Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Orthosteric STING inhibition elucidates molecular correction of SAVI STING

View through CrossRef
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.
Title: Orthosteric STING inhibition elucidates molecular correction of SAVI STING
Description:
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.

Related Results

Orthosteric STING inhibition elucidates molecular correction of SAVI STING
Orthosteric STING inhibition elucidates molecular correction of SAVI STING
STING is broadly implicated in diseases ranging from cancer, autoimmune disease, neurodegeneration to rare, monogenic diseases. 1 Early drug dis...
Abstract 919: Endogenous STING inhibition induces breast cancer cell death
Abstract 919: Endogenous STING inhibition induces breast cancer cell death
Abstract Several studies have recently indicated the (re)activation of the immune system against tumor cells as an effective strategy to inhibit tumor growth. A curr...
Development of VHL-recruiting STING PROTACs that suppress innate immunity
Development of VHL-recruiting STING PROTACs that suppress innate immunity
Abstract STING acts as a cytosolic nucleotide sensor to trigger host defense upon viral or bacterial infection. While STING hyperactivation can exert anti-tumor effects by ...
Cytosolic DNA‐STING‐NLRP3 axis is involved in murine acute lung injury induced by lipopolysaccharide
Cytosolic DNA‐STING‐NLRP3 axis is involved in murine acute lung injury induced by lipopolysaccharide
Abstract The role of NOD‐like receptor protein 3 (NLRP3)‐mediated pyroptosis in acute lung injury (ALI) has been well identified previously. Stimulator of interfe...
A non-canonical cGAS-STING pathway drives cellular and organismal aging
A non-canonical cGAS-STING pathway drives cellular and organismal aging
Abstract Accumulation of cytosolic DNA has emerged as a hallmark of aging, inducing sterile inflammation. STING (Stimulator of Interferon Genes) protein translates ...
Régulation et activation non canonique du détecteur de l'immunité innée STING
Régulation et activation non canonique du détecteur de l'immunité innée STING
La voie de signalisation STING impliquée dans l'immunité innée intracellulaire joue un rôle majeur dans le cancer, les défenses antimicrobiennes et les maladies auto-immunes. STING...

Back to Top