-
Rho/MRTF/SRF Inhibitor
CCG-232601 (compound 8f) is a potent and orally active inhibitor of the Rho/MRTF/SRF transcriptional pathway. It effectively inhibits the development of bleomycin-induced dermal fibrosis in mice and holds potential for antifibrotic research in systemic scleroderma and related fibrotic disorders. -
RAS inhibitor
GDC-6036-NH is a precursor compound described in patent WO2020097537A2 and serves as a key intermediate for the synthesis of Compound 17a/b. Compound 17a/b functions as a RAS inhibitor and is suitable for use in cancer research, particularly in studies targeting RAS-driven signaling pathways. -
KRAS G12C inhibitor
AZD4625 (Compound 21) is a highly potent, selective, covalent, and allosteric inhibitor of the mutant GTPase KRAS^G12C. It exhibits strong target engagement and high oral bioavailability, making it a promising candidate for the treatment of KRAS^G12C-driven cancers. -
KRAS G12D inhibitor
HRS-4642 is a selective KRAS^G12D inhibitor with a dissociation constant (Kd) of 0.083 nM, demonstrating potent anti-cancer activity. It synergizes with Carfilzomib and exhibits strong in vivo efficacy, promoting remodeling of the tumor microenvironment into an immune-activating state.
-
RAS(ON) Inhibitor
Daraxonrasib (RMC-6236) is an orally active, non-covalent RAS(ON) inhibitor that disrupts the interaction between wild-type or mutant RAS proteins and the RAS-binding domain of BRAF. It exhibits EC₅₀ values ranging from 28 to 220 nM across wild-type KRAS, NRAS, HRAS, and multiple oncogenic RAS variants. RMC-6236 inhibits pERK signaling and demonstrates anti-tumor activity in KRAS-mutant tumor models.
-
pan-KRAS Inhibitor
BI-2865 is a non-covalent pan-KRAS inhibitor that binds to wild-type and mutant KRAS variants, including G12C, G12D, G12V, and G13D, with dissociation constants (K\_D) of 6.9, 4.5, 32, 26, and 4.3 nM, respectively. It inhibits the proliferation of Ba/F3 cells expressing KRAS^G12C, KRAS^G12D, or KRAS^G12V, with a mean IC₅₀ of approximately 140 nM. -
pan-KRAS inhibitor
AMG410 is a non-covalent, selective pan-KRAS inhibitor with IC₅₀ values of 1–4 nM against KRAS^G12D, KRAS^G12V, and KRAS^G13D. It demonstrates over 100-fold selectivity against HRAS and NRAS. AMG410 functions as a dual-state inhibitor, binding both GDP-bound (K\_d = 1 nM) and GTP-bound (K\_d = 22 nM) KRAS, effectively blocking signaling independent of the nucleotide state. It also inhibits proliferation in wild-type KRAS-amplified tumor cells and is suitable for research in colorectal, pancreatic, and lung cancers. -
KRAS G12C inhibitor
Divarasib (GDC-6036) is an orally bioavailable, highly potent, and selective KRAS^G12C inhibitor with an IC₅₀ of <0.01 μM. It covalently binds to the switch II (SW-II) pocket of KRAS^G12C, irreversibly locking the protein in its inactive GDP-bound conformation. -
KRAS Switch I/II Pocket Inhibitor
BI-2852 is a KRAS inhibitor designed to target the switch I/II (SI/II) pocket with nanomolar affinity. Unlike covalent KRAS^G12C inhibitors that bind the switch II pocket, BI-2852 exhibits a distinct mechanism of action and binds preferentially to active KRAS^G12D with \~10-fold greater affinity than KRAS^WT (740 nM vs. 7.5 μM). It disrupts interactions between KRAS and GEFs, GAPs, and effectors, thereby inhibiting downstream signaling and exerting antiproliferative effects in KRAS-mutant cells. -
KRAS G12C inhibitor
Opnurasib (JDQ-443, also known as NVP-JDQ443) is an orally active, potent, selective, and covalent KRAS^G12C inhibitor, as described in patent WO2021120890A1. It exhibits strong antitumor activity in KRAS^G12C-driven cancer models. -
