Transcription factors like DMRTC2 are proteins that help regulate the expression of specific genes by binding to particular regions of DNA. They play crucial roles in various cellular processes such as cell growth, differentiation, and response to environmental signals. Generally, compounds that affect the activity of transcription factors are categorized based on their mode of action, rather than the specific transcription factor they target. Transcription factors are complex molecules that often interact with an array of co-factors, other proteins, and, of course, DNA itself. These interactions are dynamic and may vary depending on the cellular context, making it difficult to design a small molecule that specifically targets one transcription factor without affecting others. In lieu of directly targeting the transcription factors, researchers often opt for alternative strategies. For instance, they may aim to disrupt protein-protein interactions that are crucial for the transcription factor's function. Alternatively, they may target upstream or downstream elements in the signaling pathway that ultimately modulate the activity of the transcription factor.
Some research also focuses on understanding the three-dimensional structure of the transcription factor in complex with DNA, with the aim of identifying new sites for small molecule interaction. It is also worth noting that targeting transcription factors directly is a challenging task in the field of molecular biology and biochemistry. The interactions between transcription factors and DNA or other proteins are often diffuse and involve large surface areas, which makes it difficult to design small molecules that can specifically influence these interactions. As a result, strategies to modulate transcription factor activity often involve indirect approaches, such as influencing upstream signaling pathways or modulating the stability or localization of the transcription factor. Therefore, the notion of a "DMRTC2 Activator" as a distinct chemical class does not align well with the current understanding of how transcription factors are typically modulated at the molecular level.
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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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Anisomycin | 22862-76-6 | sc-3524 sc-3524A | 5 mg 50 mg | $97.00 $254.00 | 36 | |
因其在激活应激活化蛋白激酶方面的作用而闻名,可能会影响包括 dmrtc2 在内的基因表达。 | ||||||
Staurosporine | 62996-74-1 | sc-3510 sc-3510A sc-3510B | 100 µg 1 mg 5 mg | $82.00 $150.00 $388.00 | 113 | |
一种强效的 PKC 抑制剂,也可影响其他激酶,从而可能影响基因表达。 | ||||||
Isoproterenol Hydrochloride | 51-30-9 | sc-202188 sc-202188A | 100 mg 500 mg | $27.00 $37.00 | 5 | |
β-肾上腺素能激动剂,可增加 cAMP 水平,从而可能影响 dmrtc2。 | ||||||
D-erythro-Sphingosine | 123-78-4 | sc-3546 sc-3546A sc-3546B sc-3546C sc-3546D sc-3546E | 10 mg 25 mg 100 mg 1 g 5 g 10 g | $88.00 $190.00 $500.00 $2400.00 $9200.00 $15000.00 | 2 | |
众所周知,鞘氨醇在细胞生长和存活过程中发挥作用,可能会影响基因表达。 | ||||||
Thapsigargin | 67526-95-8 | sc-24017 sc-24017A | 1 mg 5 mg | $94.00 $349.00 | 114 | |
导致细胞内钙含量增加,从而可能影响基因表达。 | ||||||
Lithium | 7439-93-2 | sc-252954 | 50 g | $214.00 | ||
抑制 GSK3 并可能影响 Wnt 信号转导,从而可能影响 dmrtc2 的表达。 | ||||||
Quercetin | 117-39-5 | sc-206089 sc-206089A sc-206089E sc-206089C sc-206089D sc-206089B | 100 mg 500 mg 100 g 250 g 1 kg 25 g | $11.00 $17.00 $108.00 $245.00 $918.00 $49.00 | 33 | |
它以其抗氧化特性而闻名,有可能影响各种基因的表达。 | ||||||
Nifedipine | 21829-25-4 | sc-3589 sc-3589A | 1 g 5 g | $58.00 $170.00 | 15 | |
阻断钙通道,可能会影响细胞内信号传递和基因表达。 | ||||||
AICAR | 2627-69-2 | sc-200659 sc-200659A sc-200659B | 50 mg 250 mg 1 g | $60.00 $270.00 $350.00 | 48 | |
一种 AMPK 激活剂,可影响细胞能量状态,进而影响基因表达。 | ||||||
PMA | 16561-29-8 | sc-3576 sc-3576A sc-3576B sc-3576C sc-3576D | 1 mg 5 mg 10 mg 25 mg 100 mg | $40.00 $129.00 $210.00 $490.00 $929.00 | 119 | |
激活蛋白激酶 C,可能影响多种基因表达途径。 |