PROTAC

Items 5301-5350 of 5610

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  1. Molecular Glue Degrader

    BTX306 is a cereblon-targeting molecular glue degrader that effectively reduces myeloma cell viability and induces apoptosis. This compound demonstrates the ability to overcome resistance in myeloma cells to traditional therapies such as Lenalidomide and Bortezomib. Additionally, BTX306 displays potent activity against primary myeloma cells and exhibits substantial efficacy in in vivo models. This reagent is suitable for research focusing on myeloma and related therapeutic strategies.
  2. BRD4 Degrader

    PROTAC BRD4 Degrader-6 is a potent small-molecule degrader that targets BRD4, exhibiting an IC50 value of 2.7 nM for the BRD4 BD1 domain. This compound effectively degrades BRD4 protein and leads to the downregulation of c-Myc expression. In vitro studies demonstrate its capacity to inhibit proliferation and induce apoptosis in the pancreatic cancer cell line BxPC3, making it a valuable tool for research in human pancreatic cancer biology.
  3. PROTAC Ferritin Degrader

    DeFer-2 is a PROTAC degrader targeting ferritin, with a Kd of 17.1 μM. By inducing ferritin degradation, DeFer-2 leads to caspase 3-GSDME-mediated pyroptosis in cancer cells, driven by an accumulation of free iron and elevated reactive oxygen species (ROS). This compound demonstrates significant tumor growth inhibition and extends survival in mouse models bearing B16F10 subcutaneous tumors, making it a valuable tool for research in melanoma.
  4. AURKA PROTAC Degrader

    SK2188 is a potent and selective PROTAC degrader that targets Aurora Kinase A (AURKA) with a DC50 of 3.9 nM. It induces DNA damage and promotes apoptosis in cancer cells, effectively leading to the degradation of MYCN. SK2188 serves as a valuable tool for investigating tumor cell proliferation and exploring therapeutic strategies in MYCN-amplified neuroblastoma.
  5. PROTAC

    Luxdegalutamide (ARV-766) is an orally active proteolysis-targeting chimera (PROTAC) designed to selectively degrade the androgen receptor (AR), including clinically relevant resistance-associated mutants such as T878A, H875Y, and L702H. By inducing AR ubiquitination and proteasomal degradation, Luxdegalutamide effectively suppresses AR signaling and exhibits potent antitumor activity. It is a promising therapeutic agent and research tool for studying castration-resistant prostate cancer (CRPC) and mechanisms of AR-driven oncogenesis.
  6. SOS1 activator

    VUBI1 (SOS1 Activator 1) is a benzimidazole-derived small molecule that acts as a potent activator of the guanine nucleotide exchange factor SOS1, with a dissociation constant (Kᴅ) of 44 nM. It promotes RAS activation by enhancing RAS-GTP formation and modulates downstream ERK phosphorylation, thereby influencing RAS–MAPK signaling. In addition, VUBI1 serves as a functional ligand for the development of PROTAC-based degraders, such as PROTAC SOS1 Degrader-1, to induce targeted SOS1 degradation. VUBI1 is a valuable compound for studying RAS pathway regulation and its role in cancer biology.
  7. BTK/GSPT1 Degrader

    GBD-9 is a dual-action degrader that targets both BTK and GSPT1 by recruiting the E3 ligase cereblon (CRBN). It acts as a PROTAC to promote BTK degradation and functions as a molecular glue to induce GSPT1 degradation. GBD-9 exhibits significant antiproliferative activity in cancer cells, making it a promising candidate for cancer research.
  8. PROTAC FGFR2 Degrader

    LC-MB12 is an orally active PROTAC compound that targets FGFR2 degradation, with a DC₅₀ of 11.8 nM. It consists of the FGFR2 inhibitor BGJ398, a PROTAC linker, and a cereblon (CRBN) ligand. LC-MB12 effectively inhibits FGFR2 signaling in gastric cancer cells and exhibits antitumor activity.
  9. PROTAC degrader

