746 Results for "

Mutation

" in MedChemExpress (MCE) Product Catalog:
Products (746)

746 Results for "Mutation" in MCE Product Catalog:

Cat. No.: HY-122058
CAS No.: 1097732-62-1
Target:  

HIV

Research Areas:  

Infection

KRH-3955 is a CXCR4 antagonist with good bioavailability and potent anti-HIV-1 activity. KRH-3955 can effectively inhibit the replication of X4 HIV-1, including clinical isolates from different donors. KRH-3955 also shows activity against recombinant X4 HIV-1 containing reverse transcriptase, protease and tyrosinase resistance mutations. KRH-3955 can inhibit the binding of SDF-1alpha to CXCR4 and calcium ion signaling through this receptor. KRH-3955 inhibits the binding of an antibody against CXCR4 to CXCR4, showing a potent antagonistic effect on CXCR4. KRH-3955 shows an oral bioavailability of 25.6% in rats and can inhibit the replication of X4 HIV-1 in vivo .
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Cat. No.: HY-153321A
CAS No.: 2649400-33-7
Synonyms: (R,R)-NX-5948; (R,R)-BTK-IN-24
Target:  

Drug Isomer PROTACs Btk

Research Areas:  

Inflammation/Immunology Cancer

(R,R)-Bexobrutideg is the (R,R)-enantiomer of Bexobrutideg (HY-153321). Bexobrutideg (NX-5948) is an orally active PROTAC that induces specific BTK protein degradation via a cereblon E3 ligase (CRBN) complex without degrading other cereblon neo substrates. Bexobrutideg mediates potent anti-inflammatory activity through BTK degradation, thereby inhibiting B cell activation. Bexobrutideg exhibits potent tumor growth inhibition in TMD8 xenograft models containing wild-type BTK or BTKi resistance mutations. Bexobrutideg is effective in a mouse model of collagen-induced arthritis (CIA). Bexobrutideg can cross the blood-brain barrier. NX-5948 consists of a target protein ligand, a linker, and a VHL E3 ubiquitin ligase (Red: BTK ligand (HY-170324); Blue: CRBN ligand (HY-171893); Black: linker) .
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Cat. No.: HY-163679
PROTAC ERα Degrader-9 is a dual-target degrader of estrogen receptor α (ERα) and aromatase (ARO/CYP19A), with a Ki value of 0.25 μM against human ERα and an IC50 value of 4.6 μM against human ARO. PROTAC ERα Degrader-9 degrades ERα and ARO via the ubiquitin-proteasome system, and inhibits the transcriptional activity of ERα and the enzymatic activity of ARO. PROTAC ERα Degrader-9 selectively inhibits cancer cell proliferation, induces cell cycle arrest, and triggers apoptosis. PROTAC ERα Degrader-9 exhibits antiproliferative activity and ERα-degrading activity against cancer cells carrying ERα mutations. PROTAC ERα Degrader-9 can be used in cancer-related research such as breast cancer .
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Cat. No.: HY-170928
CAS No.: 2756978-82-0
DA-0157 is the orally active inhibitor for EGFR and ALK that overcomes drug-resistant mutations of EGFR C797S and ALK in NSCLC) cells. DA-0157 inhibits the proliferation of Ba/F3-EGFR Del19/T790M/C797S (IC50 = 6.9 nM), Ba/F3-EGFR WT (IC50 = 0.83 μM), Ba/F3-EML4-ALK-L1196M (IC50 = 5.5 nM), and Ba/F3-EML4-ALK (IC50 = 7.4 nM). DA-0157 inhibits CYP2D6 with IC50 of 5.26 μM. DA-0157 exhibits antitumor efficacy in mouse models .
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Cat. No.: HY-172877
Research Areas:  

