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Results for "

lysine targeting

" in MedChemExpress (MCE) Product Catalog:

22

Inhibitors & Agonists

5

Screening Libraries

2

Biochemical Assay Reagents

2

Peptides

1

Inhibitory Antibodies

1

Natural
Products

Cat. No. Product Name Target Research Areas Chemical Structure
  • HY-N0469R

    Reference Standards Endogenous Metabolite Virus Protease HSV Infection Metabolic Disease Inflammation/Immunology
    L-Lysine (Standard) is the analytical standard of L-Lysine. This product is intended for research and analytical applications. L-lysine is an essential amino acid for humans with orally activity. L-lysine can inhibit the occurrence of HSV infections and is used in herpes research. L-lysine increases calcium absorption, reduces diabetes-related diseases, improves gut health, and alleviates pancreatic inflammation. L-lysine can be used in research on metabolism, infection, and inflammation . IC50 & Target:L-lysine (150 mg/kg) promotes, but not initiates, bladder cancer. The administration of L-lysine to rats submitted to colovesical cystoplasty accelerates the development of transitional metaplasia of the intestinal epithelium .
    L-lysine (10 mg/kg) treatment attenuates pancreatic tissue injury induced by L-arginine by inhibiting the release of the inflammatory cytokine IL-6 and enhance antioxidant activity . In Vivo:L-lysine (10?mg/kg, p.o., pre-treated or post-treated, administration duration 15 days) treatment attenuates pancreatic tissue injury induced by L-arginine by inhibiting the release of the inflammatory cytokine IL-6 and enhance antioxidant activity in acute pancreatitis mice model . L-lysine (5 or 10?mg/kg, p.o., 45 days) ameliorates sepsis-induced acute lung injury in a lipopolysaccharide (HY-D1056)-induced mouse model .
    L-Lysine (Standard)
  • HY-158228

    PLMA

    Biochemical Assay Reagents Others
    Poly-L-lysine Methacryloyl (PLMA) is methacrylated polylysine. When Poly-L-lysine Methacryloyl is cross-linked on polyetheretherketone (PEEK) through UV-induced cross-linking, it can improve the hydrophilicity of PEEK and retain its own degradation bioinertness . Poly-L-lysine Methacryloyl needs to self-assemble into fibrous hydrogel under the action of photoinitiator LAP (HY-44076), and target bioactive adhesion sites, play an inherent supporting role for tissue cells and biodegradable activity.
    Application: cell culture, biological 3D printing, tissue engineering, etc.
    Poly-L-lysine Methacryloyl
  • HY-W011118

    Radionuclide-Drug Conjugates (RDCs) Cancer
    DTPA anhydride is a bifunctional chelator whose anhydride can react with amino groups in proteins (such as lysine residues) to form stable amide bonds. DTPA anhydride can also bind to radionuclides to synthesize radionuclide-labeled drug conjugates (RDCs). RDCs have the ability to specifically target biomolecules and can be used in medical imaging or therapy.
    DTPA anhydride
  • HY-179237

    MAPKAPK2 (MK2) Others
    MK2-IN-8 (Compound 42) is a covalent MK2 kinase inhibitor. MK2-IN-8 forms a unique covalent bond with the catalytic lysine, thereby demonstrating that the fluorosulfonate can effectively target the catalytic lysine in kinases.
    MK2-IN-8
  • HY-B0200D

    Cefalexin (lysine); Cephacillin (lysine)

    Penicillin-binding protein (PBP) Bacterial Antibiotic Infection Cancer
    Cephalexin (Cefalexin) lysine is a potent, orally active new semisynthetic cephalosporin antibiotic with a broad antibacterial spectrum. Cephalexin lysine has antibacterial activity against a wide variety of gram-positive and gram-negative bacteria. Cephalexin lysine targets penicillin-binding proteins (PBPs) to inhibit bacterial cell wall assembly. Cephalexin lysine is used for the research of pneumonia, strep throat, and bacterial endocarditis, et al .
    Cephalexin (lysine)
  • HY-176228

    p38 MAPK Others
    WEIZ-WX-04-008 (Compound 1) is a covalent Lysine-targeting MKK7 inhibitor with IC50 of 738 nM .
    WEIZ-WX-04-008
  • HY-112080A

    Histone Methyltransferase Others
    (R)-BAY-6035 is a novel inhibitor that selectively targets the methylation of MAP3K2 by SMYD3, demonstrating nanomolar potency and specificity against kinases and other protein lysine methyltransferases.
    (R)-BAY-6035
  • HY-173136

