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Results for "

atp synthesis

" in TargetMol Product Catalog
  • Inhibitors & Agonists
    52
    TargetMol | Inhibitors_Agonists
  • Compound Libraries
    2
    TargetMol | Compound_Libraries
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    TargetMol | Natural_Products
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    6
    TargetMol | Inhibitors_Agonists
ATP Synthesis-IN-2
T82944
ATP Synthesis-IN-2 (Compound 5) is a potent inhibitor of ATP synthesis activity, exhibiting significant antibacterial properties with an IC50 value of 0.7 μg mL against Pseudomonas aeruginosa (PA) [1].
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ATP Synthesis-IN-1
T82945
ATP Synthesis-IN-1 (Compound 4), a quinoline derivative, potently inhibits PA ATP synthesis with an IC50 of 11.1μg mL and exhibits antibacterial properties. This compound is utilized in studying drug-resistant PA infections [1].
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Adenine
Vitamin B4, 6-Aminopurine
T006473-24-5
Adenine (6-Aminopurine), a purine derivative, is a nucleobase essential in biochemistry, participating in cellular respiration through ATP, NAD, and FAD, and in protein synthesis as a component of DNA and RNA.
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Cytidine 5'-diphosphate trisodium salt
CDP
T4042634393-59-4
Cytidine 5'-diphosphate trisodium salt (CDP) catalyzes the production of Cytidine triphosphate (CTP) for DNA and RNA synthesis by transferring a phosphoryl group from ATP to cytidine monophosphate (CMP) through the action of uridine monophosphate kinase (UMPK).
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L-Histidine monohydrochloride monohydrat
T48265934-29-2
Histidine (abbreviated as His or H) is an alpha-amino acid. The L-isomer is one of the 22 proteinogenic amino acids, i.e., the building blocks of proteins. It is classified as a charged, polar because of the hydrophilic nature of the imidazole side chain.
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Fludarabine Phosphate
NSC 312887 Phosphate, fludara Phosphate, F-ara-A (NSC 312887) Phosphate, F-ara-AMP
T650175607-67-9
Fludarabine Phosphate (NSC 312887 Phosphate) is the phosphate salt of a fluorinated nucleotide antimetabolite analog of the antiviral agent vidarabine (ara-A) with antineoplastic activity. Fludarabine phosphate is rapidly dephosphorylated to 2-fluoro-ara-A and then phosphorylated intracellularly by deoxycytidine kinase to the active triphosphate, 2-fluoro-ara-ATP. This metabolite may inhibit DNA polymerase alpha, ribonucleotide reductase, and DNA primase, thereby interrupting DNA synthesis and inhibiting tumor cell growth.
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Adenosine 5'-monophosphate disodium salt
Adenosine Phosphate Disodium, 5'-AMP-NA2
T659794578-31-8
Adenosine 5'-monophosphate disodium salt (Adenosine Phosphate Disodium) is a purine nucleotide involved in ATP metabolism and is used to study the effects of ATP on cells and organisms. Adenosine 5'-monophosphate disodium salt has been shown to have a variety of biochemical and physiological effects. It has been shown to increase cell metabolism, gene expression, and protein synthesis.
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7-10 days
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Oxiconazole
Ro13-8996 free base, Ro-13-8996 free base, Oxiconazolum
T2069364211-45-6
Oxiconazole is a broad-spectrum imidazole antifungal agent with fungicidal activity against T. rubrum, T. mentagrophytes, T. tonsurans, T. violaceum, E. floccosum, M. canis, M. audouini, M. gypseum, C. albicans, and M. furfur. have fungicidal activity, inhibiting ergosterol biosynthesis and disrupting fungal cell membrane integrity by disrupting cytochrome P450 enzymes (lanosterol 14- α demethylase). It also inhibits DNA synthesis and suppresses intracellular ATP concentration.
