ZNF625 activators are a category of chemical agents developed to specifically enhance the functional activity of the ZNF625 protein, a member of the zinc finger protein family. ZNF625, like other zinc finger proteins, likely plays a role in DNA binding and transcriptional regulation due to the presence of zinc finger motifs-characteristic structural elements that stabilize protein domains responsible for interacting with DNA or RNA molecules. These motifs are typically composed of a combination of cysteine and histidine residues that coordinate a zinc ion, contributing to the tertiary structure necessary for binding to nucleic acids or proteins. ZNF625 activators, therefore, are designed to influence the structural conformation of ZNF625 or its interaction with other molecular entities in such a way as to boost its regulatory influence on gene expression. The precise mode of action of these activators can vary, but the overarching goal is to increase the intrinsic activity of ZNF625 without disrupting the function of other zinc finger proteins or cellular components.
The discovery process for ZNF625 activators usually begins with a high-throughput screening of diverse chemical libraries to identify molecules that can potentially increase the activity of the ZNF625 protein. Following the identification of initial 'hit' compounds, these molecules are then validated through a series of secondary assays that are designed to ensure that the activatory effect is specific to ZNF625. This specificity is crucial to eliminate off-target effects that could lead to erroneous conclusions about the function of ZNF625. Once a select group of molecules has been confirmed as specific activators, they undergo a process of chemical optimization. This involves refining and modifying their chemical structure to enhance their potency, selectivity, and stability. Structural biology techniques such as X-ray crystallography or cryo-electron microscopy may be employed to determine the activator binding sites and to understand the molecular basis of the activation process. Computational chemistry tools, including molecular docking and virtual screening, are often utilized to predict how structural changes may impact the interaction with ZNF625 and guide rational design improvements. Through iterative cycles of design, synthesis, and biological testing, the most promising ZNF625 activators are developed, which can then serve as powerful tools for probing the biological functions of ZNF625 and its role in the complex network of gene regulation.
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产品名称 | CAS # | 产品编号 | 数量 | 价格 | 应用 | 排名 |
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5-Azacytidine | 320-67-2 | sc-221003 | 500 mg | ¥3159.00 | 4 | |
可能会全面降低 DNA 甲基化,从而可能影响 ZNF625 等基因的表达。 | ||||||
Suberoylanilide Hydroxamic Acid | 149647-78-9 | sc-220139 sc-220139A | 100 mg 500 mg | ¥1467.00 ¥3046.00 | 37 | |
作为组蛋白去乙酰化酶抑制剂,它可以增加组蛋白乙酰化,并有可能提高 ZNF625 的表达。 | ||||||
Mithramycin A | 18378-89-7 | sc-200909 | 1 mg | ¥609.00 | 6 | |
它与富含 GC 的 DNA 序列结合,有可能影响与 ZNF625 启动子区域相似的基因的转录。 | ||||||
(−)-Epigallocatechin Gallate | 989-51-5 | sc-200802 sc-200802A sc-200802B sc-200802C sc-200802D sc-200802E | 10 mg 50 mg 100 mg 500 mg 1 g 10 g | ¥474.00 ¥812.00 ¥1399.00 ¥2685.00 ¥5867.00 ¥13922.00 | 11 | |
绿茶中的一种茶多酚,可调节基因表达并对 ZNF625 产生表观遗传效应。 | ||||||
Disulfiram | 97-77-8 | sc-205654 sc-205654A | 50 g 100 g | ¥587.00 ¥982.00 | 7 | |
已知丁酸钠可调节蛋白酶体的活性,从而间接影响包括 ZNF625 在内的多种蛋白质的周转和表达。 | ||||||
Dimethyl Sulfoxide (DMSO) | 67-68-5 | sc-202581 sc-202581A sc-202581B | 100 ml 500 ml 4 L | ¥338.00 ¥1297.00 ¥10154.00 | 136 | |
在生物研究中常被用作溶剂;它还会影响分化和基因表达模式。 | ||||||
Valproic Acid | 99-66-1 | sc-213144 | 10 g | ¥959.00 | 9 | |
组蛋白去乙酰化酶抑制剂,可增加多种基因的表达,可能包括 ZNF625。 | ||||||
β-Estradiol | 50-28-2 | sc-204431 sc-204431A | 500 mg 5 g | ¥699.00 ¥2008.00 | 8 | |
一种可通过雌激素受体信号调节基因表达的雌激素,可能会影响 ZNF625。 | ||||||
Dexamethasone | 50-02-2 | sc-29059 sc-29059B sc-29059A | 100 mg 1 g 5 g | ¥857.00 ¥925.00 ¥4140.00 | 36 | |
一种糖皮质激素,可通过糖皮质激素受体信号调节基因表达,可能会影响 ZNF625。 | ||||||
Methotrexate | 59-05-2 | sc-3507 sc-3507A | 100 mg 500 mg | ¥1038.00 ¥2358.00 | 33 | |
作为一种叶酸类似物,它可能会改变 DNA 甲基化,从而改变基因表达,并可能影响 ZNF625 的表达。 |