22 Results for "

p53 acetylation

" in MedChemExpress (MCE) Product Catalog:
Products (22)

22 Results for "p53 acetylation" in MCE Product Catalog:

13
13 Publications Verification
Referencia número: HY-18935
No. CAS: 1197996-80-7
Synonyms: Curaxin 137; CBL-C137
Áreas de investigación:  

Cancer

CBL0137, a curaxin compound, is a histone chaperone facilitates chromatin transcription (FACT) inhibitor. CBL0137 downregulates NF-κB and activates p53. CBL0137 restores both histone H3 acetylation and trimethylation. CBL0137 is an anticancer agent. CBL0137 induces cancer cell apoptosis .
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6
6 Cited Publications
Referencia número: HY-135899
No. CAS: 1807758-81-1
Pureza:  98.81%
Target:  

Sirtuin Apoptosis

Áreas de investigación:  

Cancer

SIRT7 inhibitor 97491, a potent SIRT7 inhibitor with an IC50 of 325 nM, reduces deacetylase activity of SIRT7 in a dose-dependent manner. SIRT7 inhibitor 97491 prevents tumor progression by increasing p53 stability through acetylation at K373/382. SIRT7 inhibitor 97491 promotes apoptosis through caspase pathway. .
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4
4 Cited Publications
Referencia número: HY-P2161B
Target:  

Kisspeptin Receptor

Áreas de investigación:  

Cancer

TAK-683 acetate is a potent full KISS1 receptor (KISS1R) agonist (IC50=170 pM) with improved metabolic stability. TAK-683 acetate is a nonapeptide metastin analog, exhibits agonistic activities to KISS1R with EC50 values of 0.96 nM and 1.6 nM for human and rat, respectively . TAK-683 acetate depletes GnRH in the hypothalamus and reduces plasma FSH, LH, and testosterone levels in vivo, it has the potential for the study of hormone-dependent prostate cancer .
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1
1 Cited Publications
Referencia número: HY-12310
No. CAS: 1418131-46-0
Pureza:  ≥98.0%
Áreas de investigación:  

Others Inflammation/Immunology

RSC133 is a dual inhibitor of DNA methyltransferase 1 and histone deacetylase 1 inhibitor. RSC133 promotes cell proliferation, up-regulates H3K9 histone acetylation, down-regulates p53, p21, p16/INK4A, and ablates pro-senescence phenotypes .
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1
1 Cited Publications
Referencia número: HY-133998
No. CAS: 1211-19-4
Pureza:  99.12%
Target:  

Sirtuin

Áreas de investigación:  

Cancer

SIRT-IN-3 is a potent SIRT inhibitor, with an IC50 of 17 μM for SIRT1. SIRT-IN-3 shows about 4-fold and 14-fold selectivity for SIRT1 over SIRT2 and SIRT3, respectively (IC50 of 74 μM and 235 μM for SIRT2 and SIRT3, respectively) .
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Referencia número: HY-100671
No. CAS: 321695-57-2
Pureza:  99.44%
L002 is a potent, cell permeable, reversible and specific acetyltransferase p300 (KAT3B) inhibitor with an IC50 of 1.98 μM . L002 binds the acetyl-CoA pocket and competitively inhibits the FATp300 catalytic domain, blocks histone acetylation and p53 acetylation, and inhibits STAT3 activation . L002 has the potential for hypertension-induced cardiac hypertrophy and fibrogenesis treatment .
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Referencia número: HY-143412
No. CAS: 2217671-64-0
Pureza:  ≥99.0%
Áreas de investigación:  

Cancer

MIR002 is a potent and orally active DNA polymerase α (POLA1) and HDAC 11 dual inhibitor. MIR002 induces acetylation of p53, activation of p21, G1/S cell cycle arrest, and apoptosis. MIR002 shows significant antitumor activity in vivo .
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Referencia número: HY-143411
No. CAS: 2487526-28-1
Áreas de investigación:  

Cancer

GEM144 is a potent and orally active DNA polymerase α (POLA1) and HDAC 11 dual inhibitor. GEM144 induces acetylation of p53, activation of p21, G1/S cell cycle arrest, and apoptosis. GEM144 has significant antitumor activity in human orthotopic malignant pleural mesothelioma xenografts .
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Referencia número: HY-P5544
No. CAS: 60230-21-9
Synonyms: N-Acetylmuramyl-L-Ala-γ-D-Glu-meso-diaminopimelic acid
Áreas de investigación:  

Others

M-TriDAP (N-Acetylmuramyl-L-Ala-γ-D-Glu-meso-diaminopimelic acid) is a NOD1/2 agoist and biological active peptide .
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Referencia número: HY-148408
No. CAS: 1005095-06-6
Pureza:  99.94%
Target:  

Sirtuin

Áreas de investigación:  

Cancer

SIRT2-IN-11 (AEM1) is a selective SIRT2 inhibitor with an IC50 value of 18.5 μM. SIRT2-IN-11 p53-dependently induces apoptosis, activates expression of CDKN1A, PUMA and NOXA, and increases acetylation of p53. SIRT2-IN-11 can be used for the research of p53-related cancers .
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Referencia número: HY-136479
No. CAS: 361198-09-6
Target:  