Cancer

EGFR/BRAFV600E-IN-5 (Compound 7I) is a dual BRAFV600E/EGFR inhibitor with IC50 of 0.048 μM and 0.037 μM, respectively. EGFR/BRAFV600E-IN-5 has significant anti-melanoma activity with IC50 of 3.16 μM and 2.50 μM against MALME-3M and LOX-IMVI cell lines, respectively. EGFR/BRAFV600E-IN-5 exerts anti-tumor effects by inducing G1 arrest, inhibiting DNA synthesis, and activating the mitochondrial apoptosis pathway. EGFR/BRAFV600E-IN-5 can be used for melanoma research, especially for combined inhibition of BRAFV600E mutation and EGFR signaling pathway .
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Cat. No.: HY-178786
CAS No.: 2491726-04-4
Research Areas:  

Cancer

RET-IN-31 (Compound 13) is an orally active, selective RET inhibitor (IC50s: 1.4 nM, 1.9 nM, 3.8 nM for RET WT, RET V804L, RET V804M, respectively). RET-IN-31 inhibits hERG and Cytochrome P450 (IC50s: 13.6 μM, 7.9 μM, 12.8 μM, 16.9 μM, 8.9 μM, 13.0 μM for CYP1A2, CYP2C9, CYP2C19, CYP2D6, CYP3A4-M, CYP3A4-T, respectively). RET-IN-31 has anti-cancer effects against activated RET mutations and gene fusion-driven cancers .
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Cat. No.: HY-178938
CAS No.: 1182011-65-9
AR Degrader-3 is an orally active molecular glue that targets AR/ARV7 and induces the degradation of AR and ARV7 through the ubiquitin-proteasome pathway (UPP). AR Degrader-3 directly interacts with the ligand-binding domain (LBD) and the N-terminal domain (NTD) of AR. AR Degrader-3 effectively suppresses the transcriptional activity of wild-type AR (AR-WT), AR mutants, and ARV7. AR Degrader-3 downregulates the mRNA and protein levels of downstream AR target genes, thereby overcoming antiandrogen resistance mediated by ARV7 and AR point mutations. AR Degrader-3 induces apoptosis in Enzalutamide (HY-70002) (ENZa)-resistant cells and increases cleaved caspase-3 protein levels. AR Degrader-3 can be used for the study of castration-resistant prostate cancer (CRPC) .
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Cat. No.: HY-181420A
CAS No.: 3029443-36-2
Research Areas:  

Cancer

BBO-11818 is an orally active, highly selective (relative to NRAS and HRAS), non-covalent pan-KRAS inhibitor (IC50=28-120 nM). BBO-11818 specifically binds to the Switch-II/Helix 3 pocket, disrupts the KRAS:RAF1 interaction by inducing conformational changes, and blocks the MAPK signaling pathway. BBO-11818 exhibits significant anti-tumor activity, which not only inhibits cell proliferation and induces apoptosis, but also drives tumor regression in xenograft models. BBO-11818 produces synergistic effects when combined with Cetuximab (HY-P9905), anti-PD-1 antibody or PI3Kα inhibitor. BBO-11818 is used in the research of KRAS mutation-related malignancies such as pancreatic cancer, non-small cell lung cancer and colorectal cancer .
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Cat. No.: HY-189129
Target:  

Ras

Research Areas:  

Cancer

RAS GTPase-IN-3 is a RAS GTPase inhibitor that targets multiple KRAS-Q61 mutant variants. RAS GTPase-IN-3 binds to the switch II pocket of GTP-bound KRAS-Q61R, positions its side-chain imidazole group near the GTP γ-phosphate, and accelerates GTP hydrolysis of KRAS-Q61. RAS GTPase-IN-3 inhibits Sos-catalyzed nucleotide exchange on GTP-bound KRAS. RAS GTPase-IN-3 only activates GTP hydrolysis of HRAS-Q61R/Q95H and NRAS-Q61R/L95H mutant proteins. RAS GTPase-IN-3 can be applied in research related to cancers driven by KRAS-Q61 mutations .
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Cat. No.: HY-189146
Research Areas:  