    Ligands for Target Protein for PROTAC Histone Demethylase Others
    KDM4 ligand-1 is a ligand for target protein (histone lysine demethylase KDM4) for PROTACs. KDM4 ligand-1 can be used in the synthesis of PROTACs (HY-173135) .
    KDM4 ligand-1
  • HY-170668

    Anaplastic lymphoma kinase (ALK) Fat Mass and Obesity-associated Protein (FTO) Cancer
    DDO-02267 is a selective and lysine-targeting covalent inhibitor of ALKBH5, with an IC50 value of 0.49 μM. DDO-02267 increases N 6-methyladenosine (m 6A) levels and targets the ALKBH5-AXL signaling axis. DDO-02267 can serve as a probe for investigating the biological function of mRNA demethylase .
    DDO-02267
  • HY-162837

    Aurora Kinase Cancer
    AURKA against 1 is an inhibitor of AURKA (IC50 less than 0.5 nM), targeting endogenous lysine (K162) acetylation, and has anti-proliferation activity against tumor cells. AURKA against 1 induces K162 acetylation, and the kinase activity of AURKA is reversibly restored in HCT116 cells transfected with SIRT3 .
    AURKA against 1
  • HY-123564

    Bcl-2 Family Others
    Mcl1-IN-7 (compound 11) is a reversible covalent inhibitor of Mcl-1 with the activity of inhibiting Mcl-1. By covalently targeting the non-catalytic lysine side chain of Mcl-1, it has higher potency than non-covalent counterparts and can be used to develop Mcl-1 inhibitory compounds and study related biological phenomena.
    Mcl1-IN-7
  • HY-172921

    FGFR Cancer
    FGFR-IN-18 (Compound KF7) is a lysine-targeting FGFR covalent inhibitor, with IC50s of: 1.1 nM for FGFR2, 1.3 nM for FGFR1, 31.5 nM for FGFR4. FGFR-IN-18 also has affinity for FGFR3 (inhibition rate of 52% at 10 nM). FGFR-IN-18 covalently modifies Lys485 (an reactive site of FGFRs) .
    FGFR-IN-18
  • HY-157486

    Epigenetic Reader Domain Cancer
    KMI169 is a potent and selective inhibitor targeting lysine methyl-transferase (KMT9) (IC50 = 0.05 μM, Kd = 0.025 μM). KMI169 functions as a bi-substrate inhibitor targeting the cofactor S-5’-adenosyl-L-methionine (SAM) and substrate binding pockets of KMT9. KMI169 can downregulate target genes involved in cell cycle regulation and impair proliferation of tumor cells by inhibiting KMT9. KMI169 is a valuable tool to probe cellular KMT9 functions and can be research for combating diseases including prostate, lung, colon, and invasive bladder cancer .
    KMI169
  • HY-116220

    Others Others
    Mcl1-IN-14 (compound 5) is a reversible covalent inhibitor of Mcl-1 with the activity of inhibiting Mcl-1. Mcl1-IN-14 covalently targets the non-catalytic lysine side chain of Mcl-1 and has higher potency than non-covalent counterparts, which can be used to develop Mcl-1 inhibitory compounds and study related biological phenomena.
    Mcl1-IN-14
  • HY-48999A

    Others Cancer
    FSK hydrochloride is fluorosulfonyloxybenzoyl-l-lysine, with a long and flexible aryl fluorosulfate-containing side chain that can reach protein sites that are difficult to reach by covalent linkage. FSK hydrochloride is a modified nanomolecule that targets the epidermal growth factor receptor (EGFR), creating a covalent binding that results in irreversible binding. FSK hydrochloride captures unknown enzyme-substrate interactions in living cells through genetically encoded chemical cross-linking, targeting residues beyond Cys, and cross-linking at the binding periphery. FSK hydrochloride enables the construction of bioreactive SuFEx systems for creating covalent bonds in different proteins in vitro and in vivo .
    FSK hydrochloride
  • HY-173135

    PROTACs Histone Demethylase Apoptosis Cancer
    PROTAC KDM4 degrader-1 (Compound 11) is a KDM4-targeted proteolysis targeting chimeras (PROTAC) degrader. PROTAC KDM4 degrader-1 can degrade KDM4A-C while sparing KDM4D. PROTAC KDM4 degrader-1 exhibits potent antiproliferative activity in esophageal cancer cells. PROTAC KDM4 degrader-1 induces apoptosis and cell cycle arrest, and inhibits histone H3 lysine demethylation. (Blue: E3 ligase ligand (HY-112078), Black: linker (HY-W013381); Pink: ligand for target protein (HY-173136) ) .
    PROTAC KDM4 degrader-1
  • HY-P5062

