Orthosteric STING inhibition elucidates molecular correction of SAVI STING

T Tao Xie (Zhejiang University , , ,) M Max Ruzanov D David Critton L Leidy Merselis J Joseph Naglich J John S. Sack P Ping Zhang C Chunshan Xie J Jeffrey Tredup L Laurel B. Stine C Cameron Messier D David L. Hope J Janet Caceres-Cortes L Luciano Mueller A Alaric J. Dyckman J John A. Newitt A Asmita Choudhury S Stephen C. Wilson

Abstract

Abstract While the progression of STING activators into the clinic has been successful, the discovery and clinical progression of STING inhibitors remain elusive. Questions persist about the molecular properties needed to distinguish between a STING activator and inhibitor, particularly within SAVI disease, a monogenic autoinflammatory disease that renders STING constitutively active, and how different conformations correlate to function. In this work, we use an orthosteric STING activator and inhibitor from the same chemical series to discover that STING M271 is a critical residue for molecular activation that can be leveraged as a unique molecular signature for pharmacological or genetically driven activation and inhibition. Furthermore, we demonstrate how the therapeutic requirements of a molecular corrector of SAVI STING differs from an orthosteric STING inhibitor, and why this is important for the SAVI disease population.

Article Details

Volume / Issue Vol. 16, Issue 1
Published July 01, 2025
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (18)

T

Tao Xie

Zhejiang University , , ,

M

Max Ruzanov

D

David Critton

L

Leidy Merselis

J

Joseph Naglich

J

John S. Sack

P

Ping Zhang

C

Chunshan Xie

J

Jeffrey Tredup

L

Laurel B. Stine

C

Cameron Messier

D

David L. Hope

J

Janet Caceres-Cortes

L

Luciano Mueller

A

Alaric J. Dyckman

J

John A. Newitt

A

Asmita Choudhury

S

Stephen C. Wilson