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Journal Article

A universal measure of chaotropicity and kosmotropicity

Jonathan A. Cray; John T. Russell; David J. Timson; Rekha S. Singhal; John E. Hallsworth
Environmental Microbiology · Vol. 15, Issue 1 · pp. 287-296 · 2013

Abstract

Summary Diverse parameters, including chaotropicity, can limit the function of cellular systems and thereby determine the extent of E arth's biosphere. Whereas parameters such as temperature, hydrophobicity, pressure, pH , H ofmeister effects, and water activity can be quantified via standard scales of measurement, the chao‐/kosmotropic activities of environmentally ubiquitous substances have no widely accepted, universal scale. We developed an assay to determine and quantify chao‐/kosmotropicity for 97 chemically diverse substances that can be universally applied to all solutes. This scale is numerically continuous for the solutes assayed (from +361 kJ kg −1 mol −1 for chaotropes to −659 kJ kg −1 mol −1 for kosmotropes) but there are key points that delineate (i) chaotropic from kosmotropic substances (i.e. chaotropes ≥ +4; kosmotropes ≤ −4 kJ kg −1 mol −1 ); and (ii) chaotropic solutes that are readily water‐soluble (log P by proxy , from within the hydrophobic domains of macromolecular systems (log P > 1.9). Examples of chao‐/kosmotropicity values are, for chaotropes: phenol +143, CaCl 2 +92.2, MgCl 2 +54.0, butanol +37.4, guanidine hydrochloride +31.9, urea +16.6, glycerol [> 6.5 M] +6.34, ethanol +5.93, fructose +4.56; for kosmotropes: proline −5.76, sucrose −6.92, dimethylsulphoxide (DMSO) −9.72, mannitol −6.69, trehalose −10.6, NaCl −11.0, glycine −14.2, ammonium sulfate −66.9, polyethylene glycol‐ (PEG‐)1000 −126; and for relatively neutral solutes: methanol, +3.12, ethylene glycol +1.66, glucose +1.19, glycerol [ −1 mol −1 ). The data obtained correlate with solute interactions with, and structure–function changes in, enzymes and membranes. We discuss the implications for diverse fields including microbial ecology, biotechnology and astrobiology.

Bibliographic Information

JournalEnvironmental Microbiology
PublisherWiley
Publication Date2013-01-01
Publication Year2013
Volume15
Issue1
Pages287-296
Document TypeJournal Article
Print ISSN1462-2912
eISSN1462-2920
DOI10.1111/1462-2920.12018
SubjectMicrobial Ecology

Access Information

NARA Access Coverage1999-01-01~Current
Journal Homepagehttps://onlinelibrary.wiley.com/loi/14622920
Publisher PageOpen Publisher Page
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