SODIUM DICHROMATE

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CAS: 10588-01-9
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Synonyms: SODIUM DICHROMATE

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Guolin Wu

Nankai University
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Jianguo Fang

Lanzhou University
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Co-reporter: Pengcheng Zhou, Juan Yao, Guodong Hu, and Jianguo Fang
pp: 1098
Publication Date(Web):January 27, 2016
DOI: 10.1021/acschembio.5b00856
Reversible thiol modifications are fundamental of cellular redox regulation. Specific thiol detection, including thiol sensing and protein thiols labeling, is critical to study such modifications. We reported the discovery of 4-methylsulfonyl-N-n-butyl-1,8-naphthalimide (MSBN), a highly selective fluorogenic probe for thiols based on the 1,8-naphthalimide scaffold. Thiols react with MSBN nearly quantitatively via nucleophilic aromatic substitution to replace the methylsulfonyl group and restore the quenched fluorescence (>100-fold increase). MSBN was employed to selectively image thiols in live cells and specifically label protein thiols with a turn-on signal to determine diverse reversible protein thiol modifications. In addition, we introduced a bulky group into the MSBN as a mass tag to create a probe MSBN-TPP, which readily discriminates the reduced thioredoxin from the oxidized one. The specific reaction of MSBN with thiols and the easy manipulation of the naphthalimide unit enable MSBN a versatile scaffold in developing novel probes for thiol-based protein bioconjugation and studying various thiol modifications.

Fillmore Freeman

University of California
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Hening Lin

Cornell University
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Clive R. Clayton

Stony Brook University
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Gary Halada

Stony Brook University
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J. Mathias Weber

University of Colorado
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Ning Zhao

Institute of Chemistry, Chinese Academy of Sciences
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Jian Zheng

Institute of Chemistry
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Derek Pletcher

The University
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