijing Institute of Basic Medical Sciences) J Jihee Hwang L Linlin Zhao (Department of Chemistry, University of California) X Xi Wang A Anton Davydenko (Department of Biochemistry, Brandeis University) I Ilana Buchumenski P Patrick Zhuang A Alyssa R. Fishbein D Diego Capcha-Rodriguez A Aaron Orgel E Erez Y. Levanon (Faculty of Life Sciences) S Sua Myong J James Chou M Matthew Meyerson S Sun Hur

Abstract

Abstract The innate immune sensor PKR for double-stranded RNA (dsRNA) is critical for antiviral defense, but its aberrant activation by cellular dsRNA is linked to various diseases. The dsRNA-binding protein PACT plays a critical yet controversial role in this pathway. We show that PACT directly suppresses PKR activation by endogenous dsRNA ligands, such as inverted-repeat Alu RNAs, which robustly activate PKR in the absence of PACT. Instead of competing for dsRNA binding, PACT prevents PKR from scanning along dsRNA—a necessary step for PKR molecules to encounter and phosphorylate each other for activation. While PKR favors longer dsRNA for increased co-occupancy and scanning-mediated activation, longer dsRNA is also more susceptible to PACT-mediated regulation due to increased PACT-PKR co-occupancy. Unlike viral inhibitors that constitutively suppress PKR, this RNA-dependent mechanism allows PACT to fine-tune PKR activation based on dsRNA length and quantity, ensuring self-tolerance without sequestering most cellular dsRNA.

Article Details

Volume / Issue Vol. 16, Issue 1
Published April 08, 2025
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (16)

S

Sadeem Ahmad

T

Tao Zou

Beijing Institute of Basic Medical Sciences

J

Jihee Hwang

L

Linlin Zhao

Department of Chemistry, University of California

X

Xi Wang

A

Anton Davydenko

Department of Biochemistry, Brandeis University

I

Ilana Buchumenski

P

Patrick Zhuang

A

Alyssa R. Fishbein

D

Diego Capcha-Rodriguez

A

Aaron Orgel

E

Erez Y. Levanon

Faculty of Life Sciences

S

Sua Myong

J

James Chou

M

Matthew Meyerson

S

Sun Hur