ULK1/2 inhibitor
DCC-3116 is an orally active inhibitor of ULK1/2 that suppresses autophagy in lung cancer cells. By targeting ULK1/2, DCC-3116 inhibits KRAS^G12C-driven signaling pathways, leading to reduced cell proliferation and demonstrating anti-tumor activity in KRAS-mutant lung cancer models. -
TrxR-1 inhibitor
Manumycin A is a polyketide antibiotic that functions as an inhibitor of thioredoxin reductase 1 (TrxR-1). It exhibits anti-tumor activity by inhibiting breast cancer cell growth, potentially through LC3-mediated mechanisms. Manumycin A also downregulates pro-inflammatory cytokine release in TNF-α-stimulated human monocytes, indicating anti-inflammatory potential. Additionally, it inhibits the Ras/Raf/ERK1/2 signaling pathway and hnRNP H1 in castration-resistant prostate cancer cells, thereby suppressing exosome biogenesis and secretion. -
RAS-G12V inhibitor
RMC-5127 is an orally active, brain-penetrant, mutant-selective tri-complex inhibitor targeting RASG12V. It non-covalently binds to cyclophilin A (CypA), forming a binary complex that engages active RASG12V to create a high-affinity tri-complex, thereby sterically blocking RAS-effector interactions. RMC-5127 inhibits RAS signaling in KRASG12V-mutant cancer cells, suppressing proliferation and inducing apoptosis. It holds promise for the study of RAS-mutant cancers, including non-small cell lung cancer. -
KRAS G12D inhibitor
MRTX1133 is a noncovalent, potent, and selective KRAS G12D inhibitor featuring an alkyne-based structure. It binds with high affinity to the switch II pocket of KRAS G12D, with an estimated KD of 0.2 pM, engaging three key substituents that enhance protein interactions. MRTX1133 inhibits SOS1-mediated nucleotide exchange and disrupts formation of the KRAS G12D/GTP/RAF1 complex, thereby blocking downstream mutant KRAS signaling. It selectively targets KRAS G12D mutant cells without affecting KRAS wild-type cells, exhibiting single-digit nanomolar potency in cellular assays and strong antitumor efficacy in KRAS G12D-driven in vivo models. -
RAS inhibitor
ADT-007 is a potent and orally active pan-RAS inhibitor with strong anticancer activity. It binds to RAS in its nucleotide-free conformation, effectively blocking GTP loading and activation. ADT-007 selectively inhibits the proliferation of cancer cells harboring mutated or hyperactivated wild-type RAS isozymes, making it a promising candidate for RAS-driven cancer research and therapy. -
KRAS G12C inhibitor
Fulzerasib (GFH925) is an irreversible inhibitor of KRAS^G12C, demonstrating potent anticancer activity. It exhibits synergistic effects when combined with cetuximab, enhancing the therapeutic efficacy against KRAS^G12C-driven tumors. -
SOS1 inhibitor
RGT-018 is a potent, orally active SOS1 inhibitor that exhibits anti-tumor activity by blocking KRAS activation. By disrupting the SOS1–KRAS interaction, RGT-018 effectively inhibits cancer cell proliferation, making it a promising candidate for targeting KRAS-driven malignancies. -
KRAS G12C inhibitor 36
Glecirasib (Compound 1-2; JAB-21822) is a potent and orally active inhibitor of KRAS^G12C. As a member of the Ras protein family—key regulators of intracellular signaling involved in cell growth and development—KRAS^G12C is a critical oncogenic driver. Glecirasib shows strong potential for the study and treatment of KRAS^G12C-mediated cancers. -
KRAS G12D inhibitor
Zoldonrasib (RMC-9805) is a potent, orally active inhibitor selectively targeting KRAS^G12D. It induces apoptosis in KRAS^G12D-mutant cancer cells and holds significant potential for the study and treatment of KRAS^G12D-driven malignancies. -
