Bis-Q
Bis-Q is an acetylcholine (ACh) agonist that targets voltage-clamped muscle fibers of the fish Xenomystus nigris. Bis-Q exists in two forms: cis-Bis-Q (non-agonist) and trans-Bis-Q (agonist). Photoisomerization converts cis-Bis-Q to trans-Bis-Q, which induces agonist-induced currents. Channels activated by trans-Bis-Q and ACh have similar conductances and open times. Flashes increase the ratio of trans-Bis-Q to cis-Bis-Q until light equilibrium is reached. Further flashes transiently increase agonist-induced currents, indicating binding of trans-Bis-Q to desensitized receptors. Higher concentrations of cis-Bis-Q produce larger agonist-induced currents that decay exponentially..
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- CAS No.: 73711-18-9
- Formule: C20H30I2N4
- Masse moléculaire:580.29
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Stockage:
Please store the product under the recommended conditions in the Certificate of Analysis.
Activité biologique
Description
Chemical Information
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CAS No. 73711-18-9
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Masse moléculaire 580.29
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Formule C20H30I2N4
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SMILES
C[N+](C)(CC1=CC=C(C=C1)/N=N/C2=CC=C(C=C2)C[N+](C)(C)C)C.[I-].[I-]
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Livraison
Room temperature in continental US; may vary elsewhere.
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Stockage
Please store the product under the recommended conditions in the Certificate of Analysis.
Protocole
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Protocol for Fluorescence In Situ Hybridization (FISH)
Fluorescence in situ hybridization detects specific DNA or RNA sequences inside fixed cells or tissue sections by hybridizing fluorescently labeled nucleic-acid probes to complementary target sequences, allowing the target’s copy number, chromosomal position, spatial distribution, or transcript abundance to be visualized microscopically. DNA-FISH detects genomic loci, chromosomal gains/losses, amplifications, deletions, and rearrangements, while RNA-FISH detects RNA molecules or transcript localization; in cancer cells, mouse tumors, neurons, organoids, macrophages, or drug-screening samples, the readout is fluorescent puncta, fusion/split signals, or localized RNA signal interpreted relative to validated controls.
Pureté et documentation
Références
Calculators
Concentration (start) × Volume (start) = Concentration (final) × Volume (final)