NPPB,chloride channel blocker
NPPB, chloride channel blocker
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MW 300.31 Da, Purity >99%. Potent chloride channel blocker (IC50 = 80 nM). GPR35 agonist. Able to uncouple mitochondria. Active in vivo.
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(R)-limonene 6-monooxygenase, (S)-limonene 6-monooxygenase, (S)-limonene 7-monooxygenase, AI413597, AW045860, CP2C9_HUMAN, CPC9, CYP2C, CYP2C10, CYPIIC9, Cytochrome P-450MP, Cytochrome P450 2C9, Cytochrome P450 MP-4, Cytochrome P450 MP-8, Cytochrome P450 PB-1, Cytochrome P450, family 2, subfamily C, polypeptide 9, DDPAC, FLJ31424, FTDP 17, G protein beta1/gamma2 subunit interacting factor 1, MAPT, MAPTL, MGC134287, MGC138549, MGC149605, MGC156663, MGC88320, MSTD, MTBT1, MTBT2, Microsomal monooxygenase, Microtubule associated protein tau isoform 4, Microtubule-associated protein tau, Mtapt, Neurofibrillary tangle protein, OTTHUMP00000020135, P450 MP, P450 PB 1, P450IIC9, PHF-tau, PPND, PPP1R103, Paired helical filament-tau, Protein phosphatase 1, regulatory subunit 103, RNPTAU, S-mephenytoin 4-hydroxylase, TAU_HUMAN, Tauopathy and respiratory failure, Tauopathy and respiratory failure, included, Xenobiotic monooxygenase, cytochrome P-450 S-mephenytoin 4-hydroxylase, flavoprotein-linked monooxygenase, pTau
- Chemical Structure
Lab
Chemical Structure - NPPB, chloride channel blocker (AB141521)
2D chemical structure image of ab141521, NPPB, chloride channel blocker
性能和储存信息
运输条件
推荐的短期储存条件
推荐的长期储存条件
储存信息
补充信息
This supplementary information is collated from multiple sources and compiled automatically.
Biological function summary
Tau protein significantly contributes to the maintenance and stabilization of neuronal microtubules supporting axonal transport. In its functional state Tau binds to microtubules and assists in their assembly. Tau can undergo several post-translational modifications which can affect its binding efficiency and stability. Despite being a single protein Tau interacts extensively with other cytoskeletal elements closely influencing cellular architecture and function.
Pathways
Tau protein integrates into important signaling pathways such as the MAPK (mitogen-activated protein kinase) pathway and the PI3K/AKT pathway. These pathways influence cell growth survival and differentiation. Tau can phosphorylate through these pathways altering its interaction with microtubules. The protein also collaborates with other cytoskeletal proteins and kinases within these pathways particularly influencing neuronal signaling and structure.
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