Cancer

HDTAC EGFR Degrader-1 is an EGFR HDTAC (hypoxia-activated targeted protein degradation chimera) degrader with a DC50 of 1.76 μM. HDTAC EGFR Degrader-1 consists of a linker, a tumor hypoxia-activated group (HAG, a group that generates ROS under tumor hypoxic conditions), and an EGFR ligand. HDTAC EGFR Degrader-1 drives EGFR degradation through the proteasomal pathway. HDTAC EGFR Degrader-1 downregulates Caspase-3 under hypoxic conditions. HDTAC EGFR Degrader-1 can be used in research on non-small cell lung cancer harboring EGFR mutations (EGFR ligand: FAAH-IN-2 (HY-79511); HAG: Thalidomide-O-COOH (HY-103597); linker: NH2-PEG3 (HY-W007545)) .
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Cat. No.: HY-P990234
Anti-Mouse ICOSL/CD275 (LALA-PG) Antibody (HK5.3) is a mouse-derived IgG2a κ type antibody inhibitor, targeting to mouse ICOSL/CD275. Anti-Mouse ICOSL/CD275 (LALA-PG) Antibody (HK5.3) is a chimeric antibody of the original HK5.3 antibody (HY-P990123). Anti-Mouse ICOSL/CD275 (LALA-PG) Antibody (HK5.3) contains the LALA-PG mutation region. Anti-Mouse ICOSL/CD275 (LALA-PG) Antibody (HK5.3) can neutralize ICOSL. Anti-Mouse ICOSL/CD275 (LALA-PG) Antibody (HK5.3) can be used for researches of inflammation and infection.
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Cat. No.: HY-P990235
Anti-Mouse ICOSL/CD275 (D265A) Antibody (HK5.3) is a mouse-derived IgG1 κ type antibody inhibitor, targeting to mouse ICOSL/CD275. Anti-Mouse ICOSL/CD275 (D265A) Antibody (HK5.3) is a chimeric antibody of the original HK5.3 antibody (HY-P990123). Anti-Mouse ICOSL/CD275 (D265A) Antibody (HK5.3) contains the D265A mutation region. Anti-Mouse ICOSL/CD275 (D265A) Antibody (HK5.3) can neutralize ICOSL. Anti-Mouse ICOSL/CD275 (D265A) Antibody (HK5.3) can be used for researches of inflammation and infection.
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Cat. No.: HY-P99119A
Anti-Mouse 4-1BB/CD137 (LALA-PG) Antibody (LOB12.3) is a mouse-derived IgG2a κ type antibody agonist, targeting to mouse 4-1BB/CD137. Anti-Mouse 4-1BB/CD137 (LALA-PG) Antibody (LOB12.3) is a chimeric antibody of the original LOB12.3 antibody (HY-P990809). Anti-Mouse 4-1BB/CD137 (LALA-PG) Antibody (LOB12.3) contains the LALA-PG mutation region. Anti-Mouse 4-1BB/CD137 (LALA-PG) Antibody (LOB12.3) can be used for the researches of cancer, infection, immunology and neurological disease.
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Cat. No.: HY-P991839

Target:  

CD19

Research Areas:  

Cancer

Anti-CD19 Antibody (FMC63) is an antibody that binds to CD19, with a human Kd value ranging from 0.42 nM to 149 nM. Anti-CD19 Antibody (FMC63) mediates tumor cell killing, cytokine secretion, stable CAR expression, T cell activation and memory differentiation. Anti-CD19 Antibody (FMC63) fails to eliminate lymphoma cells carrying CD19 point mutations or co-expressing FMC63-CAR19, induces higher levels of activation-induced cell death, and reduces cell persistence. Anti-CD19 Antibody (FMC63) can be used in research related to B-cell non-Hodgkin's lymphoma, B-cell acute lymphoblastic leukemia, relapsed or refractory diffuse large B-cell lymphoma, etc .
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Cat. No.: HY-L231
25 compounds

The TCA cycle (tricarboxylic acid cycle)—is also known as the Krebs cycle or the citric acid cycle (CAC). The TCA cycle is a series of chemical reactions that release stored energy through the oxidation of acetyl-CoA in carbohydrates, fats, and proteins.