    Decanoyl-Arg-Val-Arg-Lys-chloromethylketone

    Furin Infection
    DEC-RVRK-CMK (Decanoyl-Arg-Val-Arg-Lys-chloromethylketone) is a peptide-based CMK (chloromethylketone) inhibitor that targets and inactivates the secreted soluble kexin (Kex2) (Ki=8.45 μM). The yeast enzyme Kex2 (kexin, EC 3.4.21.61) is a calcium-dependent transmembrane protease and belongs to the mammalian protease family of the serine protease subtilisin family. The binding mechanism of Kex2 with different CMK inhibitors depends on substrate selectivity, particularly the selective differences between lysine and arginine at the P1 position .
    DEC-RVRK-CMK
  • HY-141600

    BAY 1187982

    Antibody-Drug Conjugates (ADCs) FGFR Microtubule/Tubulin Apoptosis Cancer
    Aprutumab ixadotin (BAY 1187982) is the first antibody-drug conjugate (ADC) to target FGFR2 and the first to use Auristatin-based payload. Aprutumab ixadotin contains a fully human anti-FGFR2 monoclonal antibody (Aprutumab) (HY-P99007) conjugated by lysine side chains to a non-cleavable linker and via this an innovative Auristatin W derivative. Aprutumab ixadotin can be used for the study of advanced solid tumors, such as FGFR2-positive gastric cancer and triple-negative breast cancer .
    Aprutumab ixadotin
  • HY-P5062A

    Decanoyl-Arg-Val-Arg-Lys-chloromethylketone TFA

    Furin Infection
    DEC-RVRK-CMK (Decanoyl-Arg-Val-Arg-Lys-chloromethylketone) TFA is a peptide-based CMK (chloromethylketone) inhibitor that targets and inactivates the secreted soluble kexin (Kex2) (Ki=8.45 μM). The yeast enzyme Kex2 (kexin, EC 3.4.21.61) is a calcium-dependent transmembrane protease and belongs to the mammalian protease family of the serine protease subtilisin family. The binding mechanism of Kex2 with different CMK inhibitors depends on substrate selectivity, particularly the selective differences between lysine and arginine at the P1 position .
    DEC-RVRK-CMK TFA
  • HY-164575

    Radionuclide-Drug Conjugates (RDCs) PSMA Cancer
    NH2-NODAGA is a NODAGA-type metal chelator that can bind to radionuclides to prepare radionuclide conjugates (RDCs). NH2-NODAGA can react with diethyl squarate in 0.5M phosphate buffer (room temperature, 2 h, pH 7-7.5) to obtain NODAGA.SA. NODAGA.SA can target L-lysine urea-L-glutamate (KuE), which is a key structure of prostate-specific membrane antigen (PSMA). NODAGA.SA.KuE can bind [68]Ga and can be used for PET examination of NMRInu/nu nude mice bearing LNCaP tumors.
    NH2-NODAGA
  • HY-W250308A

    Epsilon-polylysine (hydrochloride) (MV 2000-5000); ε-Polylysine (hydrochloride) (MV 2000-5000); ε-PL (hydrochloride) (MV 2000-5000)

    Bacterial Infection
    ε-Poly-L-lysine hydrochloride (MV 2000-5000) is an antimicrobial peptide that can be produced by bacteria such as Streptomyces. Epsilon-polylysine hydrochloride inhibits the growth of microorganisms such as bacteria, yeasts and molds and is therefore often used as a green food additive and preservative in various food and beverage products. Epsilon-polylysine hydrochloride has a variety of properties, including thermal stability, resistance to acidic conditions, and broad-spectrum antimicrobial activity. Epsilon-polylysine hydrochloride can be loaded on other materials to form nanoparticles or form nanofiber membranes for targeted delivery to exert sustained antibacterial efficacy. Epsilon-polylysine hydrochloride is also used as a liposome stabilizer .
    ε-Poly-L-lysine (hydrochloride) (MV 2000-5000)
  • HY-176239

    PROTACs PI3K Akt Apoptosis Autophagy Cancer
    PROTAC PI3Kδ degrader-1 is a Lysine-targeted covalent PI3Kδ PROTAC degrader with a DC50 of 3.98 nM. PROTAC PI3Kδ degrader-1 has a potent antiproliferative activity and selective PI3Kδ inhibition (IC50: 8 nM). PROTAC PI3Kδ degrader-1 also significantly degrades p-AKT, induces cell cycle arrest in G1 phase and prompts cell apoptosis and autophagy. PROTAC PI3Kδ degrader-1 effectively inhibits the tumor growth in SU-DHL-6 xenograft mice model . Pink: PI3Kδ ligand (HY-169983); Blue: VHL ligase ligand (HY-112078); Black: linker (HY-W013381)
    PROTAC PI3Kδ degrader-1

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