Literature DB >> 20692175

A genetically encoded sensor for H2O2 with expanded dynamic range.

Kseniya N Markvicheva1, Dmitry S Bilan, Natalia M Mishina, Andrey Yu Gorokhovatsky, Leonid M Vinokurov, Sergey Lukyanov, Vsevolod V Belousov.   

Abstract

Hydrogen peroxide is an important second messenger controlling intracellular signaling cascades by selective oxidation of redox active thiolates in proteins. Changes in intracellular [H(2)O(2)] can be tracked in real time using HyPer, a ratiometric genetically encoded fluorescent probe. Although HyPer is sensitive and selective for H(2)O(2) due to the properties of its sensing domain derived from the Escherichia coli OxyR protein, many applications may benefit from an improvement of the indicator's dynamic range. We here report HyPer-2, a probe that fills this demand. Upon saturating [H(2)O(2)] exposure, HyPer-2 undergoes an up to sixfold increase of the ratio F500/F420 versus a threefold change in HyPer. HyPer-2 was generated by a single point mutation A406V from HyPer corresponding to A233V in wtOxyR. This mutation was previously shown to destabilize interface between monomers in OxyR dimers. However, in HyPer-2, the A233V mutation stabilizes the dimer and expands the dynamic range of the probe.
Copyright © 2010 Elsevier Ltd. All rights reserved.

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Year:  2010        PMID: 20692175     DOI: 10.1016/j.bmc.2010.07.014

Source DB:  PubMed          Journal:  Bioorg Med Chem        ISSN: 0968-0896            Impact factor:   3.641


  48 in total

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10.  Fluorescent ratiometric pH indicator SypHer2: Applications in neuroscience and regenerative biology.

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