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A5806 Sigma

9-Amino-6-chloro-2-methoxyacridine

suitable for fluorescence, ≥95%

Synonym: ACMA

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Properties

Related Categories Biochemicals and Reagents, Fluorescent Labels, Fluorescent Probes, Labels, Particles and Stains, Luminescent Compounds/Detection, Other Fluorescent Labels,
assay   ≥95%
suitability   suitable for fluorescence
storage temp.   −20°C

Description

Packaging

25 mg in glass bottle

Price and Availability

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Safety & Documentation

Safety Information

Symbol 
Signal word 
Warning
Hazard statements 
Precautionary statements 
Hazard Codes (Europe) 
Xn
Risk Statements (Europe) 
Safety Statements (Europe) 
22-26-36
WGK Germany 
3
RTECS 
AR7330000

Documents

Certificate of Analysis

Certificate of Origin

Protocols & Articles

Peer-Reviewed Papers

References

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Proton pumping of mitochondrial complex I: differential activation by analogs of ubiquinone. Helfenbaum L, Ngo A, Ghelli A, et al. J. Bioenerg. Biomembr. 29(1), 71-80, (1997)

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Catalytic activities of mitochondrial ATP synthase in patients with mitochondrial DNA T8993G mutation in the ATPase 6 gene encoding subunit a. Baracca A, Barogi S, Carelli V, et al. J. Biol. Chem. 275(6), 4177-82, (2000)

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The acridine ring selectively intercalated into a DNA helix at various types of abasic sites: double strand formation and photophysical properties. Fukui K and Tanaka K Nucleic Acids Res. 24(20), 3962-7, (1996)

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Chromophore/DNA interactions: femto- to nanosecond spectroscopy, NMR structure, and electron transfer theory. von Feilitzsch T, Tuma J, Neubauer H, et al. J. Phys. Chem. B 112(3), 973-89, (2008)

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Design of phosphoramidite monomer for optimal incorporation of functional intercalator to main chain of oligonucleotide. Shi Y, Machida K, Kuzuya A, et al. Bioconjug. Chem. 16(2), 306-11, (2005)

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Coupling of a competitive and an irreversible ligand generates mixed type inhibitors of Trypanosoma cruzi trypanothione reductase. Inhoff O, Richards JM, Brîet JW, et al. J. Med. Chem. 45(20), 4524-30, (2002)

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Characterization of the ion transport activity of the budding yeast Na+/H+ antiporter, Nha1p, using isolated secretory vesicles. Ohgaki R, Nakamura N, Mitsui K, et al. Biochim. Biophys. Acta 1712(2), 185-96, (2005)

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Copper transport and compartmentation in grape cells. Martins V, Hanana M, Blumwald E, et al. Plant Cell Physiol. 53(11), 1866-80, (2012)

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ATP synthase that lacks F0a-subunit: isolation, properties, and indication of F0b2-subunits as an anchor rail of a rotating c-ring. Ono S, Sone N, Yoshida M, et al. J. Biol. Chem. 279(32), 33409-12, (2004)

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The decay of the ATPase activity of light plus thiol-activated thylakoid membranes in the dark. McCarty RE J. Bioenerg. Biomembr. 38(1), 67-74, (2006)

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Acridine derivatives as anti-BVDV agents. Tonelli M, Vettoretti G, Tasso B, et al. Antiviral Res. 91(2), 133-41, (2011)

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Excited-state photophysics of an acridine derivative selectively intercalated in duplex DNA. Hess S, Davis WB, Voityuk AA, et al. ChemPhysChem 3(5), 452-5, (2002)

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On the apparently anomalous distance dependence of charge-transfer rates in 9-amino-6-chloro-2-methoxyacridine-modified DNA. Hess S, Götz M, Davis WB, et al. J. Am. Chem. Soc. 123(41), 10046-55, (2001)

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Intrinsic uncoupling in the ATP synthase of Escherichia coli. D'Alessandro M, Turina P, and Melandri BA Biochim. Biophys. Acta 1777(12), 1518-27, (2008)

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Distance-dependent activation energies for hole injection from protonated 9-amino-6-chloro-2-methoxyacridine into duplex DNA. Davis WB, Hess S, Naydenova I, et al. J. Am. Chem. Soc. 124(11), 2422-3, (2002)

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ACMA (9-amino-6-chloro-2-methoxy acridine) forms three complexes in the presence of DNA. Busto N, García B, Leal JM, et al. Phys. Chem. Chem. Phys. 13(43), 19534-45, (2011)

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Ultrafast purification and reconstitution of His-tagged cysteine-less Escherichia coli F1Fo ATP synthase. Ishmukhametov RR, Galkin MA, and Vik SB Biochim. Biophys. Acta 1706(1-2), 110-6, (2005)

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Physiological ligands ADP and Pi modulate the degree of intrinsic coupling in the ATP synthase of the photosynthetic bacterium Rhodobacter capsulatus. Turina P, Giovannini D, Gubellini F, et al. Biochemistry 43(34), 11126-34, (2004)

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ATP synthase from bovine heart mitochondria: reconstitution into unilamellar phospholipid vesicles of the pure enzyme in a functional state. Groth G and Walker JE Biochem. J. 318 ( Pt 1), 351-7, (1996)

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The mode of binding ACMA-DNA relies on the base-pair nature. Busto N, García B, Leal JM, et al. Org. Biomol. Chem. 10(13), 2594-602, (2012)

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Short term toxicity effect of dimethoate on transthylakoid pH gradient of intact Synechocystis sp. PCC 6803 cells. Mohapatra PK, Schubert H, and Schiewer U Bull. Environ. Contam. Toxicol. 57(5), 722-8, (1996)

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Protein-free parallel triple-stranded DNA complex formation. Shchyolkina AK, Timofeev EN, Lysov YP, et al. Nucleic Acids Res. 29(4), 986-95, (2001)

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F0 complex of the Escherichia coli ATP synthase. Not all monomers of the subunit c oligomer are involved in F1 interaction. Birkenhäger R, Greie JC, Altendorf K, et al. Eur. J. Biochem. 264(2), 385-96, (1999)

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Role of Asp544 in subunit I for Na(+) pumping by Vitreoscilla cytochrome bo. Chung YT, Stark BC, and Webster DA Biochem. Biophys. Res. Commun. 348(4), 1209-14, (2006)

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Antimalarial in-vivo activity of bis(9-amino-6-chloro-2-methoxyacridines). Girault S, Delarue S, Grellier P, et al. J. Pharm. Pharmacol. 53(7), 935-8, (2001)

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