    DB-0646 is a PROTAC-based multi-kinase degrader designed to target and degrade multiple kinase proteins. It is suitable for research involving kinase signaling pathways and related disease models.
  10. IAP PROTAC degrader

    CST626 (Compound 9) is a pan-IAP degrader PROTAC that targets and degrades inhibitor of apoptosis proteins XIAP, cIAP1, and cIAP2 in MM.1S cells, with DC₅₀ values of 0.7 nM, 2.4 nM, and 6.2 nM, respectively.
  11. Tz-Thalidomide is a tetrazine-tagged thalidomide derivative that functions as a ligand for E3 ligases. It exhibits binding affinity for BRD4, with IC₅₀ values of 46.25 μM for BRD4-1 and 62.55 μM for BRD4-2. As a click chemistry reagent, Tz-Thalidomide contains a tetrazine moiety capable of undergoing inverse electron demand Diels–Alder (iEDDA) reactions with trans-cyclooctene (TCO)-containing molecules, enabling bioorthogonal labeling and conjugation applications.
  12. CDK17/LIMK2 Degrader

    DD-03-156 is a potent and selective degrader of CDK17 and LIMK2. It exhibits high selectivity and potency, making it a strong candidate for the development of a chemical probe targeting CDK17 degradation.
  13. STAT6 PROTAC degrader

    AK-1690 is a potent and selective PROTAC degrader of STAT6. It reduces STAT6 protein levels in cells with a DC₅₀ of 1 nM and effectively depletes STAT6 in mouse tissues. AK-1690 is suitable for cancer research involving STAT6-driven pathways.
  14. GSPT1 degrader

    LYG-409 is an orally active degrader of GSPT1 that demonstrates potent antitumor activity in vivo, with tumor growth inhibition (TGI) rates of 94.34% in acute myeloid leukemia and 104.49% in prostate cancer models. In vitro, LYG-409 inhibits KG-1 cells through GSPT1 degradation, with an IC₅₀ of 9.50 nM and a DC₅₀ of 7.87 nM.
  15. PROTAC Wee1 degrader

    Pomalidomide-C3-adavosertib is a rapid and selective PROTAC degrader of Wee1, with an IC₅₀ of 3.58 nM. It exhibits anti-proliferative activity against cancer cells and induces apoptosis.
  16. androgen receptor PROTAC degrader

    ARD-2585 is an exceptionally potent, orally active PROTAC degrader of the androgen receptor (AR), designed to selectively and efficiently induce AR degradation for potential therapeutic applications.
  17. PROTAC ENL degrader

    SR-1114 is a first-in-class PROTAC degrader targeting ENL. It induces rapid, cereblon (CRBN)-dependent degradation of ENL with DC₅₀ values of 150 nM in MV4;11 cells, 311 nM in MOLM-13 cells, and 1.65 μM in OCI/AML-2 cells.
  18. Kinases PROTAC/Nek9 Inhibitor

    DB0614 is a PROTAC molecule utilizing a cereblon ligand, designed as a selective and potent degrader of NEK9 and other kinases. It induces the degradation of multiple kinases, including ABL1, ABL2, BLK, CDK11B, CDK4, CSK, EPHA3, FER, GAK, LIMK1, MAP3K20, MAP4K1–3, MAP4K5, MAPK14, MAPK7–9, MAPKAPK2/3, NLK, PDIK1L, PTK2B, RIPK1, RPS6KA1/3, SIK2/3, STK35, TNK2, and ULK1. DB0614 is suitable for research involving diseases or disorders driven by aberrant kinase activity.
  19. ENL PROTAC Degrader

    MS41 is a selective PROTAC degrader of eleven-nineteen leukemia (ENL), with DC₅₀ values of 3.50 nM (MV4;11), 2.84 nM (SEMK2), 3.03 nM (Jurkat), and 26.58 nM (KASUMI1). MS41 effectively inhibits the proliferation of ENL-dependent leukemia cells, induces G1 phase cell cycle arrest, and promotes apoptosis. It reduces chromatin occupancy of the ENL-associated transcription elongation complex, thereby suppressing oncogenic gene expression and leukemia progression.
  20. BRD4 Degrader

