Denatured state structural property determines protein stabilization by macromolecular crowding: a thermodynamic and structural approach.

Understanding of protein structure and stability gained to date has been acquired through investigations made under dilute conditions where total macromolecular concentration never surpasses 10 g l(-1). However, biological macromolecules are known to evolve and function under crowded intracellular e...

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Main Authors: Shruti Mittal, Laishram Rajendrakumar Singh
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2013-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3827121?pdf=render
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spelling doaj-e922d6b490e24d4aad0aa2ba15b45cd92020-11-25T00:47:04ZengPublic Library of Science (PLoS)PLoS ONE1932-62032013-01-01811e7893610.1371/journal.pone.0078936Denatured state structural property determines protein stabilization by macromolecular crowding: a thermodynamic and structural approach.Shruti MittalLaishram Rajendrakumar SinghUnderstanding of protein structure and stability gained to date has been acquired through investigations made under dilute conditions where total macromolecular concentration never surpasses 10 g l(-1). However, biological macromolecules are known to evolve and function under crowded intracellular environments that comprises of proteins, nucleic acids, ribosomes and carbohydrates etc. Crowded environment is known to result in altered biological properties including thermodynamic, structural and functional aspect of macromolecules as compared to the macromolecules present in our commonly used experimental dilute buffers (for example, Tris HCl or phosphate buffer). In this study, we have investigated the thermodynamic and structural consequences of synthetic crowding agent (Ficoll 70) on three different proteins (Ribonuclease-A, lysozyme and holo α-lactalbumin) at different pH values. We report here that the effect of crowding is protein dependent in terms of protein thermal stability and structure. We also observed that the structural characteristics of the denatured state determines if crowding will have an effect or not on the protein stability.http://europepmc.org/articles/PMC3827121?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Shruti Mittal
Laishram Rajendrakumar Singh
spellingShingle Shruti Mittal
Laishram Rajendrakumar Singh
Denatured state structural property determines protein stabilization by macromolecular crowding: a thermodynamic and structural approach.
PLoS ONE
author_facet Shruti Mittal
Laishram Rajendrakumar Singh
author_sort Shruti Mittal
title Denatured state structural property determines protein stabilization by macromolecular crowding: a thermodynamic and structural approach.
title_short Denatured state structural property determines protein stabilization by macromolecular crowding: a thermodynamic and structural approach.
title_full Denatured state structural property determines protein stabilization by macromolecular crowding: a thermodynamic and structural approach.
title_fullStr Denatured state structural property determines protein stabilization by macromolecular crowding: a thermodynamic and structural approach.
title_full_unstemmed Denatured state structural property determines protein stabilization by macromolecular crowding: a thermodynamic and structural approach.
title_sort denatured state structural property determines protein stabilization by macromolecular crowding: a thermodynamic and structural approach.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2013-01-01
description Understanding of protein structure and stability gained to date has been acquired through investigations made under dilute conditions where total macromolecular concentration never surpasses 10 g l(-1). However, biological macromolecules are known to evolve and function under crowded intracellular environments that comprises of proteins, nucleic acids, ribosomes and carbohydrates etc. Crowded environment is known to result in altered biological properties including thermodynamic, structural and functional aspect of macromolecules as compared to the macromolecules present in our commonly used experimental dilute buffers (for example, Tris HCl or phosphate buffer). In this study, we have investigated the thermodynamic and structural consequences of synthetic crowding agent (Ficoll 70) on three different proteins (Ribonuclease-A, lysozyme and holo α-lactalbumin) at different pH values. We report here that the effect of crowding is protein dependent in terms of protein thermal stability and structure. We also observed that the structural characteristics of the denatured state determines if crowding will have an effect or not on the protein stability.
url http://europepmc.org/articles/PMC3827121?pdf=render
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AT laishramrajendrakumarsingh denaturedstatestructuralpropertydeterminesproteinstabilizationbymacromolecularcrowdingathermodynamicandstructuralapproach
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