30 Results for "

G-quadruplex structures

" in MedChemExpress (MCE) Product Catalog:
Products (30)

30 Results for "G-quadruplex structures" in MCE Product Catalog:

Cat. No.: HY-162688
Research Areas:  

Others

Anticancer agent 239 (Compound 5) is a ligand of hTERT promoter G-quadruplex DNA structures (hTERT G4) (Kd = 1.1 μM), and downregulates hTERT expression. Anticancer agent 239 decreases telomerase activity, shortens telomere length, and induces DNA damage, acute cellular senescence, and apoptosis. Anticancer agent 239 causes mitochondrial dysfunction, disrupts iron metabolism and activates ferroptosis in cancer cells. Anticancer agent 239 inhibits tumor growth in MDA-MB-231 xenograft mouse model .
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Cat. No.: HY-172902
CAS No.: 3105281-39-5
Target:  

DNA/RNA Synthesis

Research Areas:  

Neurological Disease

RNA binder 1 (Compound 4b) is a blood-brain permeable RNA binder. RNA binder 1 can selectively bind to the G-quadruplex structure of the G4C2 repeat sequence RNA of the C9orf72 gene. RNA binder 1 significantly reduces the levels of toxic polypeptides poly(GA) and poly(GP) produced by the G4C2 repeat sequence in amyotrophic lateral sclerosis (ALS) patient-derived cells. RNA binder 1 has no significant effect on the antisense polypeptide poly(PR), showing selectivity for sense RNA. RNA binder 1 can be used in the study of ALS and frontotemporal dementia (FTD) .
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Cat. No.: HY-185724
Target:  

PROTACs G-quadruplex

Research Areas:  

Others

rG4 mut_AHPC_PEG2 is a structure-disruptive negative control PROTAC. rG4 mut_AHPC_PEG2 demonstrates that the RNA G-quadruplex conformation is an absolute prerequisite for the recruitment and degradation of DHX36 by retaining the E3-recruiting moiety (AHPC-PEG2) while disrupting the secondary structure of the nucleic acid moiety (mutated RNA G-quadruplex), .
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Cat. No.: HY-D3415
CAS No.: 3030070-69-7
TOR-G4 is a Fluorescent probe that binds to G-quadruplex (G4) nucleic acid structures. TOR-G4 exhibits a unique fluorescence lifetime when bound to G4 compared to other structures, enabling sensitive discrimination between G4-bound and non-G4-bound states. TOR-G4 mainly colocalizes with RNA in the cytoplasm and nucleolus. TOR-G4 can be used to investigate the roles of RNA G4 in cells. TOR-G4 shows cytotoxicity against osteosarcoma cells .
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Cat. No.: HY-183981
Research Areas:  

Others

RNA binder 4 is an RNA-binding agent that can be used for the synthesis of MJ-NR-27 (HY-183980). MJ-NR-27 is a bifunctional ribonuclease-targeting chimera (RIBOTAC) small molecule that targets NRAS mRNA containing a G-quadruplex structure, and it can be used in cancer research .
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Cat. No.: HY-101931R
CAS No.: 1637443-98-1
Research Areas:  

Cancer

hVEGF-IN-1 (Standard) is the analytical standard of hVEGF-IN-1 (HY-101931). This product is intended for research and analytical applications. hVEGF-IN-1, a quinazoline derivative, could specifically bind to the G-rich sequence in the internal ribosome entry site A (IRES-A) and destabilize the G-quadruplex structure. hVEGF-IN-1 binds to the IRES-A (WT) with a Kd of 0.928 μM in SPR experiments. hVEGF-IN-1 could hinder tumor cells migration and repress tumor growth by decreasing VEGF-A protein expression .
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Cat. No.: HY-183980
Research Areas:  

Cancer

MJ-NR-27 is a bifunctional small molecule of ribonuclease-targeting chimera (RIBOTAC) that targets NRAS mRNA containing a G-quadruplex structure. MJ-NR-27 uses RNase L ligand 3 (HY-177030) as the RNase L ligand, RNA binder 4 (HY-183981) as the RNA binder, and Bis-PEG3-acid (HY-126891) as the linker. MJ-NR-27 achieves target RNA degradation by recruiting ribonuclease RNase L, and significantly induces morphological changes in tumor cells. MJ-NR-27 can be used in cancer research .
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Cat. No.: HY-185721
CAS No.: 25191-14-4
Synonyms: Polyguanylic acid
Target:  

DNA/RNA Synthesis

Research Areas:  

Others

Poly (G) (Polyguanylic acid) is a high-molecular-weight synthetic ribopolynucleotide. In the presence of Na + or K + ions, Poly (G) undergoes time-dependent structural modification, gradually self-assembling from a single strand into large G-quadruplex aggregates. Poly (G) undergoes cooperative secondary structure dissociation under alkaline conditions, but its secondary structure can withstand high temperatures up to 100°C and is resistant to snake venom diesterase at low Na + concentrations. Poly (G) forms stable 1:1 complexes with polycytidylic acid or poly 5-bromocytidylic acid, but does not bind to polyinosinic acid or polyadenylic acid. Poly (G) can be applied to studies on the interactions between drugs and G-rich DNA fragments in electrochemical biosensors .
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Cat. No.: HY-181599
XAN-5 is a mitochondrial DNA G-quadruplex (mtG4) ligand with a Kd of 3.8 μM. XAN-5 selectively binds and stabilizes mtG4 structures, disrupting mitochondrial gene transcription and DNA replication. XAN-5 triggers mitochondrial dysfunction, ROS overproduction, G0 phase arrest and caspase-dependent apoptosis. XAN-5 inhibits autophagy and induces immunogenic cell death. XAN-5 inhibits tumor growth in a mouse liver cancer model while enhancing tumor-infiltrating CD4 + and CD8 + T cells. XAN-5 targets two cancer resistance mechanisms simultaneously. XAN-5 can be used for the research of liver cancer .
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Cat. No.: HY-181234
CAS No.: 828292-11-1
Target:  

c-Myc Apoptosis

Research Areas:  

Cancer

Y502-3888 is a c-Myc inhibitor. Y502-3888 binds to the c-Myc G4 structure, inhibits c-Myc transcription, and downregulates c-Myc expression at both mRNA and protein levels. Y502-3888 inhibits the viability of myeloma cells and induces cell apoptosis. Y502-3888 can be used for the research of multiple myeloma .
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