    TMX1 is a covalent molecular glue degrader targeting BRD4. It selectively recruits DCAF16 to the BRD4BD2 domain, inducing BRD4 degradation.
  21. CDK12/CDK13 PROTAC degrader

    YJ1206 is an orally active and selective PROTAC degrader targeting CDK12 and CDK13, with an IC50 of 12.55 nM in VCaP cells. It induces DNA damage, promotes apoptosis, and leads to tumor regression in orthotopic WA74 patient-derived xenograft (PDX) models of resistant prostate cancer. Additionally, YJ1206 enhances antitumor efficacy when used in combination with AKT pathway inhibitors, highlighting its potential for combination therapy in advanced prostate cancer.
  22. Molecular glues

    ERAS-0015 (Pan-RAS-IN-2) is a molecular glue that targets RAS by promoting the formation of ternary complexes with cyclophilin A (CYPA) and active RAS (ON) proteins. This interaction disrupts the binding of RAF to RAS, thereby inhibiting downstream signaling. Pan-rasin-2 exhibits significant antiproliferative activity in RAS-mutant cell lines and shows promise as an anti-tumor agent.
  23. two-site molecular glue

    LL-K12-18 is a two-site molecular glue that enhances the protein-protein interaction between CDK12 and DDB1, stabilizing the complex and promoting cyclin K degradation with an EC50 of 0.37 nM. It exhibits potent transcriptional repression and anti-proliferative activity in tumor cells, making it a valuable tool for cancer research.
  24. PROTAC AKT degrader

    INY-05-040 is a potent and selective PROTAC degrader targeting all three isoforms of AKT (AKT1, AKT2, and AKT3). It induces rapid proteasomal degradation of AKT, effectively inhibiting downstream signaling pathways such as PI3K/AKT/mTOR, which are critical for cancer cell survival and proliferation. INY-05-040 demonstrates broad antiproliferative activity across 288 cancer cell lines, highlighting its potential as a powerful therapeutic agent for targeting AKT-driven malignancies.
  25. PROTAC AR/AR-V7 degrader

    PROTAC AR/AR-V7 Degrader-1 (27c) is a PROTAC-based dual degrader targeting both full-length androgen receptor (AR) and its splice variant AR-V7, which is implicated in resistance to androgen deprivation therapies. It exhibits DC₅₀ values of 2.67 μM for AR and 2.64 μM for AR-V7, effectively promoting their proteasomal degradation. By eliminating both isoforms, compound 27c induces apoptosis in AR-driven cancer cells, making it a promising therapeutic candidate for castration-resistant prostate cancer (CRPC) and other AR/AR-V7–dependent malignancies.
  26. EGFR degrader

    MS-39 is a highly potent and selective PROTAC degrader specifically engineered to target mutant forms of the epidermal growth factor receptor (EGFR). It is constructed by conjugating the EGFR inhibitor gefitinib to a von Hippel–Lindau (VHL) E3 ligase ligand via a tailored linker. MS-39 exhibits strong binding affinity and efficient degradation of mutant EGFR proteins, offering a promising strategy for overcoming resistance in EGFR-driven cancers. Its design enables targeted proteasomal degradation rather than mere kinase inhibition, providing a novel approach to cancer therapy.
  27. multi-kinase PROTAC degrader

    SB1-G-187 is a multifunctional PROTAC designed as a multi-kinase degrader, capable of inducing the selective degradation of multiple kinase targets through the ubiquitin–proteasome system. In addition to its targeted degradation activity, SB1-G-187 features an alkyne functional group, enabling its use as a click chemistry reagent. It can undergo copper-catalyzed azide-alkyne cycloaddition (CuAAC) with azide-containing molecules, allowing for versatile applications in chemical biology, such as probe development, conjugation, and target identification.
  28. PROTAC JAK2 Degrader

