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Manipulating Reduction Potentials in an Artificial Safranin Cofactor.


ABSTRACT: Safranines hold great promise as artificial flavin-like electron transfer cofactors with tunable properties. We report the design and chemical synthesis of the p-methoxy derivative of safranine O using a new synthetic route based on the Ulmann condensation. Spectroelectrochemical comparison of the purified parent safranine and this derivative demonstrates that the modification increases its two-electron reduction potential by 125 mV, or 5.75 kcal/mol. This modification also causes redshifts in the absorbance and fluorescence spectra of the cofactor, suggesting that it may find future utility in arrayed sensor applications.

SUBMITTER: Raju G 

PROVIDER: S-EPMC3546352 | biostudies-literature | 2012 Mar

REPOSITORIES: biostudies-literature

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Manipulating Reduction Potentials in an Artificial Safranin Cofactor.

Raju Gheevarghese G   Capo Joseph J   Lichtenstein Bruce R BR   Cerda Jose F JF   Koder Ronald L RL  

Tetrahedron letters 20111214 10


Safranines hold great promise as artificial flavin-like electron transfer cofactors with tunable properties. We report the design and chemical synthesis of the p-methoxy derivative of safranine O using a new synthetic route based on the Ulmann condensation. Spectroelectrochemical comparison of the purified parent safranine and this derivative demonstrates that the modification increases its two-electron reduction potential by 125 mV, or 5.75 kcal/mol. This modification also causes redshifts in t  ...[more]

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