Thermal, chemical and pH induced denaturation of a multimeric β-galactosidase reveals multiple unfolding pathways.

BACKGROUND: In this case study, we analysed the properties of unfolded states and pathways leading to complete denaturation of a multimeric chick pea β-galactosidase (CpGAL), as obtained from treatment with guanidium hydrochloride, urea, elevated temperature and extreme pH. METHODOLOGY/PRINCIPAL FIN...

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Main Authors: Devesh Kishore, Suman Kundu, Arvind M Kayastha
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2012-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3503960?pdf=render
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spelling doaj-8beb80770b324be298bb8ab0f8f482552020-11-24T21:34:37ZengPublic Library of Science (PLoS)PLoS ONE1932-62032012-01-01711e5038010.1371/journal.pone.0050380Thermal, chemical and pH induced denaturation of a multimeric β-galactosidase reveals multiple unfolding pathways.Devesh KishoreSuman KunduArvind M KayasthaBACKGROUND: In this case study, we analysed the properties of unfolded states and pathways leading to complete denaturation of a multimeric chick pea β-galactosidase (CpGAL), as obtained from treatment with guanidium hydrochloride, urea, elevated temperature and extreme pH. METHODOLOGY/PRINCIPAL FINDINGS: CpGAL, a heterodimeric protein with native molecular mass of 85 kDa, belongs to α+β class of protein. The conformational stability and thermodynamic parameters of CpGAL unfolding in different states were estimated and interpreted using circular dichroism and fluorescence spectroscopic measurements. The enzyme was found to be structurally and functionally stable in the entire pH range and upto 50 °C temperature. Further increase in temperature induces unfolding followed by aggregation. Chemical induced denaturation was found to be cooperative and transitions were irreversible, non-coincidental and sigmoidal. Free energy of protein unfolding (ΔG(0)) and unfolding constant (K(obs)) were also calculated for chemically denatured CpGAL. SIGNIFICANCE: The protein seems to use different pathways for unfolding in different environments and is a classical example of how the environment dictates the path a protein might take to fold while its amino acid sequence only defines its final three-dimensional conformation. The knowledge accumulated could be of immense biotechnological significance as well.http://europepmc.org/articles/PMC3503960?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Devesh Kishore
Suman Kundu
Arvind M Kayastha
spellingShingle Devesh Kishore
Suman Kundu
Arvind M Kayastha
Thermal, chemical and pH induced denaturation of a multimeric β-galactosidase reveals multiple unfolding pathways.
PLoS ONE
author_facet Devesh Kishore
Suman Kundu
Arvind M Kayastha
author_sort Devesh Kishore
title Thermal, chemical and pH induced denaturation of a multimeric β-galactosidase reveals multiple unfolding pathways.
title_short Thermal, chemical and pH induced denaturation of a multimeric β-galactosidase reveals multiple unfolding pathways.
title_full Thermal, chemical and pH induced denaturation of a multimeric β-galactosidase reveals multiple unfolding pathways.
title_fullStr Thermal, chemical and pH induced denaturation of a multimeric β-galactosidase reveals multiple unfolding pathways.
title_full_unstemmed Thermal, chemical and pH induced denaturation of a multimeric β-galactosidase reveals multiple unfolding pathways.
title_sort thermal, chemical and ph induced denaturation of a multimeric β-galactosidase reveals multiple unfolding pathways.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2012-01-01
description BACKGROUND: In this case study, we analysed the properties of unfolded states and pathways leading to complete denaturation of a multimeric chick pea β-galactosidase (CpGAL), as obtained from treatment with guanidium hydrochloride, urea, elevated temperature and extreme pH. METHODOLOGY/PRINCIPAL FINDINGS: CpGAL, a heterodimeric protein with native molecular mass of 85 kDa, belongs to α+β class of protein. The conformational stability and thermodynamic parameters of CpGAL unfolding in different states were estimated and interpreted using circular dichroism and fluorescence spectroscopic measurements. The enzyme was found to be structurally and functionally stable in the entire pH range and upto 50 °C temperature. Further increase in temperature induces unfolding followed by aggregation. Chemical induced denaturation was found to be cooperative and transitions were irreversible, non-coincidental and sigmoidal. Free energy of protein unfolding (ΔG(0)) and unfolding constant (K(obs)) were also calculated for chemically denatured CpGAL. SIGNIFICANCE: The protein seems to use different pathways for unfolding in different environments and is a classical example of how the environment dictates the path a protein might take to fold while its amino acid sequence only defines its final three-dimensional conformation. The knowledge accumulated could be of immense biotechnological significance as well.
url http://europepmc.org/articles/PMC3503960?pdf=render
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