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1-2 weeks
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Tenofovir diphosphate TEA
TFV-DP TEA, Tenofovir diphosphate TEA(166403-66-3 Free base)
T37909L2122333-63-3
Tenofovir diphosphate TEA (TFV-DP TEA) is the triethylamine salt of TFV-DP, an ATP-competitive DNA polymerase inhibitor that inhibits HIV-1 reverse transcriptase. It has anti-HIV HBV potential through its incorporation into the viral DNA strand to terminate viral DNA synthesis and thus inhibit viral genome replication.
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Bedaquiline
TMC207, R207910
T2585843663-66-1
Bedaquiline (R207910) is an anti-tuberculosis drug which selectively inhibit the mycobacterial energy metabolism i.e. ATP synthesis and found to be effective against all states of Mycobacterium tuberculosis.
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HALOFUGINONE LACTATE
T878582186-71-8
HALOFUGINONE LACTATE is a halogenated derivative of febrifugine, a natural quinazolinone-containing compound found in the Chinese herb D. febrifuga.Halofuginone inhibits prolyl-tRNA synthetase in an ATP-dependent manner with a Ki of 18.3 nM. Halofuginone is a specific inhibitor of type-I collagen synthesis and attenuates osteoarthritis (OA) by inhibition of TGF-β activity
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TargetMol | Inhibitor Sale
TH5427
T39785L2253744-56-6
TH5427 is a lead NUDT5 inhibitor(MG assay IC50 = 29 nM).
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Ethyl tosylcarbamate
T112435577-13-9
Gliclazide is a whole-cell beta-cell ATP-sensitive potassium currents blocker with an IC50 of 184 nM. Ethyl tosylcarbamate is an intermediate in the synthesis of Gliclazide (G409877).
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7-10 days
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(-)-Hydroxycitric acid
Garcinia acid
T1159027750-10-3
(-)-Hydroxycitric acid (Garcinia acid) is the principal acid found in the fruit rinds of Garcinia cambogia. It acts as a potent and competitive inhibitor of ATP citrate lyase, suppressing fatty acid synthesis, food intake, lipogenesis, and inducing weight loss.
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(-)-Hydroxycitric acid lactone
Garcinia lactone
T1204527750-13-6
(-)-Hydroxycitric acid lactone (Garcinia lactone) is an anti-obesity agent and a potent inhibitor of ATP citrate lyase, an enzyme that catalyzes the extramitochondrial cleavage of citrate to oxaloacetate and acetyl-CoA.
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8-Chloroadenosine
NSC 354258, 8-Cl-Ado, NSC354258, NSC-354258
T1966134408-14-5
8-Chloroadenosine (NSC-354258) is a 5' AMP-activated protein kinase agonist potentially for the treatment of chronic lymphocytic leukemia. 8-chloroadenosine activity is associated with inhibition of the mTOR pathway.8-Chloroadenosine (NSC-354258) is a nucleoside analog; metabolized in vivo to 8-Chloro-ATP. Incorporates into RNA during transcription and inhibits RNA synthesis. Exhibits cytotoxicity in MM.1S, RPMI-8226, and U266 cancer cell lines; induces G2 M cell cycle arrest and mitotic catastrophe in A549 and H1299 cells. 8-Chloroadenosine (NSC-354258) has been shown to deplete ATP and inhibit tumor growth in hematological malignancies as well as in lung and breast cancer cell lines.
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NAD Synthetase
Nicotinamide adenine dinucleotide synthetase, NAD+ Synthetase
T2002369032-69-3
NAD Synthetase is responsible for the final step in the synthesis of Nicotinamide Adenine Dinucleotide (NAD). The enzyme sourced from Escherichia coli exhibits Km values of 200 μM for NAD, 11 μM for ATP, and 0.65 μM for ammonia. Conversely, NAD Synthetase derived from yeast demonstrates Km values of 170 μM for NAD, 190 μM for ATP, and 64 μM for ammonia. This enzyme is applicable in enzymatic assays for ATP, ammonia, urea, or creatinine and can also be used in enzymatic recycling methods. Additionally, NAD Synthetase holds potential for research into metabolic diseases, cancer, aging, and neurodegenerative disorders.
