Equilibrium and non-equilibrium furanose selection in the ribose isomerisation network

Furanose species have a key role in the chemistry of life despite their instability over pyranose ones. The authors, through NMR characterization of the anomeric ratios at equilibrium and a non-equilibrium theoretical treatment, show that a steady temperature gradient, at temperatures relevant to th...

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Autores principales: Avinash Vicholous Dass, Thomas Georgelin, Frances Westall, Frédéric Foucher, Paolo De Los Rios, Daniel Maria Busiello, Shiling Liang, Francesco Piazza
Formato: article
Lenguaje:EN
Publicado: Nature Portfolio 2021
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Acceso en línea:https://doaj.org/article/8254f1db034e4302a888aff6171252c2
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spelling oai:doaj.org-article:8254f1db034e4302a888aff6171252c22021-12-02T15:43:06ZEquilibrium and non-equilibrium furanose selection in the ribose isomerisation network10.1038/s41467-021-22818-52041-1723https://doaj.org/article/8254f1db034e4302a888aff6171252c22021-05-01T00:00:00Zhttps://doi.org/10.1038/s41467-021-22818-5https://doaj.org/toc/2041-1723Furanose species have a key role in the chemistry of life despite their instability over pyranose ones. The authors, through NMR characterization of the anomeric ratios at equilibrium and a non-equilibrium theoretical treatment, show that a steady temperature gradient, at temperatures relevant to the early Earth, favors furanose over pyranose isomers.Avinash Vicholous DassThomas GeorgelinFrances WestallFrédéric FoucherPaolo De Los RiosDaniel Maria BusielloShiling LiangFrancesco PiazzaNature PortfolioarticleScienceQENNature Communications, Vol 12, Iss 1, Pp 1-10 (2021)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Avinash Vicholous Dass
Thomas Georgelin
Frances Westall
Frédéric Foucher
Paolo De Los Rios
Daniel Maria Busiello
Shiling Liang
Francesco Piazza
Equilibrium and non-equilibrium furanose selection in the ribose isomerisation network
description Furanose species have a key role in the chemistry of life despite their instability over pyranose ones. The authors, through NMR characterization of the anomeric ratios at equilibrium and a non-equilibrium theoretical treatment, show that a steady temperature gradient, at temperatures relevant to the early Earth, favors furanose over pyranose isomers.
format article
author Avinash Vicholous Dass
Thomas Georgelin
Frances Westall
Frédéric Foucher
Paolo De Los Rios
Daniel Maria Busiello
Shiling Liang
Francesco Piazza
author_facet Avinash Vicholous Dass
Thomas Georgelin
Frances Westall
Frédéric Foucher
Paolo De Los Rios
Daniel Maria Busiello
Shiling Liang
Francesco Piazza
author_sort Avinash Vicholous Dass
title Equilibrium and non-equilibrium furanose selection in the ribose isomerisation network
title_short Equilibrium and non-equilibrium furanose selection in the ribose isomerisation network
title_full Equilibrium and non-equilibrium furanose selection in the ribose isomerisation network
title_fullStr Equilibrium and non-equilibrium furanose selection in the ribose isomerisation network
title_full_unstemmed Equilibrium and non-equilibrium furanose selection in the ribose isomerisation network
title_sort equilibrium and non-equilibrium furanose selection in the ribose isomerisation network
publisher Nature Portfolio
publishDate 2021
url https://doaj.org/article/8254f1db034e4302a888aff6171252c2
work_keys_str_mv AT avinashvicholousdass equilibriumandnonequilibriumfuranoseselectionintheriboseisomerisationnetwork
AT thomasgeorgelin equilibriumandnonequilibriumfuranoseselectionintheriboseisomerisationnetwork
AT franceswestall equilibriumandnonequilibriumfuranoseselectionintheriboseisomerisationnetwork
AT fredericfoucher equilibriumandnonequilibriumfuranoseselectionintheriboseisomerisationnetwork
AT paolodelosrios equilibriumandnonequilibriumfuranoseselectionintheriboseisomerisationnetwork
AT danielmariabusiello equilibriumandnonequilibriumfuranoseselectionintheriboseisomerisationnetwork
AT shilingliang equilibriumandnonequilibriumfuranoseselectionintheriboseisomerisationnetwork
AT francescopiazza equilibriumandnonequilibriumfuranoseselectionintheriboseisomerisationnetwork
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