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In situ formation of the first proteinogenically functionalized [TeW(6)O(24)O(2)(Glu)](7–) structure reveals unprecedented chemical and geometrical features of the Anderson-type cluster

The chemistry of polyoxometalates (POMs) in a protein environment is an almost unexplored but highly relevant research field as important biological and pharmacological attributes of certain POMs are based on their interactions with proteins. We report on the A-type Anderson–Evans polyoxotungstate,...

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Autores principales: Molitor, Christian, Bijelic, Aleksandar, Rompel, Annette
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Royal Society of Chemistry 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5066560/
https://www.ncbi.nlm.nih.gov/pubmed/27722437
http://dx.doi.org/10.1039/c6cc07004c
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author Molitor, Christian
Bijelic, Aleksandar
Rompel, Annette
author_facet Molitor, Christian
Bijelic, Aleksandar
Rompel, Annette
author_sort Molitor, Christian
collection PubMed
description The chemistry of polyoxometalates (POMs) in a protein environment is an almost unexplored but highly relevant research field as important biological and pharmacological attributes of certain POMs are based on their interactions with proteins. We report on the A-type Anderson–Evans polyoxotungstate, [TeW(6)O(24)](6–) (TEW), mediated crystallization of Coreopsis grandiflora aurone synthase (cgAUS1) using ∼0.24 mM protein and 1.0 mM TEW. The 1.78 Å crystal structure reveals the covalent binding of TEW to the protein under the formation of an unprecedented polyoxotungstate cluster, [TeW(6)O(24)O(2)(Glu)](7–) (GluTEW). The polyoxotungstate–protein complex exhibits the first covalent bond between a protein and the A-type Anderson–Evans cluster, an archetype where up to now no hybrid structures exist. The polyoxotungstate is modified at two of its six addenda tungsten atoms, which covalently bind to the carboxylic oxygen atoms of glutamic acid (Glu157), leading to W–O distances of ∼2.35 Å. This ligand substitution reaction is accompanied by a reduction of the coordination number of two μ(3) polyoxotungstate oxygen atoms. This is so far unique since all known hybridizations of the Anderson–Evans POM with organic units have been obtained via the functionalization of the B-type Anderson–Evans structure through its bridging oxygen atoms. The structure reported here proves the reactivity of this POM archetype's addenda atoms as it has been administered into the protein solution as a pre-assembled cluster. Moreover, the novel cluster [TeW(6)O(24)O(2)(Glu)](7–) displays the great versatility of the Anderson–Evans POM class.
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spelling pubmed-50665602016-10-19 In situ formation of the first proteinogenically functionalized [TeW(6)O(24)O(2)(Glu)](7–) structure reveals unprecedented chemical and geometrical features of the Anderson-type cluster Molitor, Christian Bijelic, Aleksandar Rompel, Annette Chem Commun (Camb) Chemistry The chemistry of polyoxometalates (POMs) in a protein environment is an almost unexplored but highly relevant research field as important biological and pharmacological attributes of certain POMs are based on their interactions with proteins. We report on the A-type Anderson–Evans polyoxotungstate, [TeW(6)O(24)](6–) (TEW), mediated crystallization of Coreopsis grandiflora aurone synthase (cgAUS1) using ∼0.24 mM protein and 1.0 mM TEW. The 1.78 Å crystal structure reveals the covalent binding of TEW to the protein under the formation of an unprecedented polyoxotungstate cluster, [TeW(6)O(24)O(2)(Glu)](7–) (GluTEW). The polyoxotungstate–protein complex exhibits the first covalent bond between a protein and the A-type Anderson–Evans cluster, an archetype where up to now no hybrid structures exist. The polyoxotungstate is modified at two of its six addenda tungsten atoms, which covalently bind to the carboxylic oxygen atoms of glutamic acid (Glu157), leading to W–O distances of ∼2.35 Å. This ligand substitution reaction is accompanied by a reduction of the coordination number of two μ(3) polyoxotungstate oxygen atoms. This is so far unique since all known hybridizations of the Anderson–Evans POM with organic units have been obtained via the functionalization of the B-type Anderson–Evans structure through its bridging oxygen atoms. The structure reported here proves the reactivity of this POM archetype's addenda atoms as it has been administered into the protein solution as a pre-assembled cluster. Moreover, the novel cluster [TeW(6)O(24)O(2)(Glu)](7–) displays the great versatility of the Anderson–Evans POM class. Royal Society of Chemistry 2016-10-25 2016-09-06 /pmc/articles/PMC5066560/ /pubmed/27722437 http://dx.doi.org/10.1039/c6cc07004c Text en This journal is © The Royal Society of Chemistry 2016 http://creativecommons.org/licenses/by/3.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution 3.0 Unported License (http://creativecommons.org/licenses/by/3.0/) which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Chemistry
Molitor, Christian
Bijelic, Aleksandar
Rompel, Annette
In situ formation of the first proteinogenically functionalized [TeW(6)O(24)O(2)(Glu)](7–) structure reveals unprecedented chemical and geometrical features of the Anderson-type cluster
title In situ formation of the first proteinogenically functionalized [TeW(6)O(24)O(2)(Glu)](7–) structure reveals unprecedented chemical and geometrical features of the Anderson-type cluster
title_full In situ formation of the first proteinogenically functionalized [TeW(6)O(24)O(2)(Glu)](7–) structure reveals unprecedented chemical and geometrical features of the Anderson-type cluster
title_fullStr In situ formation of the first proteinogenically functionalized [TeW(6)O(24)O(2)(Glu)](7–) structure reveals unprecedented chemical and geometrical features of the Anderson-type cluster
title_full_unstemmed In situ formation of the first proteinogenically functionalized [TeW(6)O(24)O(2)(Glu)](7–) structure reveals unprecedented chemical and geometrical features of the Anderson-type cluster
title_short In situ formation of the first proteinogenically functionalized [TeW(6)O(24)O(2)(Glu)](7–) structure reveals unprecedented chemical and geometrical features of the Anderson-type cluster
title_sort in situ formation of the first proteinogenically functionalized [tew(6)o(24)o(2)(glu)](7–) structure reveals unprecedented chemical and geometrical features of the anderson-type cluster
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5066560/
https://www.ncbi.nlm.nih.gov/pubmed/27722437
http://dx.doi.org/10.1039/c6cc07004c
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