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LW1564
T2030512668337-39-9
LW1564 is an HIF-1α inhibitor with an IC50 of 1.2 µM in HepG2 cells. It suppresses mitochondrial respiration, reduces ATP production, and stimulates HIF-1α degradation, thereby inhibiting the proliferation of various cancer cells with a GI50 ranging from 0.4 to 4.6 μM. Additionally, LW1564 activates the AMPK signaling pathway and inhibits lipid synthesis. In HepG2 xenograft mouse models, LW1564 demonstrates antitumor activity.
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Ap4dT
T2031161146545-74-5
Ap4dT serves as an inhibitor of human adenylate kinase isozyme 1 (hAK1), effectively suppressing the synthesis of ATP and ADP, with IC50 values of 42 μM and 38 μM, respectively.
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NSC 109555
NSC-109555,DDUG dimethanesulfonate,NSC109555,DDUG diMS
T3373715427-93-7
NSC 109555 is a selective, reversible, ATP-competitive Chk2 inhibitor (IC50 = 0.2 μM) that displays no effect on a range of other kinases including Chk1 (IC50 > 10 μM). Inhibits histone H1 phosphorylation (IC50 = 0.24 μM) and attenuates mitochondrial ATP synthesis. Exhibits antiproliferative activity in a number of leukemias in vivo.
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γ-Glu-Cys (ammonium salt)
T35454
γ-Glu-Cys is an intermediate in glutathione (GSH) synthesis.1It is formed by ATP-dependent condensation of cysteine and glutamate by γ-glutamylcysteine synthetase. γ-Glu-Cys is also an essential component of phytochelatins, the heavy metal detoxifying enzymes in plants.2
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6-Hydroxypyridin-3-ylboronic Acid
T35533903899-13-8
6-Hydroxypyridin-3-ylboronic acid is a heterocyclic building block.1,2It has been used in the synthesis of non-nucleoside inhibitors of hepatitis C virus (HCV) RNA-dependent RNA polymerase nonstructural protein 5B (NS5B).16-Hydroxypyridin-3-ylboronic acid has also been used in the synthesis of mammalian target of rapamycin (mTOR) inhibitors.2 1.Hendricks, R.T., Spencer, S.R., Blake, J.F., et al.3-Hydroxyisoquinolines as inhibitors of HCV NS5b RNA-dependent RNA polymeraseBioorg. Med. Chem. Lett.19(2)410-414(2009) 2.Verheijen, J.C., Richard, D.J., Curran, K., et al.Discovery of 4-morpholino-6-aryl-1H-pyrazolo[3,4-d]pyrimidines as highly potent and sselective ATP-competitive inhibitors of the mammalian target of rapamycin (mTOR): Optimization of the 6-aryl substituentJ. Med. Chem.52(24)8010-8024(2009)
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2'-Deoxyguanosine 5'-monophosphate (sodium salt hydrate)
T35652146877-98-7
2'-Deoxyguanosine 5'-monophosphate (dGMP) is used as a substrate of guanylate kinases to generate dGDP, which in turn is phosphorylated to dGTP, a nucleotide precursor used in DNA synthesis. In addition, dGMP can be efficiently phosphorylated by the type I thymidylate kinase of the malarial agent P. falciparum. In humans, deficiency of mitochondrial deoxyguanosine kinase, which synthesizes dGMP from ATP and deoxyguanosine, contributes to mitochondrial DNA depletion syndrome.
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2,6-Dichloropurine-9-β-D-riboside
T3565513276-52-3
2,6-Dichloropurine-9-β-D-riboside is a building block.1,2It has been used in the synthesis of photoaffinity probes for nucleotide binding sites in proteins. 1.Wower, J., Hixson, S.S., Sylvers, L.A., et al.Synthesis of 2,6-diazido-9-(β-D-ribofuranosyl)purine 3',5'-bisphosphate: Incorporation into transfer RNA and photochemical labeling of Escherichia coli ribosomesBioconjug. Chem.5(2)158-161(1994) 2.Seiter, M.S., Bauer, M.P., Bogel, P.D., et al.Synthesis of novel spin-labeled photoaffinity derivatives of NAD+ and ATP and their characterization as coenzymes and substrates of several enzymesSynthesis2269-273(1996)
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