Literature DB >> 12940742

Modular and tunable chemosensor scaffold for divalent zinc.

Melissa D Shults1, Dierdre A Pearce, Barbara Imperiali.   

Abstract

A modular peptide scaffold has been developed for fluorescent sensing of divalent zinc. The signaling component of the chemosensor is the chelation-sensitive fluorophore 8-hydroxy-5-(N,N-dimethylsulfonamido)-2-methylquinoline, which is prepared as the protected amino acid derivative Fmoc-Sox-OH and integrated into peptide sequences. Nineteen synthetic peptides incorporating the signaling element exhibit a range of affinities for Zn(2+) through variation of the type and number of Zn(2+) ligands, ligand arrangement and the beta-turn sequence that acts as a preorganization element between the ligands. The stoichiometry of the peptide-Zn(2+) complexes is evaluated by several criteria. The fluorescence response of these peptides to pH and various important metal ions is reported. Eleven of these sequences form only 1:1 complexes with Zn(2+) and their affinities range from 10 nM to nearly 1 microM. When used in concert, these sensors can provide Zn(2+) concentration information in a valuable range.

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Year:  2003        PMID: 12940742     DOI: 10.1021/ja0355980

Source DB:  PubMed          Journal:  J Am Chem Soc        ISSN: 0002-7863            Impact factor:   15.419


  23 in total

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7.  A quick accelerating microwave-assisted sustainable technique: permutated spiro-casing for imaging experiment.

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8.  Sensing metal ions with DNA building blocks: fluorescent pyridobenzimidazole nucleosides.

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9.  A tautomeric zinc sensor for ratiometric fluorescence imaging: application to nitric oxide-induced release of intracellular zinc.

Authors:  Christopher J Chang; Jacek Jaworski; Elizabeth M Nolan; Morgan Sheng; Stephen J Lippard
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10.  Peptide-based Targeting of Fluorescent Zinc Sensors to the Plasma Membrane of Live Cells.

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Journal:  Chem Sci       Date:  2013-08-01       Impact factor: 9.825

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