PTPκ Inhibitors are a class of chemical compounds that target and inhibit the activity of protein tyrosine phosphatase kappa (PTPκ), an enzyme belonging to the protein tyrosine phosphatase (PTP) family. PTPκ is a transmembrane receptor-type phosphatase that plays a critical role in cellular signaling pathways by dephosphorylating specific tyrosine residues on target proteins. This dephosphorylation process is essential for regulating various cellular functions, including cell adhesion, migration, and signaling cascades involved in cell growth and differentiation. PTPκ is particularly noted for its involvement in the regulation of cadherin-mediated cell-cell adhesion, a fundamental process in maintaining tissue architecture and integrity.
The use of PTPκ Inhibitors in research allows scientists to investigate the complex signaling networks that PTPκ influences, particularly those related to cell-cell communication and the maintenance of epithelial cell integrity. By inhibiting PTPκ activity, researchers can explore the downstream effects on cadherin-mediated adhesion and how disruptions in this process can affect cellular behavior. These inhibitors are valuable tools for studying the dynamics of cell adhesion molecules and their role in tissue morphogenesis, wound healing, and cellular response to environmental changes. Additionally, PTPκ Inhibitors provide insights into the broader regulatory mechanisms of tyrosine phosphorylation and dephosphorylation in cellular signaling networks, offering a deeper understanding of how cells coordinate their functions and maintain homeostasis. Overall, PTPκ Inhibitors are critical for advancing knowledge in cell biology, particularly in areas related to cell adhesion, signaling, and the intricate balance of phosphorylation states that govern cellular processes.
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| Produkt | CAS # | Katalog # | Menge | Preis | Referenzen | Bewertung |
|---|---|---|---|---|---|---|
Deferoxamine | 70-51-9 | sc-507390 | 5 mg | $255.00 | ||
Chelatiert Eisen und kann indirekt die enzymatische Aktivität von PTPR beeinflussen. | ||||||
3-(3-Hydroxyphenyl)propionic acid | 621-54-5 | sc-275695 | 5 g | $109.00 | ||
Kann als Inhibitor für bestimmte PTPs wirken; kann die PTPR-Funktion beeinflussen. | ||||||
Perphenazine | 58-39-9 | sc-208161 | 100 mg | $190.00 | ||
Als Antipsychotikum kann es verschiedene zelluläre Signalwege beeinflussen und möglicherweise Off-Target-Effekte auf PTPR haben. | ||||||
Ethacrynic acid | 58-54-8 | sc-257424 sc-257424A | 1 g 5 g | $90.00 $300.00 | 5 | |
Hemmt bekanntermaßen einige PTPs und könnte hemmende Wirkungen auf PTPR haben. | ||||||
Troglitazone | 97322-87-7 | sc-200904 sc-200904B sc-200904A | 5 mg 10 mg 25 mg | $110.00 $204.00 $435.00 | 9 | |
Ein Antidiabetikum, das verschiedene zelluläre Signalwege beeinflussen und möglicherweise indirekt auf PTPR wirken kann. | ||||||
Zoledronic acid, anhydrous | 118072-93-8 | sc-364663 sc-364663A | 25 mg 100 mg | $92.00 $256.00 | 5 | |
Ein Bisphosphonat, das möglicherweise unerwünschte Wirkungen auf Protein-Tyrosin-Phosphatasen, einschließlich der PTPR-Aktivität, hat. | ||||||