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A tri-functional vanadium(IV) complex to detect cysteine oxidation

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Title: A tri-functional vanadium(IV) complex to detect cysteine oxidation
Authors: Cilibrizzi, A
Fedorova, M
Collins, J
Leatherbarrow, R
Woscholski, R
Vilar, R
Item Type: Journal Article
Abstract: The development of effective molecular probes to detect and image the levels of oxidative stress in cells remains a challenge. Herein we report the design, synthesis and preliminary biological evaluation of a novel optical probe to monitor oxidation of thiol groups in cysteine-based phosphatases (CBPs). Following orthogonal protecting approaches we synthesised a new vanadyl complex designed to bind to CBPs. This complex is functionalised with a well-known dimedone derivative (to covalently trap sulfenic acids, SOHs) and a coumarin-based fluorophore for optical visualization. We show that this new probe efficiently binds to a range of phosphatases in vitro with nanomolar affinity. Moreover, preliminary flow cytometry and microscopy studies in live HCT116 cells show that this probe can successfully image cellular levels of sulfenic acids – one of the species resulting from protein oxidative damage.
Issue Date: 8-May-2017
Date of Acceptance: 5-May-2017
URI: http://hdl.handle.net/10044/1/49710
DOI: https://dx.doi.org/10.1039/c7dt00076f
ISSN: 1477-9226
Publisher: Royal Society of Chemistry
Start Page: 6994
End Page: 7004
Journal / Book Title: DALTON TRANSACTIONS
Volume: 46
Issue: 21
Copyright Statement: © 2017 The Royal Society of Chemistry.
Keywords: Science & Technology
Physical Sciences
Chemistry, Inorganic & Nuclear
Chemistry
PROTEIN-TYROSINE PHOSPHATASES
SULFENIC ACID FORMATION
REDOX-BASED PROBES
PYRIDINE-2,6-DICARBOXYLIC ACID
HYDROGEN-PEROXIDE
CHEMICAL PROBES
LIVING CELLS
DISCOVERY
TOOLS
STATE
0302 Inorganic Chemistry
0399 Other Chemical Sciences
Inorganic & Nuclear Chemistry
Publication Status: Published
Appears in Collections:Chemistry
Biological and Biophysical Chemistry
Faculty of Natural Sciences