KRAS G12C inhibitor
Olomorasib is a potent and selective inhibitor of KRAS^G12C, demonstrating significant tumor growth inhibition, as reported in patent WO2021118877A1. It is under investigation for targeted therapy in KRAS^G12C-mutant cancers -
KRASG12C inhibitor
RMC-4998 is an orally active inhibitor that selectively targets the active, GTP-bound state of the KRAS^G12C mutant. It forms a ternary complex with intracellular cyclophilin A (CYPA) and activated KRAS^G12C, exhibiting an IC50 of 28 nM. RMC-4998 suppresses ERK signaling and induces apoptosis in KRAS^G12C-mutant cancer cells, making it a valuable candidate for tumor research. -
RAS inhibitor
RMC-7977 is an orally bioavailable, triple-complex RAS inhibitor that functions by simultaneously binding to cyclophilin A (CypA; K_d = 195 nM) and KRAS^G12V (K_d = 292 μM), facilitating the formation of a stable inhibitory complex. It exhibits broad-spectrum activity against RAS isoforms—including KRAS, NRAS, and HRAS—across both wild-type and mutant variants. RMC-7977 suppresses key oncogenic signaling pathways by inhibiting the phosphorylation of ERK, CRAF, and RSK, while promoting apoptosis through enhanced PARP cleavage. This dual mechanism results in significant tumor regression and reduced acquired resistance in KRAS^G12C-driven cancer models. It also shows favorable tolerability across a range of RAS-mutant tumor models, positioning it as a promising therapeutic candidate for RAS-driven malignancies. -
KRAS-G12C(ON) Inhibitor
Elironrasib is an orally active, covalent inhibitor specifically targeting the active GTP-bound form of KRAS^G12C (KRAS^G12C(ON)). It uniquely functions by forming a stable tri-complex with KRAS^G12C(ON) and cyclophilin A (CypA) within tumor cells, leading to steric hindrance that blocks the interaction between KRAS and its downstream effectors. This mechanism effectively suppresses RAS-mediated signaling, particularly the ERK pathway. Elironrasib induces apoptosis in KRAS^G12C-mutant H358 non-small cell lung cancer cells and demonstrates potent antiproliferative activity across KRAS^G12C-mutant cell lines, with a median IC₅₀ of 0.11 nM. Its high specificity and novel mechanism make it a promising therapeutic candidate for cancers driven by KRAS^G12C mutations. -
KRAS/ERK/RAS Inhibitor
LUNA18 is an orally bioavailable cyclic peptide that functions as a dual inhibitor of KRAS and ERK signaling pathways. It disrupts the interaction between RAS and guanine nucleotide exchange factors (GEFs), effectively inhibiting RAS activation and downstream signaling. In RAS-mutated cancer cells, LUNA18 reduces cell proliferation while modulating key signaling nodes, including phosphorylation of ERK and AKT. In preclinical studies, LUNA18 demonstrates potent anticancer activity, particularly in xenograft models, by blocking RAS-driven tumor growth. It shows significant cellular efficacy against cancer cell lines harboring KRAS mutations, including colon, gastric, pancreatic, and non-small cell lung cancers, highlighting its therapeutic potential as a targeted agent for RAS-driven malignancies. -
PI3K/Akt/Ras/Raf/MAPK Inhibitor
Erufosine is a potent inhibitor of the PI3K/Akt and Ras/Raf/MAPK signaling pathways. It demonstrates significant cytotoxic activity against breast cancer cell lines, specifically MCF-7 and MDA-MB-231, with IC50 values of 40.95 μM and 40.8 μM, respectively. By reducing the phosphorylation levels of PI3K (p85), Akt (PKB), and cRaf, Erufosine serves as a valuable tool in the research of breast cancer and myeloid leukemia. -
