ZNF425, as a zinc finger protein, is intricately involved in the regulation of gene expression through its DNA-binding capability. The chemicals listed are not direct activators of ZNF425 but rather influence its activity or expression indirectly by targeting key cellular processes like DNA methylation, histone modification, and zinc homeostasis. Compounds such as 5-Azacytidine and RG108, which inhibit DNA methyltransferases, can alter the epigenetic landscape, potentially affecting the transcriptional regulation activities of ZNF425. Histone deacetylase (HDAC) inhibitors like Trichostatin A and SAHA modify chromatin structure, which can have downstream effects on ZNF425-mediated gene expression.
Additionally, the function of zinc finger proteins like ZNF425 is closely tied to zinc availability, and compounds that modulate zinc levels, such as Disulfiram and Pyrithione Zinc, may indirectly impact ZNF425 activity. Furthermore, inhibitors of histone acetyltransferases (e.g., C646) and histone methyltransferases (e.g., BIX-01294) can also affect the expression and function of genes regulated by ZNF425. Mithramycin A, with its DNA-binding ability, could compete with ZNF425 for DNA binding sites, influencing its regulatory roles.
JQ1 and DZNep target other aspects of chromatin accessibility and gene expression, further illustrating the complex interplay between various epigenetic modifiers and zinc finger proteins like ZNF425. Genistein's broad impact on signal transduction pathways can also have indirect effects on the transcriptional regulatory functions of ZNF425.
These chemical compounds provide valuable tools for studying the biological functions and regulatory mechanisms associated with ZNF425. By influencing the epigenetic and transcriptional landscape in which ZNF425 operates, they offer insights into the broader context of gene regulation and the intricate network of interactions that govern cellular processes. Such understanding is crucial for unraveling the complex roles of zinc finger proteins in gene expression and cellular function.
Produkt | CAS # | Katalog # | Menge | Preis | Referenzen | Bewertung |
---|---|---|---|---|---|---|
5-Azacytidine | 320-67-2 | sc-221003 | 500 mg | $280.00 | 4 | |
Der DNA-Methyltransferase-Inhibitor 5-Azacytidin könnte ZNF425 indirekt beeinflussen, indem er die DNA-Methylierungsmuster verändert und damit die Genexpression beeinflusst. | ||||||
Trichostatin A | 58880-19-6 | sc-3511 sc-3511A sc-3511B sc-3511C sc-3511D | 1 mg 5 mg 10 mg 25 mg 50 mg | $149.00 $470.00 $620.00 $1199.00 $2090.00 | 33 | |
Trichostatin A, ein HDAC-Inhibitor, kann die Expression von ZNF425 durch Veränderung der Chromatinstruktur und der Gentranskription beeinflussen. | ||||||
RG 108 | 48208-26-0 | sc-204235 sc-204235A | 10 mg 50 mg | $128.00 $505.00 | 2 | |
RG108, ein DNA-Methyltransferase-Inhibitor, könnte die Expression von ZNF425 indirekt durch Veränderungen der DNA-Methylierung beeinflussen. | ||||||
Disulfiram | 97-77-8 | sc-205654 sc-205654A | 50 g 100 g | $52.00 $87.00 | 7 | |
Disulfiram kann Zinkionen chelatisieren, was die Funktion von Zinkfingerproteinen wie ZNF425 beeinträchtigen kann. | ||||||
Zinc | 7440-66-6 | sc-213177 | 100 g | $47.00 | ||
Als Zinkquelle könnte Pyrithion-Zink die Funktionalität von ZNF425 indirekt beeinflussen, indem es die Zinkverfügbarkeit moduliert. | ||||||
C646 | 328968-36-1 | sc-364452 sc-364452A | 10 mg 50 mg | $260.00 $925.00 | 5 | |
C646, ein Inhibitor der p300/CBP-Histon-Acetyltransferase, kann sich indirekt auf ZNF425 auswirken, indem er die Histon-Acetylierung und die Genexpression verändert. | ||||||
Mithramycin A | 18378-89-7 | sc-200909 | 1 mg | $54.00 | 6 | |
Ein DNA-bindendes Antibiotikum, Mithramycin A, könnte ZNF425 beeinflussen, indem es mit ihm um DNA-Bindungsstellen konkurriert. | ||||||
BIX01294 hydrochloride | 1392399-03-9 | sc-293525 sc-293525A sc-293525B | 1 mg 5 mg 25 mg | $36.00 $110.00 $400.00 | ||
BIX-01294, ein G9a-Histon-Methyltransferase-Inhibitor, könnte die ZNF425-Expression durch Veränderung der Histon-Methylierung und der Chromatinstruktur beeinflussen. | ||||||
(±)-JQ1 | 1268524-69-1 | sc-472932 sc-472932A | 5 mg 25 mg | $226.00 $846.00 | 1 | |
JQ1, ein BET-Bromodomain-Inhibitor, kann möglicherweise die ZNF425-Aktivität beeinflussen, indem er die Zugänglichkeit des Transkriptionsfaktors zum Chromatin moduliert. | ||||||
Genistein | 446-72-0 | sc-3515 sc-3515A sc-3515B sc-3515C sc-3515D sc-3515E sc-3515F | 100 mg 500 mg 1 g 5 g 10 g 25 g 100 g | $26.00 $92.00 $120.00 $310.00 $500.00 $908.00 $1821.00 | 46 | |
Genistein, ein Tyrosinkinase-Inhibitor, könnte die Aktivität von ZNF425 indirekt über Wege beeinflussen, die an der Signaltransduktion und der Transkriptionsregulation beteiligt sind. |