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The interactions between the fluorescent dye thiazole orange and DNA

✍ Scribed by Jan Nygren; Nicke Svanvik; Mikael Kubista


Publisher
Wiley (John Wiley & Sons)
Year
1998
Tongue
English
Weight
303 KB
Volume
46
Category
Article
ISSN
0006-3525

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✦ Synopsis


The interaction of the fluorescent dye thiazole orange (TO) with nucleic acids is characterized. It is found that TO binds with highest affinity to double-stranded (ds) DNA [log(K) Γ‰ 5.5 at 100 mM salt], about 5-10 times weaker to single-stranded polypurines, and further 10-1000 times weaker to single-stranded polypyrimidines. TO binds as a monomer to dsDNAs and poly(dA), both as a monomer and as a dimer to poly(dG) and mainly as a dimer to poly(dC) and poly(dT). The fluorescence quantum yield of TO free in solution is about 2r10 04 , and it increases to about 0.1 when bound to dsDNA or to poly(dA), and to about 0.4 when bound to poly (dG). Estimated quantum yields of TO bound to poly(dC) and poly(dT) are about 0.06 and 0.01, respectively. The quantum yield of bound TO depends on temperature and decreases about threefold between 5 and 50ЊC.


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Complexes of the two thiazole orange derivatives TO6 [1-( N,N-tetramethyl-1,3-propanediaminopropyl )-4-[3-methyl-2,3-dihydro(benzo-1,3-thiazole )-2methylidene] quinolinium triiodide] and TOTO [1,1 -(4,4,8,8-tetramethyl-4,8-diazaundecamethylene)bis-4-[3-methyl-2,3-dihydro(benzo-1,3-thiazole)-2-methyl