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Discovery, Preclinical Characterization, and Early Clinical Activity of JDQ443, a Structurally Novel, Potent, and
Andreas Weiss1, Edwige Lorthiois1, Louise Barys1
1Novartis Institutes for BioMedical Research, Basel, Switzerland.
Abstract:
Covalent inhibitors of KRASG12C have shown antitumor activity against advanced/metastatic KRASG12C-mutated cancers, though resistance emerges and additional strategies are needed to improve outcomes. JDQ443 is a structurally unique covalent inhibitor of GDP-bound KRASG12C that forms novel interactions with the switch II pocket. JDQ443 potently inhibits KRASG12C-driven cellular signaling and demonstrates selective antiproliferative activity in KRASG12C-mutated cell lines, including those with G12C/H95 double mutations. In vivo, JDQ443 induces AUC exposure-driven antitumor efficacy in KRASG12C-mutated cell-derived (CDX) and patient-derived (PDX) tumor xenografts. In PDX models, single-agent JDQ443 activity is enhanced by combination with inhibitors of SHP2, MEK, or CDK4/6. Notably, the benefit of JDQ443 plus the SHP2 inhibitor TNO155 is maintained at reduced doses of either agent in CDX models, consistent with mechanistic synergy. JDQ443 is in clinical development as monotherapy and in combination with TNO155, with both strategies showing antitumor activity in patients with KRASG12C-mutated tumors.
Significance:
JDQ443 is a structurally novel covalent KRASG12C inhibitor with a unique binding mode that demonstrates potent and selective antitumor activity in cell lines and in vivo models. In preclinical models and patients with KRASG12C-mutated malignancies, JDQ443 shows potent antitumor activity as monotherapy and in combination with the SHP2 inhibitor TNO155. This article is highlighted in the In This Issue feature, p. 1397.
Insights
JDQ443, a novel covalent inhibitor targeting KRASG12C, shows potent antitumor activity in preclinical models and patients. Combination therapy, particularly with SHP2 inhibitors, enhances efficacy against KRASG12C-mutated cancers.
Area of Science:
- Oncology
- Molecular Biology
- Drug Discovery
Background:
- KRASG12C mutations drive various cancers, and covalent inhibitors offer therapeutic potential.
- Emergence of resistance necessitates novel strategies to improve outcomes in KRASG12C-mutated cancers.
Purpose of the Study:
- To evaluate the antitumor activity and mechanistic profile of JDQ443, a novel covalent KRASG12C inhibitor.
- To assess the efficacy of JDQ443 as monotherapy and in combination with other targeted agents.
Main Methods:
- In vitro assays to assess inhibition of KRASG12C signaling and antiproliferative activity.
- In vivo studies using cell-derived (CDX) and patient-derived (PDX) tumor xenografts.
- Combination studies with SHP2, MEK, and CDK4/6 inhibitors.
Main Results:
- JDQ443 potently inhibits KRASG12C signaling and exhibits selective antiproliferative effects.
- JDQ443 demonstrates dose-exposure antitumor efficacy in KRASG12C-mutated CDX and PDX models.
- Combination of JDQ443 with SHP2, MEK, or CDK4/6 inhibitors enhanced antitumor activity; mechanistic synergy observed with SHP2 inhibition.
Conclusions:
- JDQ443 is a structurally unique covalent KRASG12C inhibitor with potent and selective antitumor activity.
- Combination therapy with JDQ443, especially with SHP2 inhibitors like TNO155, shows promise for treating KRASG12C-mutated cancers.
- JDQ443 is under clinical investigation for monotherapy and combination treatment in patients with KRASG12C-mutated tumors.
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