Polyglutamine- and temperature-dependent conformational rigidity in mutant huntingtin revealed by immunoassays and circular dichroism spectroscopy.

BACKGROUND:In Huntington's disease, expansion of a CAG triplet repeat occurs in exon 1 of the huntingtin gene (HTT), resulting in a protein bearing>35 polyglutamine residues whose N-terminal fragments display a high propensity to misfold and aggregate. Recent data demonstrate that polyglutam...

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Main Authors: Valentina Fodale, Natalie C Kegulian, Margherita Verani, Cristina Cariulo, Lucia Azzollini, Lara Petricca, Manuel Daldin, Roberto Boggio, Alessandro Padova, Rainer Kuhn, Robert Pacifici, Douglas Macdonald, Ryan C Schoenfeld, Hyunsun Park, J Mario Isas, Ralf Langen, Andreas Weiss, Andrea Caricasole
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2014-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC4251833?pdf=render
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spelling doaj-4a6d9360eb37452db5d79a45e783c38e2020-11-24T21:52:03ZengPublic Library of Science (PLoS)PLoS ONE1932-62032014-01-01912e11226210.1371/journal.pone.0112262Polyglutamine- and temperature-dependent conformational rigidity in mutant huntingtin revealed by immunoassays and circular dichroism spectroscopy.Valentina FodaleNatalie C KegulianMargherita VeraniCristina CariuloLucia AzzolliniLara PetriccaManuel DaldinRoberto BoggioAlessandro PadovaRainer KuhnRobert PacificiDouglas MacdonaldRyan C SchoenfeldHyunsun ParkJ Mario IsasRalf LangenAndreas WeissAndrea CaricasoleBACKGROUND:In Huntington's disease, expansion of a CAG triplet repeat occurs in exon 1 of the huntingtin gene (HTT), resulting in a protein bearing>35 polyglutamine residues whose N-terminal fragments display a high propensity to misfold and aggregate. Recent data demonstrate that polyglutamine expansion results in conformational changes in the huntingtin protein (HTT), which likely influence its biological and biophysical properties. Developing assays to characterize and measure these conformational changes in isolated proteins and biological samples would advance the testing of novel therapeutic approaches aimed at correcting mutant HTT misfolding. Time-resolved Förster energy transfer (TR-FRET)-based assays represent high-throughput, homogeneous, sensitive immunoassays widely employed for the quantification of proteins of interest. TR-FRET is extremely sensitive to small distances and can therefore provide conformational information based on detection of exposure and relative position of epitopes present on the target protein as recognized by selective antibodies. We have previously reported TR-FRET assays to quantify HTT proteins based on the use of antibodies specific for different amino-terminal HTT epitopes. Here, we investigate the possibility of interrogating HTT protein conformation using these assays. METHODOLOGY/PRINCIPAL FINDINGS:By performing TR-FRET measurements on the same samples (purified recombinant proteins or lysates from cells expressing HTT fragments or full length protein) at different temperatures, we have discovered a temperature-dependent, reversible, polyglutamine-dependent conformational change of wild type and expanded mutant HTT proteins. Circular dichroism spectroscopy confirms the temperature and polyglutamine-dependent change in HTT structure, revealing an effect of polyglutamine length and of temperature on the alpha-helical content of the protein. CONCLUSIONS/SIGNIFICANCE:The temperature- and polyglutamine-dependent effects observed with TR-FRET on HTT proteins represent a simple, scalable, quantitative and sensitive assay to identify genetic and pharmacological modulators of mutant HTT conformation, and potentially to assess the relevance of conformational changes during onset and progression of Huntington's disease.http://europepmc.org/articles/PMC4251833?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Valentina Fodale
Natalie C Kegulian
Margherita Verani
Cristina Cariulo
Lucia Azzollini
Lara Petricca
Manuel Daldin
Roberto Boggio
Alessandro Padova
Rainer Kuhn
Robert Pacifici
Douglas Macdonald
Ryan C Schoenfeld
Hyunsun Park
J Mario Isas
Ralf Langen
Andreas Weiss
Andrea Caricasole
spellingShingle Valentina Fodale
Natalie C Kegulian
Margherita Verani
Cristina Cariulo
Lucia Azzollini
Lara Petricca
Manuel Daldin
Roberto Boggio
Alessandro Padova
Rainer Kuhn
Robert Pacifici
Douglas Macdonald
Ryan C Schoenfeld
Hyunsun Park
J Mario Isas
Ralf Langen
Andreas Weiss
Andrea Caricasole
Polyglutamine- and temperature-dependent conformational rigidity in mutant huntingtin revealed by immunoassays and circular dichroism spectroscopy.
