Items 1 to 10 of 11 total
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Product Name | CAS # | Catalog # | QUANTITY | Price | Citations | RATING |
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Zinc | 7440-66-6 | sc-213177 | 100 g | $47.00 | ||
Zinc ions from zinc acetate can bind to the histidine residues in OR2W1, which are often involved in the binding of ligands or maintaining protein structure, thereby inhibiting the proper function of the protein. | ||||||
Copper(II) sulfate | 7758-98-7 | sc-211133 sc-211133A sc-211133B | 100 g 500 g 1 kg | $45.00 $120.00 $185.00 | 3 | |
Copper from Copper(II) sulfate can similarly bind to key histidine residues on OR2W1, leading to conformational changes that inhibit its ability to bind to odorant molecules or transduce signals. | ||||||
Chloroquine | 54-05-7 | sc-507304 | 250 mg | $68.00 | 2 | |
Chloroquine integrates into cellular membranes, potentially altering the membrane properties and lipid environment of OR2W1, which is critical for maintaining its conformation and function. | ||||||
Lidocaine | 137-58-6 | sc-204056 sc-204056A | 50 mg 1 g | $50.00 $128.00 | ||
Lidocaine stabilizes inactive conformations of sodium channels. Since OR2W1 relies on proper membrane potential for its activity, lidocaine can inhibit the protein's function by altering the electrical signals necessary for OR2W1 activity. | ||||||
Quinine | 130-95-0 | sc-212616 sc-212616A sc-212616B sc-212616C sc-212616D | 1 g 5 g 10 g 25 g 50 g | $77.00 $102.00 $163.00 $347.00 $561.00 | 1 | |
Quinine is known for blocking ion channels. By disrupting ion fluxes, quinine can inhibit the ion-mediated signal transduction that OR2W1 depends on, thereby inhibiting its function. | ||||||
Ruthenium red | 11103-72-3 | sc-202328 sc-202328A | 500 mg 1 g | $184.00 $245.00 | 13 | |
Ruthenium red inhibits calcium channels. Since OR2W1 activity is likely dependent on calcium-mediated signaling pathways, inhibition of these channels by ruthenium red can inhibit the function of OR2W1. | ||||||
Verapamil | 52-53-9 | sc-507373 | 1 g | $367.00 | ||
Verapamil is a calcium channel blocker, which would prevent calcium influx necessary for OR2W1 function. Inhibiting these channels can disrupt the calcium signaling that OR2W1 requires for its activity. | ||||||
Diltiazem | 42399-41-7 | sc-204726 sc-204726A | 1 g 5 g | $209.00 $464.00 | 4 | |
Diltiazem, as a calcium channel blocker, can inhibit the influx of calcium ions that OR2W1 depends on for its signaling cascade, thus functionally inhibiting the protein. | ||||||
Amiloride | 2609-46-3 | sc-337527 | 1 g | $290.00 | 7 | |
Amiloride inhibits sodium channels, which can disrupt the sodium ion homeostasis and membrane potential critical for the function of OR2W1. By altering these properties, amiloride can inhibit the protein's activity. | ||||||
Nifedipine | 21829-25-4 | sc-3589 sc-3589A | 1 g 5 g | $58.00 $170.00 | 15 | |
Nifedipine is a calcium channel blocker, and by inhibiting these channels, it can prevent the calcium ion signaling that is necessary for the function of OR2W1, thus inhibiting the protein. |