Sirtuin

Áreas de investigación:  

Cancer

F0911-7667 is a SIRT1 activator that induces autophagic cell death in U87MG and T98G cells by activating the AMPK-mTOR-ULK complex. CWR tripeptide was also identified as a SIRT1 activator that reduced p53 acetylation in IMR32 neuroblastoma cells and protected cells from cell death induced by Aβ fragments .
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Referencia número: HY-155727
No. CAS: 670267-73-9
Target:  

Sirtuin Apoptosis

Áreas de investigación:  

Cancer

Sirt1/2-IN-2 (compound hsa55) is a dual inhibitor of SIRT1/2 with IC50s of 1.8 μM (SIRT1) and 2.4 μM (SIRT2), respsectivley. Sirt1/2-IN-2 completely blocks p53 deacetylation, and increase of p53 and α-tubulin acetylation. Sirt1/2-IN-2 induces apoptosis and shows anti-proliferation activity against human leukemia cell lines .
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Referencia número: HY-P2161
No. CAS: 872719-49-8
Target:  

Kisspeptin Receptor

Áreas de investigación:  

Cancer

TAK-683 is a potent full KISS1 receptor (KISS1R) agonist (IC50=170 pM) with improved metabolic stability. TAK-683 is a nonapeptide metastin analog, exhibits agonistic activities to KISS1R with EC50 values of 0.96 nM and 1.6 nM for human and rat, respectively . TAK-683 depletes GnRH in the hypothalamus and reduces plasma FSH, LH, and testosterone levels in vivo, it has the potential for the study of hormone-dependent prostate cancer .
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Referencia número: HY-155728
No. CAS: 301313-42-8
Target:  

Sirtuin Apoptosis

Áreas de investigación:  

Cancer

Sirt1/2-IN-3 (compound PS9) is a dual inhibitor of SIRT1/2 with IC50s of 1.4 μM (SIRT1) and 2.0 μM (SIRT2), respsectivley. Sirt1/2-IN-3 completely blocks p53 deacetylation, and increase of p53 and α-tubulin acetylation. Sirt1/2-IN-3 induces apoptosis and shows anti-proliferation activity against human leukemia cell lines .
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Referencia número: HY-174299
No. CAS: 1174387-32-6
Target:  

Sirtuin MDM-2/p53

Áreas de investigación:  

Neurological Disease Cancer

SIRT1-IN-6 (Compound NP1) is a SIRT1 inhibitor (IC50: 9.7 μM). SIRT1-IN-6 increases p53 acetylation. SIRT1-IN-6 can be used for research of prophylaxis and neurodegenerative diseases or cancer .
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Referencia número: HY-172204
No. CAS: 1620634-65-2
Áreas de investigación:  

Cancer

SIRT-IN-7 (Compound 7ba) is a SIRT inhibitor. SIRT-IN-7 can inhibit the expression of SIRT1, SIRT2, and SIRT3, and increase the acetylation and activation of p53. SIRT-IN-7 can inhibit the proliferation, and induce apoptosis and autophagy of breast cancer cells. SIRT-IN-7 has anti-tumor activity .
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Referencia número: HY-P2115
No. CAS: 127932-90-5
Target:  

GnRH Receptor

Áreas de investigación:  

Cancer

Ramorelix is a luteinizing-hormone-releasing hormone (LHRH) antagonist. Ramorelix can inhibit tumor progression in vivo. Ramorelix can be studied in anti-cancer research .
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Referencia número: HY-P5544A
Synonyms: N-Acetylmuramyl-L-Ala-γ-D-Glu-meso-diaminopimelic acid TFA
Áreas de investigación:  

Others

M-TriDAP (N-Acetylmuramyl-L-Ala-γ-D-Glu-meso-diaminopimelic acid) TFA is a NOD1/2 agoist and biological active peptide .
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Referencia número: HY-P2161A
Target:  

Kisspeptin Receptor

Áreas de investigación:  

Cancer

TAK-683 TFA is a potent full KISS1 receptor (KISS1R) agonist (IC50=170 pM) with improved metabolic stability. TAK-683 TFA is a nonapeptide metastin analog, exhibits agonistic activities to KISS1R with EC50 values of 0.96 nM and 1.6 nM for human and rat, respectively . TAK-683 TFA depletes GnRH in the hypothalamus and reduces plasma FSH, LH, and testosterone levels in vivo, it has the potential for the study of hormone-dependent prostate cancer .
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Referencia número: HY-182412
No. CAS: 2375182-58-2
Target:  

Sirtuin

Áreas de investigación:  

Cancer

NH4-6 is a SIRT2 inhibitor with an IC50 of 0.032 μM against SIRT2 and an IC50 of 3 μM against SIRT1. NH4-6 inhibits the deacetylase activity of SIRT1. As a cytotoxic agent, NH4-6 reduces cancer cell viability, suppresses anchorage-independent growth of cancer cells, induces acetylation of α-tubulin, and promotes acetylation of p53. NH4-6 can be used in the research of breast cancer .
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