pan-KRAS Inhibitor
pan-KRAS-IN-5 is a pan-KRAS inhibitor that functions by targeting 5′-UTR RNA G-quadruplexes (rG4s). It effectively binds to and stabilizes KRAS rG4s, leading to the inhibition of KRAS translation and downstream signaling via the MAPK and PI3K-AKT pathways. This compound has been shown to induce cell cycle arrest and promote apoptosis in KRAS-driven cancer cells, while also inhibiting tumor growth and KRAS expression in KRAS-mutant xenograft models. pan-KRAS-IN-5 is suitable for investigations into KRAS-related oncogenesis and therapeutic strategies for KRAS-driven cancers. -
KRAS Inhibitor
BBO-11818 is a highly selective non-covalent pan-KRAS inhibitor, targeting the Switch-II/Helix 3 pocket with an IC50 range of 28-120 nM. This compound effectively disrupts the KRAS:RAF1 interaction, leading to inhibition of the MAPK signaling pathway, resulting in significant anti-tumor effects. It demonstrates the ability to not only inhibit cell proliferation and induce apoptosis but also promote tumor regression in xenograft models. BBO-11818 is particularly valuable in research focused on KRAS mutation-related malignancies, including pancreatic cancer, non-small cell lung cancer, and colorectal cancer, and exhibits synergistic effects when used in combination with other therapeutic agents. -
KRAS G12D Inhibitor
KRAS G12D-IN-30 is a selective inhibitor of the KRAS G12D mutant, targeting the KRAS oncogene involved in various cancers. By inhibiting the activation of the downstream MAPK signaling cascade, specifically the Raf1-MEK-ERK pathway, this compound provides valuable insights into oncogenic signaling mechanisms. KRAS G12D-IN-30 is suitable for cancer research applications, particularly in studies focusing on KRAS-driven tumor biology and therapeutic strategies. -
KRAS Inhibitor
KRAS inhibitor-27 is a specific inhibitor targeting KRAS mutations, particularly effective against KRAS G12D and G12V variants. It demonstrates potent biological activity with IC50 values of 378 nM and 0.6 nM in AsPC-1 and SW620 cell lines, respectively, while showing a markedly reduced effect on wildtype KRAS HT-29 cells (IC50 3230 nM). This compound effectively inhibits ERK phosphorylation and reduces DUSP4 expression, thereby disrupting the MAPK signaling pathway. KRAS inhibitor-27 is valuable for research applications focusing on cancer biology and therapeutic strategies against KRAS-driven tumors. -
KRASG12C Inhibitor
KRASG12C IN-19 is a selective inhibitor that targets the KRASG12C mutation. It demonstrates potent antiproliferative effects against KRASG12C-mutant non-small cell lung cancer (NSCLC) cell line H358, with an IC50 of 7.6 nM, and effectively inhibits downstream ERK phosphorylation (IC50 = 24.06 nM). KRASG12C IN-19 shows minimal inhibitory activity against KRASG12V and KRASG12D mutants, with IC50 values exceeding 10,000 nM. This reagent forms a covalent bond with KRASG12V-GDP and provides a robust tool for research on KRASG12C-driven malignancies, including NSCLC, pancreatic cancer, and colorectal cancer. -
RAS/RAS-RAF Inhibitor
RAS/RAS-RAF-IN-1 is a potent inhibitor targeting the RAS and RAS-RAF signaling pathways. With a dissociation constant (KD) in the range of 5.0 μM to 15 μM for cyclophilin A (CYPA), this compound demonstrates significant binding affinity. RAS/RAS-RAF-IN-1 exhibits notable antitumor activity, making it a valuable tool for cancer research and therapeutic development. -
Ras-Raf Inhibitor
