The inhibitors of ICK (Intestinal Cell Kinase) represent a diverse group of compounds, primarily characterized by their ability to target kinase activity. ICK is a serine/threonine kinase involved in cell cycle control and ciliary dynamics. Given its role in essential cellular processes, the inhibition of ICK can provide insights into its functional mechanisms. The majority of the listed inhibitors, such as Staurosporine, 5-Iodotubercidin, and SP600125, function by competing with ATP for binding to the kinase domain of ICK. Staurosporine is a potent and broad-spectrum kinase inhibitor that blocks the ATP-binding site, a mechanism shared by several other inhibitors on the list, including H-89, Indirubin-3'-monoxime, and Harmine. These compounds inhibit ICK by preventing ATP from binding, thus inhibiting the phosphorylation activity crucial for kinase function.
Other inhibitors like Roscovitine, Purvalanol A, and Sunitinib have primary targets among cyclin-dependent kinases or receptor tyrosine kinases, but they also exhibit the potential to inhibit ICK. This cross-reactivity is due to the conserved nature of ATP-binding sites across different kinases. PD 98059 and SB 203580, while targeting MEK and p38 MAP kinase respectively, might exhibit off-target effects on ICK owing to their mode of action as kinase inhibitors. Sorafenib, a RAF kinase inhibitor, is included due to its potential for non-specific kinase inhibition, which could extend to ICK. These compounds, despite their varied primary targets, highlight the common strategies used to inhibit kinases - mainly through interference with ATP binding and phosphorylation activity.
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Product Name | CAS # | Catalog # | QUANTITY | Price | Citations | RATING |
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Sodium Orthovanadate | 13721-39-6 | sc-3540 sc-3540B sc-3540A | 5 g 10 g 50 g | $45.00 $56.00 $183.00 | 142 | |
Acts as a general inhibitor of ATPases, including Pma1p, by competing with phosphate groups and disrupting ATP hydrolysis. | ||||||
Bafilomycin A1 | 88899-55-2 | sc-201550 sc-201550A sc-201550B sc-201550C | 100 µg 1 mg 5 mg 10 mg | $96.00 $250.00 $750.00 $1428.00 | 280 | |
Known to inhibit V-ATPases but may also indirectly affect Pma1p by altering vacuolar and cellular pH homeostasis. | ||||||
Oligomycin | 1404-19-9 | sc-203342 sc-203342C | 10 mg 1 g | $146.00 $12250.00 | 18 | |
Targets mitochondrial ATP synthase; its impact on cellular energy levels can indirectly influence Pma1p function. | ||||||
N-Ethylmaleimide | 128-53-0 | sc-202719A sc-202719 sc-202719B sc-202719C sc-202719D | 1 g 5 g 25 g 100 g 250 g | $22.00 $68.00 $210.00 $780.00 $1880.00 | 19 | |
Reacts with sulfhydryl groups in proteins; can modify Pma1p and affect its activity through conformational changes. | ||||||
Diethylstilbestrol | 56-53-1 | sc-204720 sc-204720A sc-204720B sc-204720C sc-204720D | 1 g 5 g 25 g 50 g 100 g | $70.00 $281.00 $536.00 $1076.00 $2142.00 | 3 | |
A non-steroidal estrogen that can disrupt ion homeostasis; potentially affects Pma1p indirectly by altering cellular signaling pathways. | ||||||
Ethacrynic acid | 58-54-8 | sc-257424 sc-257424A | 1 g 5 g | $49.00 $229.00 | 5 | |
A diuretic that can inhibit various ion transporters and ATPases, potentially affecting Pma1p activity indirectly. | ||||||
Concanamycin A | 80890-47-7 | sc-202111 sc-202111A sc-202111B sc-202111C | 50 µg 200 µg 1 mg 5 mg | $65.00 $162.00 $650.00 $2550.00 | 109 | |
Primarily inhibits V-ATPases; may indirectly affect Pma1p activity by perturbing vacuolar acidification. | ||||||
DCC | 538-75-0 | sc-239713 sc-239713A | 25 g 100 g | $71.00 $204.00 | 3 | |
Binds to and inhibits several types of ATPases; could potentially affect Pma1p activity through nonspecific binding. | ||||||
Thapsigargin | 67526-95-8 | sc-24017 sc-24017A | 1 mg 5 mg | $94.00 $349.00 | 114 | |
A known SERCA pump inhibitor; could indirectly affect Pma1p by altering calcium homeostasis and cellular stress responses. | ||||||
Ionomycin | 56092-82-1 | sc-3592 sc-3592A | 1 mg 5 mg | $76.00 $265.00 | 80 | |
A calcium ionophore; indirectly influences Pma1p by disrupting calcium signaling and homeostasis in the cell. |