Forkhead box K2 (FOXK2) is a transcription factor that has garnered considerable attention in the field of molecular biology for its role in various cellular processes. As a member of the Forkhead family of transcription factors, characterized by a distinct forkhead or 'winged-helix' DNA-binding domain, FOXK2 is involved in the intricate regulation of gene expression. It participates in a broad array of cellular activities, including regulation of the cell cycle, apoptosis, and metabolism. The modulation of FOXK2 activity within cells is pivotal as it may influence cellular growth, differentiation, and response to environmental stimuli. FOXK2 expression levels can be critical for maintaining cellular homeostasis and have been associated with the regulation of genes implicated in energy metabolism and oxidative stress response. Given its central role in such key biological pathways, understanding the regulation of FOXK2 itself is of significant interest.
The expression of FOXK2 can be influenced by various chemical compounds that act as activators, each exerting its effect through distinct molecular mechanisms. Compounds such as 5-Aza-2'-deoxycytidine can potentially induce expression by promoting demethylation of the FOXK2 gene promoter, thereby enhancing transcription. Histone deacetylase inhibitors like Trichostatin A may lead to a more relaxed chromatin state around the FOXK2 locus, permitting increased transcriptional activity. Meanwhile, chemicals that modulate signaling pathways, such as Forskolin which raises intracellular cAMP levels, might activate protein kinase A, subsequently stimulating FOXK2 expression. Similarly, compounds targeting the PI3K/AKT/mTOR pathway, such as Rapamycin and LY294002, could indirectly lead to elevated FOXK2 levels by altering the network of signals that govern its transcription. While these activators operate through a variety of mechanisms, each ultimately converges on the modulation of FOXK2 expression, highlighting the complexity of cellular regulation and the potential for fine-tuned control of gene activity. The interactions between these chemical activators and FOXK2 expression elucidate the sophisticated nature of genetic regulation and the potential for intricate control of cellular functions.
| 製品名 | CAS # | カタログ # | 数量 | 価格 | 引用文献 | レーティング |
|---|---|---|---|---|---|---|
5-Aza-2′-Deoxycytidine | 2353-33-5 | sc-202424 sc-202424A sc-202424B | 25 mg 100 mg 250 mg | $218.00 $322.00 $426.00 | 7 | |
このDNAメチル化酵素阻害剤は、プロモーター領域を脱メチル化する可能性があり、よりオープンなクロマチン状態によるFOXK2転写のアップレギュレーションにつながる可能性がある。 | ||||||
Retinoic Acid, all trans | 302-79-4 | sc-200898 sc-200898A sc-200898B sc-200898C | 500 mg 5 g 10 g 100 g | $66.00 $325.00 $587.00 $1018.00 | 28 | |
レチノイン酸は、FOXK2プロモーターに直接結合するレチノイド受容体を活性化し、FOXK2遺伝子の転写の増加を開始させる可能性がある。 | ||||||
Forskolin | 66575-29-9 | sc-3562 sc-3562A sc-3562B sc-3562C sc-3562D | 5 mg 50 mg 1 g 2 g 5 g | $78.00 $153.00 $740.00 $1413.00 $2091.00 | 73 | |
アデニルシクラーゼを活性化することにより、フォルスコリンはcAMPを増加させ、PKAとCREBを活性化し、FOXK2の転写活性化につながる。 | ||||||
Metformin-d6, Hydrochloride | 1185166-01-1 | sc-218701 sc-218701A sc-218701B | 1 mg 5 mg 10 mg | $292.00 $822.00 $1540.00 | 1 | |
メトホルミンはAMPKを活性化し、転写コアクチベーターのリン酸化を通じてFOXK2のような遺伝子の転写を促進することができる。 | ||||||
Sodium Butyrate | 156-54-7 | sc-202341 sc-202341B sc-202341A sc-202341C | 250 mg 5 g 25 g 500 g | $31.00 $47.00 $84.00 $222.00 | 19 | |
酪酸ナトリウムはヒストンのアセチル化レベルを上昇させ、クロマチン構造を緩めることによって、FOXK2を含む遺伝子の転写活性化を刺激する可能性がある。 | ||||||
Resveratrol | 501-36-0 | sc-200808 sc-200808A sc-200808B | 100 mg 500 mg 5 g | $80.00 $220.00 $460.00 | 64 | |
レスベラトロールはサーチュイン活性をアップレギュレートし、その結果、FOXO活性や他のサーチュインが介在するクロマチン修飾の変化によって、FOXK2の転写が促進される可能性がある。 | ||||||
Curcumin | 458-37-7 | sc-200509 sc-200509A sc-200509B sc-200509C sc-200509D sc-200509F sc-200509E | 1 g 5 g 25 g 100 g 250 g 1 kg 2.5 kg | $37.00 $69.00 $109.00 $218.00 $239.00 $879.00 $1968.00 | 47 | |
クルクミンは、転写因子を活性化することによって特定の遺伝子の発現を刺激することが示されており、同様のメカニズムでFOXK2の発現を増加させる可能性がある。 | ||||||