The PICK1 PDZ Domain Inhibitor, FSC231 controls the biological activity of PICK1. This small molecule/inhibitor is primarily used for Neuroscience applications.
A cell-permeable acryloylcarbamate compound that selectively targets the PDZ (PSD-95/Discs-large/ZO-1 homology) domain of PICK1 (protein interacting with C kinase 1), but not PDZ domains of PSD-95 (postsynaptic density protein 95) and GRIP1 (glutamate receptor interacting protein 1), effectively competing against dopamine transporter/DAT (Ki ~10 µM in competitive binding assays), GluR2 (Ki ~10 µM in competitive binding assays), and mRluR7a (~70% inhibition by Co-IP using lysates from 50 µM FSC231-treated HEK293), c-terminus binding to PICK1 PDZ. Shown to accelerate GluR2 surface recycling after NMDR-induced internalization (t1/2 = 7.5 vs 10 min with and without 50 µM FSC231 treatment) in rat hippocampal neurons and prevent both LTD (% long-term depression = 74 vs 50 with and without 50 µM FSC231 treatment) and LTP (% long-term potentiation = 137 vs 266 with and without 50 µM FSC231 treatment) in murine hippocampal slices.
Envase
Packaged under inert gas
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Toxicity: Regulatory Review (Z)
Reconstitución
Following reconsitution, aliquot and freeze (-20°C). Stock solutions are stable for up to 6 months at -20°C.
Otras notas
Thorsen, T.S., et al. 2010. Proc. Natl. Acad. Sci. USA107, 413.
Información legal
CALBIOCHEM is a registered trademark of Merck KGaA, Darmstadt, Germany
Código de clase de almacenamiento
11 - Combustible Solids
Clase de riesgo para el agua (WGK)
WGK 3
Punto de inflamabilidad (°F)
Not applicable
Punto de inflamabilidad (°C)
Not applicable
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BioMed research international, 2021, 9884297-9884297 (2021-07-27)
We performed in vitro and in vivo experiments to explore the role of protein kinase C-binding protein 1 (PICK1), an intracellular transporter involved in oxidative stress-related neuronal diseases, in sepsis-related acute kidney injury (AKI). Firstly, PCR, western blotting, and immunohistochemistry
Muscarinic acetylcholine receptors (mAChRs) have been shown to play significant roles in the regulation of normal cognitive processes in the hippocampus, and α-amino-3-hydroxy-5-methyl-4-isoxazolepropionic acid receptors (AMPARs) are also involved in these processes. This study aims to explore the mAChR-mediated regulation
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