NicSnap1 inhibitors are a class of chemical compounds that interact with the NicSnap1 protein, a crucial component in cellular signaling pathways. These inhibitors are known for their ability to modulate specific biochemical interactions by selectively binding to the NicSnap1 protein, leading to a reduction in its activity. This modulation affects downstream pathways associated with various intracellular processes, including protein synthesis, cellular stress responses, and energy metabolism. The molecular structure of NicSnap1 inhibitors typically includes diverse chemical scaffolds that allow for a high degree of specificity in targeting NicSnap1. These compounds are designed to maintain strong binding affinity to the NicSnap1 active site, which is often facilitated by hydrophobic interactions, hydrogen bonding, and van der Waals forces, depending on the specific inhibitor's architecture.
NicSnap1 inhibitors can exhibit varied physicochemical properties, such as differing solubility, stability, and permeability, which can be fine-tuned during the development process. Researchers often investigate these properties to ensure the inhibitors perform well in controlled laboratory environments, particularly in experiments involving biochemical assays and protein interaction studies. The development of NicSnap1 inhibitors typically focuses on optimizing key parameters such as binding selectivity and minimization of off-target effects to better understand the mechanistic pathways of NicSnap1. Their distinct molecular makeup provides an important tool for studying the functional role of NicSnap1 in various biological processes, enabling detailed investigations into the protein's structural and functional dynamics in cellular systems.
Produkt | CAS # | Katalog # | Menge | Preis | Referenzen | Bewertung |
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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 | |
Hemmt die V-ATPase, was den Vesikeltransport und die Freisetzung von Neurotransmittern beeinträchtigen kann. | ||||||
Latrunculin A, Latrunculia magnifica | 76343-93-6 | sc-202691 sc-202691B | 100 µg 500 µg | $260.00 $799.00 | 36 | |
Unterbricht die Aktinpolymerisation, was möglicherweise die Dynamik synaptischer Vesikel und die Integrität von Neuronen beeinflusst. | ||||||
Wortmannin | 19545-26-7 | sc-3505 sc-3505A sc-3505B | 1 mg 5 mg 20 mg | $66.00 $219.00 $417.00 | 97 | |
PI3K-Inhibitor, könnte sich auf Signalwege auswirken, die am Zellüberleben und an der synaptischen Funktion beteiligt sind. | ||||||
Anisomycin | 22862-76-6 | sc-3524 sc-3524A | 5 mg 50 mg | $97.00 $254.00 | 36 | |
Hemmt die Proteinsynthese, was die Funktion der Neuronen und die synaptische Plastizität beeinträchtigen kann. | ||||||
KN-93 | 139298-40-1 | sc-202199 | 1 mg | $178.00 | 25 | |
Hemmt CaMKII und beeinflusst möglicherweise die Kalzium-Signalübertragung und die synaptische Stärke. | ||||||
PD 98059 | 167869-21-8 | sc-3532 sc-3532A | 1 mg 5 mg | $39.00 $90.00 | 212 | |
MEK-Inhibitor, könnte den MAPK/ERK-Signalweg beeinflussen, der an der synaptischen Plastizität und der Gedächtnisbildung beteiligt ist. | ||||||
FK-506 | 104987-11-3 | sc-24649 sc-24649A | 5 mg 10 mg | $76.00 $148.00 | 9 | |
Hemmt Calcineurin, was sich möglicherweise auf die Aktivierung von T-Zellen und die Neuroinflammation auswirkt. | ||||||
LY 294002 | 154447-36-6 | sc-201426 sc-201426A | 5 mg 25 mg | $121.00 $392.00 | 148 | |
Hemmt PI3K und könnte sich auf verschiedene Signalwege auswirken, die am Zellwachstum und -überleben beteiligt sind. | ||||||
Cyclosporin A | 59865-13-3 | sc-3503 sc-3503-CW sc-3503A sc-3503B sc-3503C sc-3503D | 100 mg 100 mg 500 mg 10 g 25 g 100 g | $62.00 $90.00 $299.00 $475.00 $1015.00 $2099.00 | 69 | |
Calcineurin-Inhibitor, könnte die Immunantwort und die Neuroprotektion beeinflussen. | ||||||
SB 203580 | 152121-47-6 | sc-3533 sc-3533A | 1 mg 5 mg | $88.00 $342.00 | 284 | |
p38 MAPK-Inhibitor, könnte Entzündungsreaktionen und zelluläre Stresswege beeinflussen. |