14 Results for "

epigenetic enzymes

" in MedChemExpress (MCE) Product Catalog:
Products (14)

14 Results for "epigenetic enzymes" in MCE Product Catalog:

29
29 Publications Verification
Cat. No.: HY-111558
CAS No.: 2280037-51-4
Purity:  99.44%
Research Areas:  

Cancer

Bobcat339 is a potent and selective cytosine-based inhibitor of TET enzyme, with IC50s of 33 μM and 73 μM for TET1 and TET2, respectively. Bobcat339 is useful to the field of epigenetics and serves as a starting point for new therapeutics that target DNA methylation and gene transcription .
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29
29 Publications Verification
Cat. No.: HY-111558A
CAS No.: 2436747-44-1
Purity:  99.59%
Research Areas:  

Cancer

Bobcat339 hydrochloride is a potent and selective cytosine-based inhibitor of TET enzyme, with the IC50s of 33 μM and 73 μM for TET1 and TET2, respectively. Bobcat339 hydrochloride is useful to the field of epigenetics and serves as a starting point for new therapeutics that target DNA methylation and gene transcription .
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2
2 Cited Publications
Cat. No.: HY-138830
CAS No.: 1818252-53-7
Purity:  99.81%
Target:  

Histone Demethylase

Research Areas:  

Neurological Disease

TAK-418 is a selective, orally active LSD1 (KDM1A) enzyme inhibitor with an IC50 of 2.9 nM. TAK-418 unlocks aberrant epigenetic machinery and improves autism symptoms in neurodevelopmental disorder models .
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Cat. No.: HY-161169A
CAS No.: 2865106-78-9
Target:  

MMP

Research Areas:  

Cancer

TP0628103 TFA is a potent and highly selective MMP-7 inhibitor with an IC50 of 0.17 nM. TP0628103 TFA undergoes structural optimization via molecular isoelectric point shifting, which reduces organic anion transporter (OAT)-mediated clearance, while maintaining potent MMP-7 inhibitory activity and enhancing MMP subtype selectivity. TP0628103 TFA is applicable for research on the regulatory mechanisms of MMP-7-related matrix metalloproteinases .
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Cat. No.: HY-161169
CAS No.: 2865102-08-3
Target:  

MMP

Research Areas:  

Cancer

TP0628103 is a potent and highly selective MMP-7 inhibitor with an IC50 of 0.17 nM. TP0628103 undergoes structural optimization via molecular isoelectric point shifting, which reduces organic anion transporter (OAT)-mediated clearance, while maintaining potent MMP-7 inhibitory activity and enhancing MMP subtype selectivity. TP0628103 is applicable for research on the regulatory mechanisms of MMP-7-related matrix metalloproteinases .
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Cat. No.: HY-162003
CAS No.: 2289726-31-2
Research Areas:  

Cancer

DCPT1061 potently inhibits PRMT1, PRMT6 and PRMT8 in vitro with less inhibitory effect on PRMT3, PRMT4, and PRMT5 or other epigenetic enzymes. DCPT1061 has antitumor effect .
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Cat. No.: HY-162003A
Research Areas:  

Cancer

DCPT1061 hydrochloride has a strong inhibitory effect on PRMT1, PRMT6, and PRMT8 in vitro, The epigenetic enzymes such as PRMT3, PRMT4 and PRMT5 had little inhibitory effect. DCPT1061 hydrochloride has antitumor effects .
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Cat. No.: HY-111558R
CAS No.: 2280037-51-4
Bobcat339 (Standard) is the analytical standard of Bobcat339 (HY-111558). This product is intended for research and analytical applications. Bobcat339 is a potent and selective cytosine-based inhibitor of TET enzyme, with IC50s of 33 μM and 73 μM for TET1 and TET2, respectively. Bobcat339 is useful to the field of epigenetics and serves as a starting point for new therapeutics that target DNA methylation and gene transcription .
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Cat. No.: HY-L249
6,182 compounds

Protein lactylation, an emerging post-translational modification identified in recent years, plays a critical role in linking cellular metabolic reprogramming, epigenetic regulation, and signaling networks. Based on a systematic framework encompassing lactate metabolism, lactylation, and downstream signaling pathways, this compound library comprehensively targets multiple regulatory layers, including histone modification enzymes (such as p300 and HDACs), key glycolytic enzymes (such as PKM2, LDHA, and GAPDH), transcriptional regulators (such as STAT3, HMGB1, and p53), as well as central signaling pathway nodes including HIF-1α, NF-κB, and PI3K-AKT-mTOR. This integrated design enables a comprehensive representation of the regulatory roles of lactylation across the “metabolism–epigenetics–signaling” axis.