    SJ1008030 (compound 8) TFA is a selective JAK2-targeting PROTAC that promotes proteasomal degradation of Janus kinase 2 (JAK2). It exhibits potent antiproliferative activity in MHH–CALL-4 leukemia cells, with an IC₅₀ of 5.4 nM. By effectively eliminating JAK2 protein rather than merely inhibiting its activity, SJ1008030 TFA represents a promising therapeutic strategy for JAK2-driven hematologic malignancies, particularly in leukemia research.
  29. PROTAC degrader

    SJF-8240 (PROTAC 7) is a proteolysis-targeting chimera (PROTAC) designed to selectively degrade the receptor tyrosine kinase c-Met. It induces polyubiquitination and subsequent proteasomal degradation of c-Met, leading to effective inhibition of downstream signaling. SJF-8240 exhibits potent antiproliferative activity in GTL16 gastric cancer cells, with an IC₅₀ of 66.7 nM, making it a promising tool for targeted cancer therapy and c-Met–driven tumor research.
  30. IRAK4 degrader

    KTX-582 is a potent heterobifunctional PROTAC degrader that targets interleukin-1 receptor–associated kinase 4 (IRAK4) and the transcription factor Ikaros, with DC₅₀ values of 4 nM and 5 nM, respectively. It induces apoptosis in MYD88^L265P-mutant diffuse large B-cell lymphoma (DLBCL) cells, a subtype characterized by constitutive IRAK4 signaling. In preclinical lymphoma models, KTX-582 effectively drives in vivo tumor regression, highlighting its therapeutic potential for MYD88-mutant hematologic malignancies.
  31. STING PROTAC degrader

    Anti-inflammatory agent 70 (N-Me-SP23) is a PROTAC-based degrader targeting the STING (stimulator of interferon genes) protein, a key regulator of innate immune and inflammatory responses. By promoting STING degradation, N-Me-SP23 effectively inhibits the STING signaling pathway, leading to reduced downstream inflammatory cytokine production. This compound exhibits notable anti-inflammatory activity and holds potential for therapeutic research in STING-associated autoimmune and inflammatory disorders.
  32. PROTAC EGFR degrader

    MS9449 is a potent PROTAC-based degrader of the epidermal growth factor receptor (EGFR), exhibiting strong binding affinities with K\_d values of 17 nM for wild-type EGFR and 10 nM for the L858R mutant. It effectively induces degradation of mutant EGFR proteins via both the ubiquitin–proteasome system (UPS) and the autophagy–lysosome pathway, enabling dual-pathway clearance. MS9449 shows strong antiproliferative activity in non-small cell lung cancer (NSCLC) cells, making it a valuable compound for anticancer research, particularly in EGFR-driven tumors.
  33. PROTAC BRD4 Degrader

    PROTAC BRD4 Degrader-12 (compound 9c) is a bifunctional molecule designed to target and degrade the bromodomain-containing protein BRD4 by recruiting the von Hippel–Lindau (VHL) E3 ubiquitin ligase. It functions as a highly potent degrader, with a DC₅₀ of 0.39 nM and 0.24 nM when conjugated to STEAP1 and CLL1 antibodies, respectively, enabling targeted delivery and degradation of BRD4 in PC3 prostate cancer cells.
  34. PROTAC YAP degrader

    PROTAC YAP degrader-1 (compound YZ-6) is a bifunctional molecule designed to selectively degrade Yes-associated protein (YAP), a key effector of the Hippo signaling pathway involved in cell proliferation, survival, and tumorigenesis. In addition to promoting proteasomal degradation of YAP, it also inhibits YAP's nuclear localization, thereby impairing its transcriptional co-activator functions.YZ-6 is composed of two main components:Target protein ligand: NSC682769 and E3 ubiquitin ligase recruiter with linker: (R,S,R)-AHPC-PEG2-C2-Boc which recruits the VHL E3 ligase complex. The linker used in the PROTAC design is Acid-PEG2-C2-Boc, facilitating optimal spatial orientation for ternary complex formation. The demethylated analog Demethyl-NSC682769 serves as a target ligand activity control. PROTAC YAP degrader-1 represents a novel tool for functional YAP inhibition and offers potential therapeutic applications in YAP-driven cancers and fibrotic diseases.
  35. CK1α degrader