For decades, the TCA cycle has been considered as the central pathway for cell oxidative phosphorylation to produce energy and biosynthesis. Research shows that TCA cycle is associated with many diseases, especially cancer. In colon carcinoma, liver cancer and other cancers, there are mutations that lead to the imbalance of TCA cycle metabolites, indicating that TCA cycle may be related to the occurrence of cancer. Understanding the role and molecular mechanism of TCA cycle in inhibiting or promoting cancer progression will promote the development of new metabolite-based cancer treatment methods in the future.

MCE supplies a unique collection of 25 key intermediates of the TCA cycle, which can be utilized for TCA-related research and metabolomics identification studies.

Cat. No.: HY-L201
3,628 compounds

Cell proliferation, the increase in cell numbers resulting from cell division, is a complex and tightly regulated process. Cell proliferation is regulated by coordinated entry into the cell cycle, and changes in proliferation are closely linked to disease development. Evolutionary dynamics links tumor growth and progression with cell proliferation, cell death, and mutation rates. In addition, cell proliferation is central to degenerative diseases, the development of which is often accompanied by accelerated multiplication of cancer cells. Therefore, assays of cell proliferation levels are frequently used for laboratory research purposes and increasingly for clinical assessment of tumor aggressiveness and potentially to guide care. It has been shown that multiple key targets are collectively involved in regulating the process of cell proliferation, such as CDK, E2F, pRB, β-Catenin, and others.

MCE collects 3,628 compounds that target and regulate key targets of cell proliferation, which can be used in studies of cell proliferation mechanisms and drug discovery.

Cat. No.: HY-L004
3,522 compounds

DNA is prone to numerous forms of damage that can injure cells and impair fitness. Cells have developed an array of mechanisms to repair these injuries. Proliferating cells are especially vulnerable to DNA damage due to the added demands of cellular growth and division. Cell cycle checkpoints represent integral components of DNA repair that coordinate cooperation between the machinery of the cell cycle and several biochemical pathways that respond to damage and restore DNA structure. By delaying progression through the cell cycle, checkpoints provide more time for repair before the critical phases of DNA replication, when the genome is replicated, and of mitosis, when the genome is segregated. Loss or attenuation of checkpoint function may increase spontaneous and induced gene mutations and chromosomal aberrations by reducing the efficiency of DNA repair.

MCE owns a unique collection of 3,522 cell cycle/DNA damage-related compounds which can be used in the research of the same.

Cat. No.: HY-L148
72 compounds

The TCA cycle (tricarboxylic acid cycle)—is also known as the Krebs cycle or the citric acid cycle (CAC). The TCA cycle is a series of chemical reactions that release stored energy through the oxidation of acetyl-CoA in carbohydrates, fats, and proteins.

For decades, the TCA cycle has been considered as the central pathway for cell oxidative phosphorylation to produce energy and biosynthesis. Research shows that TCA cycle is associated with many diseases, especially cancer. In colon carcinoma, liver cancer and other cancers, there are mutations that lead to the imbalance of TCA cycle metabolites, indicating that TCA cycle may be related to the occurrence of cancer. Understanding the role and molecular mechanism of TCA cycle in inhibiting or promoting cancer progression will promote the development of new metabolite-based cancer treatment methods in the future.

MCE supplies a unique collection of 72 compounds related to the TCA cycle. MCE TCA Cycle Compound Library is a useful tool for the TCA cycle related research and anti-cancer drug development.

Cat. No.: HY-179562
CAS No.: 2649400-05-3
Target:  

Btk Molecular Glues

Research Areas:  

Cancer

BTK degrader-2 (Example 2) is a dual-functional BTK molecular glue degrader, which causes the degradation of BTK through the ubiquitin-proteasome pathway. BTK degrader-2 can be used for the study of B-cell-related diseases .
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Cat. No.: HY-180414
CAS No.: 143383-65-7
Target:  

Bacterial Topoisomerase

Research Areas:  

Infection

Premafloxacin is a potent antimicrobial agent that exhibits activity against Staphylococcus aureus, Corynebacterium bovis, and Corynebacterium amylocolatum. Premafloxacin demonstrated potent antimicrobial activity against S. aureus by targeting topoisomerase IV, and is a poor substrate for NorA efflux pump. Premafloxacin can be used for antimicrobial research .
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