Cyclorasin 9A5 is an 11-residue cyclic peptide that acts as an orthosteric inhibitor of the Ras-Raf protein interaction, exhibiting an IC50 of 120 nM. This compound is valuable for studying the Ras signaling pathway's involvement in various cancers and cellular processes. Its cell-permeable nature allows for effective in vitro and in vivo applications in cancer research and drug development targeting Ras-dependent pathways. -
PDE6δ-KRas Inhibitor
Deltasonamide 1 is a potent inhibitor of the PDE6δ-KRas interaction, exhibiting a dissociation constant (KD) of 203 pM. This compound effectively disrupts the function of the KRas signaling pathway, making it a valuable tool for investigating tumor biology and related therapeutic strategies. Deltasonamide 1 holds promise for advancing research in cancer treatment and understanding related pathophysiological mechanisms. -
KRAS Inhibitor
Deltarasin hydrochloride is a potent inhibitor of the interaction between KRAS and PDEδ, exhibiting a binding affinity (Kd) of 38 nM for purified PDEδ. This compound is crucial for research applications focused on targeting KRAS-driven oncogenesis, primarily in cancer studies. By disrupting this interaction, Deltarasin hydrochloride facilitates investigations into therapeutic strategies aimed at KRAS mutations and their downstream signaling pathways. -
PDE6δ-KRas Inhibitor
Deltasonamide 1 TFA is a potent inhibitor of the PDE6δ-KRas interaction, exhibiting a binding affinity with a KD of 203 pM. This compound is valuable in research focused on cancer biology, particularly in the study of tumor progression and metastasis. Its ability to disrupt the PDE6δ-KRas axis makes it a useful tool for investigating the underlying mechanisms of KRas-driven malignancies. -
KRAS G12C Inhibitor
KRAS G12C-IN-78 is a selective inhibitor targeting the KRAS G12C mutant protein, binding to both inactive and active states. This compound effectively inhibits ERK1/2 phosphorylation and promotes covalent adduct formation with endogenous KRAS G12C, leading to the suppression of MAPK pathway gene expression and reduced cellular proliferation in KRAS G12C mutant cells. KRAS G12C-IN-78 is suitable for studying KRAS G12C mutant solid tumors, such as pancreatic ductal adenocarcinoma and non-small cell lung cancer. -
KRAS-PDEδ Inhibitor
NHTD is a selective inhibitor of KRAS-PDEδ, targeting the prenyl-binding pocket of PDEδ and modulating the cellular localization of KRAS. This action effectively inhibits the proliferation of KRAS-mutant cancer cells and promotes apoptosis. NHTD is a valuable tool for investigations into KRAS-driven non-small cell lung cancer (NSCLC) and related oncology research. -
Cdc42 GTPase inhibitor
ZCL-278 is a selective inhibitor of Cdc42. Targets the binding site of the Cdc42 guanine nucleotide exchange factor, intersectin (ITSN). Inhibits Cdc42-mediated cellular effects, including microspike formation in 3T3 fibroblasts and neuronal branching in primary neonatal cortical neurons. Also suppresses cell motility and migration in PC3 cells, without cytotoxic effects. -
PDE-KRAS inhibitor
Deltarasin is a novel small molecule inhibiting the KRAS PDEδ interaction and thus impairing oncogenic KRAS signalling. -
Rac GTPase inhibitor
NSC 23766 is a cell-permeable, reversible inhibitor of Rac1 activation by the Rac-specific GEFs TrioN and Tiam 1 (IC50 = 50 uM). -
K-Ras(G12C) inhibitor
K-Ras(G12C) inhibitor 6 is an irreversible inhibitor of oncogenic K-Ras(G12C), subverting the native nucleotide preference to favour GDP over GTP. -
K-Ras(G12C) inhibitor
K-Ras(G12C) inhibitor 12 is an allosteric inhibitor of oncogenic K-Ras(G12C). -
K-Ras inhibitor
6H05 is a selective, and allosteric inhibitor of oncogenic K-Ras(G12C).