    TMX-4116 is a selective degrader of casein kinase 1α (CK1α), demonstrating preferential degradation activity with DC₅₀ values below 200 nM in MOLT4, Jurkat, and MM.1S cell lines. By targeting CK1α for proteasomal degradation, TMX-4116 offers a promising tool for investigating CK1α function and holds potential for therapeutic research in multiple myeloma and related hematologic malignancies.
  36. CK1α molecular glue degrader

    SJ3149 is a selective and potent molecular glue degrader that targets casein kinase 1α (CK1α) for proteasomal degradation. By promoting CK1α elimination, SJ3149 exhibits broad antiproliferative activity across various cancer models. It serves as a valuable tool for exploring CK1α-dependent signaling pathways and holds promise for therapeutic development in oncology research.
  37. PDE6D/IKZF1/IKZF3/CK1α Degrader

    FPFT-2216 is a “molecular glue” degrader that facilitates the proteasomal degradation of multiple target proteins, including phosphodiesterase 6D (PDE6D), zinc finger transcription factors Ikaros (IKZF1) and Aiolos (IKZF3), as well as casein kinase 1α (CK1α). By promoting selective ubiquitination through E3 ligase recruitment, FPFT-2216 modulates key regulatory pathways and holds promise for research in oncology and inflammatory diseases.
  38. HDAC3/8 PROTAC degrader

    YX968 is a potent and selective PROTAC degrader targeting histone deacetylases HDAC3 and HDAC8, with DC₅₀ values of 1.7 nM and 6.8 nM, respectively. By inducing degradation of these epigenetic regulators, YX968 promotes apoptosis and exhibits significant antitumor activity, representing a promising therapeutic strategy for cancers driven by aberrant HDAC3/8 activity.
  39. PROTAC AR degrader

    ARD-1676 is an orally bioavailable PROTAC degrader of the androgen receptor (AR), composed of an AR-binding ligand and a cereblon-recruiting moiety. It effectively induces AR degradation both in vitro and in vivo, and demonstrates significant antitumor activity by inhibiting VCaP prostate cancer xenograft growth in mouse models. ARD-1676 represents a promising therapeutic strategy for targeting AR-driven malignancies.
  40. PROTAC GSPT1 degrader

    MI-389 is a PROTAC degrader targeting the translation termination factor GSPT1. Its activity relies on recruitment of the CRL4^CRBN E3 ubiquitin ligase complex to induce selective degradation of GSPT1. MI-389 effectively disrupts a critical dependency shared across multiple acute myeloid leukemia (AML) and acute lymphoblastic leukemia (ALL) cell lines, making it a promising therapeutic candidate for hematologic malignancies characterized by GSPT1 dependence.
  41. PROTAC CDK12-Cyclin K degrader

    PP-C8 is a potent and selective PROTAC degrader targeting the CDK12–Cyclin K complex. It induces efficient degradation of CDK12 and Cyclin K with DC₅₀ values of 416 nM and 412 nM, respectively. In preclinical models, PP-C8 exhibits strong synergistic antiproliferative effects when combined with PARP inhibitors, particularly in triple-negative breast cancer (TNBC), highlighting its potential as a therapeutic strategy for enhancing DNA damage response–targeted treatments.
  42. PROTAC BRD4 degrader

    dBET23 is a highly potent and selective PROTAC degrader targeting the bromodomain-containing protein BRD4. It exhibits a DC₅₀ of approximately 50 nM at 5 hours for the BRD4 bromodomain 1 (BRD4^BD1) protein, effectively promoting its ubiquitination and proteasomal degradation. dBET23 serves as a valuable chemical tool for studying BRD4-dependent transcriptional regulation and holds potential for therapeutic applications in BRD4-driven cancers.
  43. PROTAC AR degrader

