Literature DB >> 20453935

Nanopore analysis of the interaction of metal ions with prion proteins and peptides.

Radu I Stefureac1, Claudia Avis Madampage, Olga Andrievskaia, Jeremy S Lee.   

Abstract

Nanopore analysis can be used to study conformational changes in individual peptide or protein molecules. Under an applied voltage there is a change in the event parameters of blockade current or time when a molecule bumps into or translocates through the pore. If a molecule undergoes a conformational change upon binding a ligand or metal ion the event parameters will be altered. The objective of this research was to demonstrate that the conformation of the prion protein (PrP) and prion peptides can be modulated by binding divalent metal ions. Peptides from the octarepeat region (Octa2, (PHGGGWGQ)2 and Octa 4, (PHGGGWGQ)4), residues 106-126 (PrP106-126), and the full-length Bovine recombinant prion (BrecPrP) were studied with an alpha-hemolysin pore. Octa2 readily translocated the pore but significant bumping events occurred on addition of Cu(II) and to a lesser extent Zn(II), demonstrating that complex formation was occurring with concomitant conformational changes. The binding of Cu(II) to Octa4 was more pronounced and at high concentrations only a small proportion of the complex could translocate. Addition of Zn(II) also caused significant changes to the event parameters but Mg(II) and Mn(II) were inert. Addition of Cu(II) to PrP106-126 caused the formation of a very tight complex, which could not translocate the pore. Small changes were observed with Zn(II), but not with Mg(II) or Mn(II). Analysis of BrecPrP showed that about 37% were translocation events, but on addition of Cu(II) or Zn(II) these disappeared and only bumping events were recorded. Suprisingly, addition of Mn(II) caused an increase in translocation events to about 64%. Thus, conformational changes to prions upon binding metal ions are readily observed by nanopore analysis.

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Year:  2010        PMID: 20453935     DOI: 10.1139/o09-176

Source DB:  PubMed          Journal:  Biochem Cell Biol        ISSN: 0829-8211            Impact factor:   3.626


  14 in total

Review 1.  Nanopore analysis: An emerging technique for studying the folding and misfolding of proteins.

Authors:  Claudia Madampage; Omid Tavassoly; Chris Christensen; Meena Kumari; Jeremy S Lee
Journal:  Prion       Date:  2012-04-01       Impact factor: 3.931

2.  Binding of bovine T194A PrP(C) by PrP(Sc)-specific antibodies: potential implications for immunotherapy of familial prion diseases.

Authors:  Claudia A Madampage; Pekka Määttänen; Kristen Marciniuk; Robert Brownlie; Olga Andrievskaia; Andrew Potter; Neil R Cashman; Jeremy S Lee; Scott Napper
Journal:  Prion       Date:  2013-05-31       Impact factor: 3.931

3.  Nanopore analysis reveals differences in structural stability of ovine PrP(C) proteins corresponding to scrapie susceptible (VRQ) and resistance (ARR) genotypes.

Authors:  Claudia Avis Madampage; Kristen Marciniuk; Pekka Määttänen; Neil R Cashman; Andrew Potter; Jeremy S Lee; Scott Napper
Journal:  Prion       Date:  2014-01-08       Impact factor: 3.931

4.  Enzymatic reaction-based nanopore detection of zinc ions.

Authors:  Golbarg Mohammadi Roozbahani; Youwen Zhang; Xiaohan Chen; Mona Hoseini Soflaee; Xiyun Guan
Journal:  Analyst       Date:  2019-12-02       Impact factor: 4.616

5.  Nanopore detection of copper ions using a polyhistidine probe.

Authors:  Guihua Wang; Liang Wang; Yujing Han; Shuo Zhou; Xiyun Guan
Journal:  Biosens Bioelectron       Date:  2013-10-23       Impact factor: 10.618

6.  Copper Sensing with a Prion Protein Modified Nanopipette.

Authors:  Paolo Actis; Alex McDonald; David Beeler; Boaz Vilozny; Glenn Millhauser; Nader Pourmand
Journal:  RSC Adv       Date:  2012-09-26       Impact factor: 3.361

7.  Real-time label-free measurement of HIV-1 protease activity by nanopore analysis.

Authors:  Liang Wang; Yujing Han; Shuo Zhou; Xiyun Guan
Journal:  Biosens Bioelectron       Date:  2014-06-25       Impact factor: 10.618

Review 8.  Watching single proteins using engineered nanopores.

Authors:  Liviu Movileanu
Journal:  Protein Pept Lett       Date:  2014-03       Impact factor: 1.890

Review 9.  Antioxidant and Metal Chelation-Based Therapies in the Treatment of Prion Disease.

Authors:  Marcus W Brazier; Anthony G Wedd; Steven J Collins
Journal:  Antioxidants (Basel)       Date:  2014-04-21

10.  RNase A does not translocate the alpha-hemolysin pore.

Authors:  Besnik Krasniqi; Jeremy S Lee
Journal:  PLoS One       Date:  2014-02-04       Impact factor: 3.240

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