Literature DB >> 31566623

Characterizing Individual Protein Aggregates by Infrared Nanospectroscopy and Atomic Force Microscopy.

Francesco Simone Ruggeri1, Tomas Šneideris2, Sean Chia3, Michele Vendruscolo3, Tuomas P J Knowles4.   

Abstract

The phenomenon of protein misfolding and aggregation results in the formation of highly heterogeneous protein aggregates, which are associated with neurodegenerative conditions such as Alzheimer's and Parkinson's diseases. In particular low molecular weight aggregates, amyloid oligomers, have been shown to possess generic cytotoxic properties and are implicated as neurotoxins in many forms of dementia. We illustrate the use of methods based on atomic force microscopy (AFM) to address the challenging task of characterizing the morphological, structural and chemical properties of these aggregates, which are difficult to study using conventional structural methods or bulk biophysical methods because of their heterogeneity and transient nature. Scanning probe microscopy approaches are now capable of investigating the morphology of amyloid aggregates with sub-nanometer resolution. We show here that infrared (IR) nanospectroscopy (AFM-IR), which simultaneously exploits the high resolution of AFM and the chemical recognition power of IR spectroscopy, can go further and enable the characterization of the structural properties of individual protein aggregates, and thus offer insights into the aggregation mechanisms. Since the approach that we describe can be applied also to the investigations of the interactions of protein assemblies with small molecules and antibodies, it can deliver fundamental information to develop new therapeutic compounds to diagnose or treat neurodegenerative disorders.

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Year:  2019        PMID: 31566623     DOI: 10.3791/60108

Source DB:  PubMed          Journal:  J Vis Exp        ISSN: 1940-087X            Impact factor:   1.355


  3 in total

1.  Biomolecular condensates undergo a generic shear-mediated liquid-to-solid transition.

Authors:  Yi Shen; Francesco Simone Ruggeri; Daniele Vigolo; Ayaka Kamada; Seema Qamar; Aviad Levin; Christiane Iserman; Simon Alberti; Peter St George-Hyslop; Tuomas P J Knowles
Journal:  Nat Nanotechnol       Date:  2020-07-13       Impact factor: 40.523

2.  Probing the Nanoscale Heterogeneous Mixing in a High-Performance Polymer Blend.

Authors:  Alexander Paul Fellows; Debashis Puhan; Janet S S Wong; Michael T L Casford; Paul B Davies
Journal:  Polymers (Basel)       Date:  2022-01-04       Impact factor: 4.329

3.  A Brain-Permeable Aminosterol Regulates Cell Membranes to Mitigate the Toxicity of Diverse Pore-Forming Agents.

Authors:  Ryan P Kreiser; Aidan K Wright; Liam R Sasser; Dillon J Rinauro; Justus M Gabriel; Claire M Hsu; Jorge A Hurtado; Tristan L McKenzie; Silvia Errico; J Alex Albright; Lance Richardson; Victor A Jaffett; Dawn E Riegner; Lam T Nguyen; Kathleen LeForte; Michael Zasloff; Jared E Hollows; Fabrizio Chiti; Michele Vendruscolo; Ryan Limbocker
Journal:  ACS Chem Neurosci       Date:  2022-04-11       Impact factor: 5.780

  3 in total

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