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Mechanistic investigations reveal that dibromobimane extrudes sulfur from biological sulfhydryl sources other than hydrogen sulfide

Hydrogen sulfide (H(2)S) has emerged as an important biological signaling molecule in the last decade. During the growth of this field, significant controversy has arisen centered on the physiological concentrations of H(2)S. Recently, a monobromobimane (mBB) method has been developed for the quanti...

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Autores principales: Montoya, Leticia A., Shen, Xinggui, McDermott, James J., Kevil, Christopher G., Pluth, Michael D.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Royal Society of Chemistry 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4302847/
https://www.ncbi.nlm.nih.gov/pubmed/25632344
http://dx.doi.org/10.1039/c4sc01875c
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author Montoya, Leticia A.
Shen, Xinggui
McDermott, James J.
Kevil, Christopher G.
Pluth, Michael D.
author_facet Montoya, Leticia A.
Shen, Xinggui
McDermott, James J.
Kevil, Christopher G.
Pluth, Michael D.
author_sort Montoya, Leticia A.
collection PubMed
description Hydrogen sulfide (H(2)S) has emerged as an important biological signaling molecule in the last decade. During the growth of this field, significant controversy has arisen centered on the physiological concentrations of H(2)S. Recently, a monobromobimane (mBB) method has been developed for the quantification of different biologically-relevant sulfide pools. Based on the prevalence of the mBB method for sulfide quantification, we expand on this method to report the use of dibromobimane (dBB) for sulfide quantification. Reaction of H(2)S with dBB results in formation of highly-fluorescent bimane thioether (BTE), which is readily quantifiable by HPLC. Additionally, the reaction of sulfide with dBB to form BTE is significantly faster than the reaction of sulfide with mBB to form sulfide dibimane. Using the dBB method, BTE levels as low as 0.6 pM can be detected. Upon use of the dBB method in wild-type and CSE(–/–) mice, however, dBB reports significantly higher sulfide levels than those measured using mBB. Further investigation revealed that dBB is able to extract sulfur from other sulfhydryl sources including thiols. Based on mechanistic studies, we demonstrate that dBB extracts sulfur from thiols with α- or β-hydrogens, thus leading to higher BTE formation than from sulfide alone. Taken together, the dBB method is a highly sensitive method for H(2)S but is not compatible for use in studies in which other thiols are present.
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spelling pubmed-43028472015-01-26 Mechanistic investigations reveal that dibromobimane extrudes sulfur from biological sulfhydryl sources other than hydrogen sulfide Montoya, Leticia A. Shen, Xinggui McDermott, James J. Kevil, Christopher G. Pluth, Michael D. Chem Sci Chemistry Hydrogen sulfide (H(2)S) has emerged as an important biological signaling molecule in the last decade. During the growth of this field, significant controversy has arisen centered on the physiological concentrations of H(2)S. Recently, a monobromobimane (mBB) method has been developed for the quantification of different biologically-relevant sulfide pools. Based on the prevalence of the mBB method for sulfide quantification, we expand on this method to report the use of dibromobimane (dBB) for sulfide quantification. Reaction of H(2)S with dBB results in formation of highly-fluorescent bimane thioether (BTE), which is readily quantifiable by HPLC. Additionally, the reaction of sulfide with dBB to form BTE is significantly faster than the reaction of sulfide with mBB to form sulfide dibimane. Using the dBB method, BTE levels as low as 0.6 pM can be detected. Upon use of the dBB method in wild-type and CSE(–/–) mice, however, dBB reports significantly higher sulfide levels than those measured using mBB. Further investigation revealed that dBB is able to extract sulfur from other sulfhydryl sources including thiols. Based on mechanistic studies, we demonstrate that dBB extracts sulfur from thiols with α- or β-hydrogens, thus leading to higher BTE formation than from sulfide alone. Taken together, the dBB method is a highly sensitive method for H(2)S but is not compatible for use in studies in which other thiols are present. Royal Society of Chemistry 2015-01-01 2014-10-10 /pmc/articles/PMC4302847/ /pubmed/25632344 http://dx.doi.org/10.1039/c4sc01875c Text en This journal is © The Royal Society of Chemistry 2015 http://creativecommons.org/licenses/by/3.0/ This article is freely available. This article is licensed under a Creative Commons Attribution 3.0 Unported Licence (CC BY 3.0)
spellingShingle Chemistry
Montoya, Leticia A.
Shen, Xinggui
McDermott, James J.
Kevil, Christopher G.
Pluth, Michael D.
Mechanistic investigations reveal that dibromobimane extrudes sulfur from biological sulfhydryl sources other than hydrogen sulfide
title Mechanistic investigations reveal that dibromobimane extrudes sulfur from biological sulfhydryl sources other than hydrogen sulfide
title_full Mechanistic investigations reveal that dibromobimane extrudes sulfur from biological sulfhydryl sources other than hydrogen sulfide
title_fullStr Mechanistic investigations reveal that dibromobimane extrudes sulfur from biological sulfhydryl sources other than hydrogen sulfide
title_full_unstemmed Mechanistic investigations reveal that dibromobimane extrudes sulfur from biological sulfhydryl sources other than hydrogen sulfide
title_short Mechanistic investigations reveal that dibromobimane extrudes sulfur from biological sulfhydryl sources other than hydrogen sulfide
title_sort mechanistic investigations reveal that dibromobimane extrudes sulfur from biological sulfhydryl sources other than hydrogen sulfide
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4302847/
https://www.ncbi.nlm.nih.gov/pubmed/25632344
http://dx.doi.org/10.1039/c4sc01875c
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