The <i>‘</i>Shape-Shifter<i>’</i> Peptide from the Disulphide Isomerase PmScsC Shows Context-Dependent Conformational Preferences

Multiple crystal structures of the homo-trimeric protein disulphide isomerase PmScsC reveal that the peptide which links the trimerization stalk and catalytic domain can adopt helical, β-strand and loop conformations. This region has been called a <i>‘</i>shape-shifter<i>’</i>...

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Main Authors: Lorna J. Smith, Chloe W. Green, Christina Redfield
Format: Article
Language:English
Published: MDPI AG 2021-04-01
Series:Biomolecules
Subjects:
Online Access:https://www.mdpi.com/2218-273X/11/5/642
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spelling doaj-8ac3ed547d4e4d4b90fa2ef03a0d20f62021-04-26T23:04:34ZengMDPI AGBiomolecules2218-273X2021-04-011164264210.3390/biom11050642The <i>‘</i>Shape-Shifter<i>’</i> Peptide from the Disulphide Isomerase PmScsC Shows Context-Dependent Conformational PreferencesLorna J. Smith0Chloe W. Green1Christina Redfield2Department of Chemistry, University of Oxford, Oxford OX1 3QR, UKDepartment of Chemistry, University of Oxford, Oxford OX1 3QR, UKDepartment of Biochemistry, University of Oxford, Oxford OX1 3QU, UKMultiple crystal structures of the homo-trimeric protein disulphide isomerase PmScsC reveal that the peptide which links the trimerization stalk and catalytic domain can adopt helical, β-strand and loop conformations. This region has been called a <i>‘</i>shape-shifter<i>’</i> peptide. Characterisation of this peptide using NMR experiments and MD simulations has shown that it is essentially disordered in solution. Analysis of the PmScsC crystal structures identifies the role of intermolecular contacts, within an assembly of protein molecules, in stabilising the different linker peptide conformations. These context-dependent conformational properties may be important functionally, allowing for the binding and disulphide shuffling of a variety of protein substrates to PmScsC. They also have a relevance for our understanding of protein aggregation and misfolding showing how intermolecular quaternary interactions can lead to β-sheet formation by a sequence that in other contexts adopts a helical structure. This <i>‘</i>shape-shifting<i>’</i> peptide region within PmScsC is reminiscent of one-to-many molecular recognition features (MoRFs) found in intrinsically disordered proteins which are able to adopt different conformations when they fold upon binding to their protein partners.https://www.mdpi.com/2218-273X/11/5/642NMR spectroscopyMD simulationX-ray crystallographyprotein dynamicschameleon sequenceprotein folding
collection DOAJ
language English
format Article
sources DOAJ
author Lorna J. Smith
Chloe W. Green
Christina Redfield
spellingShingle Lorna J. Smith
Chloe W. Green
Christina Redfield
The <i>‘</i>Shape-Shifter<i>’</i> Peptide from the Disulphide Isomerase PmScsC Shows Context-Dependent Conformational Preferences
Biomolecules
NMR spectroscopy
MD simulation
X-ray crystallography
protein dynamics
chameleon sequence
protein folding
author_facet Lorna J. Smith
Chloe W. Green
Christina Redfield
author_sort Lorna J. Smith
title The <i>‘</i>Shape-Shifter<i>’</i> Peptide from the Disulphide Isomerase PmScsC Shows Context-Dependent Conformational Preferences
title_short The <i>‘</i>Shape-Shifter<i>’</i> Peptide from the Disulphide Isomerase PmScsC Shows Context-Dependent Conformational Preferences
title_full The <i>‘</i>Shape-Shifter<i>’</i> Peptide from the Disulphide Isomerase PmScsC Shows Context-Dependent Conformational Preferences
title_fullStr The <i>‘</i>Shape-Shifter<i>’</i> Peptide from the Disulphide Isomerase PmScsC Shows Context-Dependent Conformational Preferences
title_full_unstemmed The <i>‘</i>Shape-Shifter<i>’</i> Peptide from the Disulphide Isomerase PmScsC Shows Context-Dependent Conformational Preferences
title_sort <i>‘</i>shape-shifter<i>’</i> peptide from the disulphide isomerase pmscsc shows context-dependent conformational preferences
publisher MDPI AG
series Biomolecules
issn 2218-273X
publishDate 2021-04-01
description Multiple crystal structures of the homo-trimeric protein disulphide isomerase PmScsC reveal that the peptide which links the trimerization stalk and catalytic domain can adopt helical, β-strand and loop conformations. This region has been called a <i>‘</i>shape-shifter<i>’</i> peptide. Characterisation of this peptide using NMR experiments and MD simulations has shown that it is essentially disordered in solution. Analysis of the PmScsC crystal structures identifies the role of intermolecular contacts, within an assembly of protein molecules, in stabilising the different linker peptide conformations. These context-dependent conformational properties may be important functionally, allowing for the binding and disulphide shuffling of a variety of protein substrates to PmScsC. They also have a relevance for our understanding of protein aggregation and misfolding showing how intermolecular quaternary interactions can lead to β-sheet formation by a sequence that in other contexts adopts a helical structure. This <i>‘</i>shape-shifting<i>’</i> peptide region within PmScsC is reminiscent of one-to-many molecular recognition features (MoRFs) found in intrinsically disordered proteins which are able to adopt different conformations when they fold upon binding to their protein partners.
topic NMR spectroscopy
MD simulation
X-ray crystallography
protein dynamics
chameleon sequence
protein folding
url https://www.mdpi.com/2218-273X/11/5/642
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