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Use of Two Dimensional Semi-denaturing Detergent Agarose Gel Electrophoresis to Confirm Size Heterogeneity of Amyloid or Amyloid-like Fibers
Published on: April 26, 2018
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Heterogeneous Amyloid β-Sheet Polymorphs Identified on Hydrogen Bond Promoting Surfaces Using 2D SFG Spectroscopy
Jia-Jung Ho1, Ayanjeet Ghosh1, Tianqi O Zhang1
1University of Wisconsin-Madison , Madison, Wisconsin 53706, United States.
The Journal of Physical Chemistry. A
|January 26, 2018
Summary
Two-dimensional sum-frequency generation spectroscopy reveals how surfaces influence amyloid structures. Hydrogen-bond promoting surfaces create diverse beta-sheet structures, while ligated peptides form more uniform ones.
Area of Science:
- Biophysics
- Spectroscopy
- Materials Science
Background:
- Amyloid formation is linked to diseases and involves peptide self-assembly.
- The pentapeptide FGAIL, from human islet amyloid polypeptide (hIAPP), is highly amyloidogenic.
- Understanding peptide-surface interactions is crucial for controlling amyloid structure.
Purpose of the Study:
- To investigate the structural impact of hydrogen-bond promoting surfaces on the amyloidogenic pentapeptide FGAIL using 2D SFG spectroscopy.
- To differentiate between peptide structures formed on bare gold versus a mercaptobenzoic acid (MBA) monolayer.
- To elucidate the role of surface chemistry in directing amyloid polymorph formation.
Main Methods:
- Utilizing two-dimensional sum-frequency generation (2D SFG) spectroscopy to probe molecular structures.
- Studying FGAIL peptides on a pure gold surface and on a gold surface coated with a mercaptobenzoic acid (MBA) self-assembled monolayer.
- Employing computational simulations to interpret experimental spectroscopic data.
Main Results:
- FGAIL forms disordered structures on a pure gold surface.
- On an MBA-coated surface, FGAIL forms ordered beta-sheet structures, with evidence of close contact with surface carboxylic acid groups.
- Chemically ligated FGAIL peptides on the MBA monolayer exhibit simpler beta-sheet spectra, indicating a more defined structure.
- Simulations confirm that the MBA surface promotes both parallel and antiparallel beta-sheet formation with varied orientations, while ligation favors parallel sheets in a single orientation.
Conclusions:
- Hydrogen-bond promoting surfaces, like MBA, act as catalysts for heterogeneous amyloid beta-sheet polymorph formation.
- Surface interactions can either promote diverse aggregation (concentration effect) or direct specific fiber growth (ligation effect).
- The distribution of amyloid polymorphs reflects the aggregation mechanism: heterogeneous for nonselective aggregation, narrow for specific interactions.
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