MCE has assembled a collection of 6,182 known bioactive compounds and potential functional molecules, making this library suitable for a wide range of applications, including high-throughput drug screening, inhibitor identification, and mechanistic studies. It can be used to systematically evaluate the functional roles of lactylation in biological processes such as tumor metabolism, immune regulation, and inflammatory responses, and to efficiently identify small-molecule candidates with regulatory potential, thereby facilitating the development of innovative therapeutics targeting the interplay between metabolism and epigenetic regulation.

Cat. No.: HY-111558AR
CAS No.: 2436747-44-1
Bobcat339 hydrochloride (Standard) is the analytical standard of Bobcat339 (hydrochloride) (HY-111558A). This product is intended for research and analytical applications. Bobcat339 hydrochloride is a potent and selective cytosine-based inhibitor of TET enzyme, with the IC50s of 33 μM and 73 μM for TET1 and TET2, respectively. Bobcat339 hydrochloride is useful to the field of epigenetics and serves as a starting point for new therapeutics that target DNA methylation and gene transcription .
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Cat. No.: HY-186091
CAS No.: 2097535-26-5
Research Areas:  

Others

AcdK is a non-natural amino acid and a precursor of allysine. AcdK allows site-specific incorporation into target proteins in E. coli via the amber suppression strategy. AcdK enables site-specific lysine dimethylation or monomethylation modification of target proteins. AcdK can synthesize site-specific lysine-methylated variants of histone H3 and p53, which is applicable for investigating the substrate specificity and catalytic function of epigenetic enzymes .
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Cat. No.: HY-L203
351 compounds

Methylation is an epigenetic modification mechanism that involves adding methyl groups to molecules such as DNA and histones, which can alter gene expression without changing the DNA sequence. This process is catalyzed by enzymes such as DNA methyltransferases (DNMTs) and histone methyltransferases (HMTs), and can be reversed by demethylases. The balance of methylation and demethylation is crucial for maintaining cellular function and genomic stability. Abnormal regulation of methylation may lead to a variety of diseases, including cancer, neurological disorders, and developmental abnormalities. A deep understanding of the molecular mechanisms of methylation metabolism is essential for developing therapeutic strategies for diseases associated with methylation dysregulation.

MCE contains 351 compounds targeting methylation/demethylation enzymes, which is of significant value for studying the pathways of methylation metabolism and exploring their mechanisms of action in diseases.

Cat. No.: HY-L250
61 compounds

In the progression of various diseases, metabolic reprogramming has emerged as a key hallmark. Lactate, as an important metabolic signaling molecule, is widely involved in tumorigenesis, immune regulation, and inflammatory responses. Particularly within the tumor microenvironment, the abnormal accumulation of lactate not only affects cellular energy metabolism but also promotes disease progression by modulating immune cell functions and mediating protein lactylation, thereby participating in epigenetic regulation and signaling networks. Therefore, systematic investigation of lactate metabolic pathways and their associated metabolites is of great significance for understanding disease mechanisms and developing novel therapeutic strategies.

The MCE lactic acid metabolite compound library contains 61 compounds and is constructed around key metabolic pathways involving lactate production, transport, and utilization. This library systematically includes core intermediates from glycolysis, the tricarboxylic acid (TCA) cycle, and the lactate cycle. Focusing on disease-associated metabolic reprogramming, it is suitable for research in oncology, inflammation, and metabolic disorders. The library can be used to elucidate the roles of lactate in tumor microenvironment regulation, immune evasion, and epigenetic modifications (such as protein lactylation). In addition, it provides high-quality small-molecule resources for drug screening, facilitating the discovery of potential modulators targeting key enzymes (such as LDH) or transporters (such as MCTs) involved in lactate metabolism.

Cat. No.: HY-L024
931 compounds

A histone modification, a covalent post-translational modification (PTM) to histone proteins, includes methylation, phosphorylation, acetylation, ubiquitylation, and sumoylation, etc. In general, histone modifications are catalyzed by specific enzymes that act predominantly at the histone N-terminal tails involving amino acids such as lysine or arginine, as well as serine, threonine, tyrosine, etc. The PTMs made to histones can impact gene expression by altering chromatin structure or recruiting histone modifiers. Histone modifications act in diverse biological processes such as transcriptional activation/inactivation, chromosome packaging, and DNA damage/repair. Deregulation of histone modification contributes to many diseases, including cancer and autoimmune diseases.

MCE owns a unique collection of 931 bioactive compounds targeting Epigenetic Reader Domain, HDAC, Histone Acetyltransferase, Histone Demethylase, Histone Methyltransferase, Sirtuin, etc. Histone Modification Research Compound Library is a useful tool for histone modification research and drug screening.

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