PLoS ONE
author_facet Valentina Fodale
Natalie C Kegulian
Margherita Verani
Cristina Cariulo
Lucia Azzollini
Lara Petricca
Manuel Daldin
Roberto Boggio
Alessandro Padova
Rainer Kuhn
Robert Pacifici
Douglas Macdonald
Ryan C Schoenfeld
Hyunsun Park
J Mario Isas
Ralf Langen
Andreas Weiss
Andrea Caricasole
author_sort Valentina Fodale
title Polyglutamine- and temperature-dependent conformational rigidity in mutant huntingtin revealed by immunoassays and circular dichroism spectroscopy.
title_short Polyglutamine- and temperature-dependent conformational rigidity in mutant huntingtin revealed by immunoassays and circular dichroism spectroscopy.
title_full Polyglutamine- and temperature-dependent conformational rigidity in mutant huntingtin revealed by immunoassays and circular dichroism spectroscopy.
title_fullStr Polyglutamine- and temperature-dependent conformational rigidity in mutant huntingtin revealed by immunoassays and circular dichroism spectroscopy.
title_full_unstemmed Polyglutamine- and temperature-dependent conformational rigidity in mutant huntingtin revealed by immunoassays and circular dichroism spectroscopy.
title_sort polyglutamine- and temperature-dependent conformational rigidity in mutant huntingtin revealed by immunoassays and circular dichroism spectroscopy.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2014-01-01
description BACKGROUND:In Huntington's disease, expansion of a CAG triplet repeat occurs in exon 1 of the huntingtin gene (HTT), resulting in a protein bearing>35 polyglutamine residues whose N-terminal fragments display a high propensity to misfold and aggregate. Recent data demonstrate that polyglutamine expansion results in conformational changes in the huntingtin protein (HTT), which likely influence its biological and biophysical properties. Developing assays to characterize and measure these conformational changes in isolated proteins and biological samples would advance the testing of novel therapeutic approaches aimed at correcting mutant HTT misfolding. Time-resolved Förster energy transfer (TR-FRET)-based assays represent high-throughput, homogeneous, sensitive immunoassays widely employed for the quantification of proteins of interest. TR-FRET is extremely sensitive to small distances and can therefore provide conformational information based on detection of exposure and relative position of epitopes present on the target protein as recognized by selective antibodies. We have previously reported TR-FRET assays to quantify HTT proteins based on the use of antibodies specific for different amino-terminal HTT epitopes. Here, we investigate the possibility of interrogating HTT protein conformation using these assays. METHODOLOGY/PRINCIPAL FINDINGS:By performing TR-FRET measurements on the same samples (purified recombinant proteins or lysates from cells expressing HTT fragments or full length protein) at different temperatures, we have discovered a temperature-dependent, reversible, polyglutamine-dependent conformational change of wild type and expanded mutant HTT proteins. Circular dichroism spectroscopy confirms the temperature and polyglutamine-dependent change in HTT structure, revealing an effect of polyglutamine length and of temperature on the alpha-helical content of the protein. CONCLUSIONS/SIGNIFICANCE:The temperature- and polyglutamine-dependent effects observed with TR-FRET on HTT proteins represent a simple, scalable, quantitative and sensitive assay to identify genetic and pharmacological modulators of mutant HTT conformation, and potentially to assess the relevance of conformational changes during onset and progression of Huntington's disease.
url http://europepmc.org/articles/PMC4251833?pdf=render
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