Progress and challenges in the design and development of selective KRAS G12D-targeted drug discovery: inhibitors, degraders and emerging therapeutic strategies.
Aug 2026· Future Medicinal Chemistry· pp.
1-16
· 0 citations· 41 references
Medicine
TL;DR
This review summarizes recent progress in KRAS G12D-targeted inhibitors and degraders, highlighting current challenges and future opportunities for improving KRAS-directed cancer treatment.
Abstract
KRAS is one of the most frequently mutated oncogenes in human cancers, with KRAS G12D representing the predominant mutation in pancreatic ductal adenocarcinoma and a major driver of colorectal and lung cancers. Although KRAS was long considered "undruggable" due to structural and biochemical constraints, the discovery of the switch-II pocket enabled the development of direct KRAS inhibitors, leading to the clinical success of KRAS G12C-targeted therapies. Building on this breakthrough, advances have been made in KRAS G12D-targeted drug development, including potent non-covalent inhibitors such as MRTX1133, HRS-4642, LY3962673, and INCB161734, as well as RAS(ON) tri-complex inhibitors such as RMC-9805. Pan-RAS and pan-KRAS inhibitors have emerged as a promising strategy to overcome the limitations of mutation-specific KRAS inhibitors, including restricted mutation coverage and acquired resistance. Among the developed pan-RAS inhibitors, RMC-6236 is the most advanced candidate in clinical development. In parallel, targeted protein degradation strategies, particularly PROTAC-based degraders such as ASP3082 and RP03707, have emerged as promising alternatives to overcome resistance and improve therapeutic durability. Combination strategies involving EGFR inhibitors, chemotherapy, and immunotherapy are also expanding clinical potential. This review summarizes recent progress in KRAS G12D-targeted inhibitors and degraders, highlighting current challenges and future opportunities for improving KRAS-directed cancer treatment.
These breakthroughs have validated direct KRAS inhibition as an effective therapeutic strategy, however, durable clinical responses remain limited by intrinsic and acquired resistance, pathway reactivation, tumour heterogeneity, and the lack of effective therapies for non-G12C KRAS mutations.
Pasham Uma, Dandotikar Neha, R. Manisha et al.· International Journal of Inn...· 0 citations
Therapeutically targeting mutant KRAS represents a clinically validated approach for the treatment of solid tumors, including lung, colon, and pancreatic cancers. The approval of covalent KRASG12C inhibitors, such as sotorasib and adagrasib, has fueled intense interest in expanding KRAS-directed therapies to mutations beyond KRAS G12C, such as KRAS G12D, KRAS G12V, and KRAS G13D. Here, we describe the structure- and property-based design of reversible inhibitors of diverse oncogenic mutants of KRAS, leading to AM-2383, a pan-KRAS inhibitor that blocks signaling via both the GDP(off)- and GTP(on)-bound states of KRAS, while sparing the closely related RAS isoforms HRAS and NRAS. AM-2383 disrupts signaling downstream of KRAS, potently suppressing the growth of KRAS G12D and KRAS G12V tumor xenografts following oral administration. AM-2383 represents an important proof-of-concept that structural insights from prior covalent KRASG12C inhibitors can be leveraged in the design of efficacious and well-tolerated inhibitors of diverse KRAS mutations.
Ryan P Wurz, Jennifer R Allen, John G. Allen et al.· Journal of Medicinal Chemist...· 0 citations
KRAS driver mutations have classically been considered undruggable by direct inhibitors in non-small cell lung cancer (NSCLC) as well as other solid tumors. However, recent advances have led to the first successful direct KRAS inhibitors, beginning with the development of KRASG12C inhibitors targeting the inactive GDP-bound state of KRAS. These initial KRASG12C (OFF) inhibitors demonstrated real but modest activity in KRASG12C-mutated mNSCLC. The development of more potent optimized KRASG12C (OFF) inhibitors has sought to improve upon the clinical activity of the initial raft of KRASG12C (OFF) inhibitors. Combination therapy with PD-1 inhibitors, as well as other classes of drugs, is also under intense investigation in NSCLC and other solid tumors. Nevertheless, primary and acquired resistance, as well as a variable and peculiar tendency to autoimmune hepatitis, have complicated efforts to develop this class of inhibitors in KRASG12C-mutated mNSCLC. In parallel, new direct inhibitor classes have emerged recently, including tri-complex ON-state inhibitors and dual-state ON/OFF inhibitors capable of targeting not only KRASG12C but also other KRAS mutations, as well as panKRAS and panRAS strategies. These agents have the potential to broaden the activity of initial KRASG12C (OFF) inhibitors and to avoid certain mechanisms of resistance and toxicity, but remain early in development with limited data. The KRAS therapeutic landscape is evolving rapidly, with many promising competing strategies each seeking to distinguish itself in an increasingly crowded therapeutic landscape.
Tämer El Saadany, Núria Aeschlimann, A. Sacher· Cancer Journal· 0 citations
This review systematically summarizes the molecular mechanisms driving KRAS G12C‑mutant lung cancer, clinical applications of targeted drugs, resistance and heterogeneity challenges, and progress in combination therapy, providing a reference for clinical decision-making and further research in this field.
Xizhi Zha· Theoretical and Natural Scie...· 0 citations
KRAS-mutant NSCLC is transitioning from historically untargetable disease to a therapeutically actionable subset, and future progress hinges on resistance-directed combinations, biomarker-guided personalization, expansion to non-G12C mutants, and evaluation in earlier disease settings.
A. Kapoor, Bipinesh Sansar, Anuj Gupta et al.· Medical Oncology· 0 citations
An orally bioavailable prodrug of ADT-1004, ADT-1004, demonstrated favorable tolerability and suppressed tumor growth in orthotopic and patient-derived xenograft models of pancreatic cancer, accompanied by reductions in activated RAS and p-ERK levels (Mol Cancer, 2025).
Junwei Wang, Xi Chen, Bandi D. S. Reddy et al.· Clinical Cancer Research· 0 citations
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