    ARD-61 is a highly potent and selective PROTAC degrader of the androgen receptor (AR), also capable of degrading progesterone receptors (PR) in AR-positive cancer cell lines. It induces apoptosis and demonstrates significant antitumor efficacy in vivo, effectively inhibiting tumor growth in the MDA-MB-453 xenograft mouse model. Additionally, ARD-61 is equipped with an alkyne functional group, enabling its use as a click chemistry reagent through copper-catalyzed azide-alkyne cycloaddition (CuAAC) with azide-containing molecules, facilitating conjugation and functionalization for chemical biology applications.
  44. EGFR PROTAC degrader

    SJF-1521 is a selective PROTAC degrader targeting the epidermal growth factor receptor (EGFR). It incorporates lapatinib, a known EGFR inhibitor, as the targeting ligand and promotes proteasomal degradation of EGFR. SJF-1521 effectively induces EGFR degradation in OVCAR8 ovarian cancer cells, offering a promising strategy for disrupting EGFR signaling in EGFR-driven malignancies.
  45. PROTAC ERα Degrader

    PROTAC ERα Degrader-1 is a bifunctional molecule composed of an estrogen receptor-alpha (ERα) ligand, a linker, and an E3 ubiquitin ligase-recruiting moiety. Derived from compound P1 in patent WO2017201449A1, it functions as a targeted protein degrader that promotes ubiquitination and subsequent proteasomal degradation of ERα. PROTAC ERα Degrader-1 represents a novel approach for modulating estrogen receptor signaling in hormone-dependent cancers.
  46. PROTAC BET degrader

    SJ995973 is a highly potent PROTAC (proteolysis-targeting chimera) designed to selectively degrade bromodomain and extra-terminal domain (BET) family proteins, including BRD2, BRD3, and BRD4. By inducing targeted proteasomal degradation, SJ995973 enables efficient disruption of BET protein function, offering a powerful approach for investigating BET-related transcriptional regulation and for the development of novel anticancer therapies.
  47. G9a/GLP PROTAC degrader

    MS8709 (compound 10) is a first-in-class PROTAC degrader targeting the histone methyltransferases G9a and GLP, with potential anticancer activity. Engineered from the G9a/GLP inhibitor UNC0642, MS8709 recruits the von Hippel–Lindau (VHL) E3 ubiquitin ligase to promote the selective ubiquitination and proteasomal degradation of G9a/GLP proteins. This targeted degradation approach offers a novel therapeutic strategy for disrupting epigenetic dysregulation in cancer.
  48. PIK3CG PROTAC degrader

    ARM165 is a heterobifunctional PROTAC molecule that targets and degrades PIK3CG (PI3Kγ), effectively inhibiting the PI3Kγ-Akt signaling pathway. It exhibits potent antileukemic activity, suppressing the proliferation of acute myeloid leukemia (AML) cells with an IC₅₀ of less than 1 μM. ARM165 is a promising tool for investigating PI3Kγ-driven signaling and developing targeted therapies for leukemia.
  49. MYC-MAX degrader

    MDEG-541 is a potent PROTAC degrader targeting the MYC-MAX complex, derived from the MYC-MAX dimerization inhibitor 10058-F4 (28RH) and thalidomide as the cereblon-recruiting ligand. It exhibits strong antiproliferative activity and reduces the expression of key oncogenic and regulatory proteins, including GSPT1, MYC, GSPT2, and PLK1. MDEG-541 is a valuable tool for studying MYC-driven cancers and targeted protein degradation strategies.
  50. PROTAC SOS1 degrader

    PROTAC SOS1 Degrader-1 (TFA) is a potent PROTAC molecule targeting SOS1, with a DC₅₀ of 98.4 nM. It exhibits antiproliferative activity in cancer cells harboring various KRAS mutations and demonstrates antitumor efficacy with low toxicity, making it a promising candidate for targeted cancer therapy research.

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