Projects per year
Abstract
Cataract is a protein misfolding disease where the size of the aggregate is directly related to the severity of the disorder. However, the molecular mechanisms that trigger the onset of aggregation remain unknown. Here we use a combination of protein engineering techniques and single-molecule force spectroscopy using atomic force microscopy to study the individual unfolding pathways of the human γD-crystallin, a multidomain protein that must remain correctly folded during the entire lifetime to guarantee lens transparency. When stretching individual poly-proteins containing two neighboring HγD-crystallin monomers, we captured an anomalous misfolded conformation in which the β1 and β2 strands of the N terminus domain of two adjacent monomers swap. This experimentally elusive domain-swapped conformation is likely to be responsible for the increase in molecular aggregation that we measure in vitro. Our results demonstrate the power of force spectroscopy at capturing rare misfolded conformations with potential implications for the understanding of the molecular onset of protein aggregation.
Original language | English |
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Pages (from-to) | 4226-4235 |
Number of pages | 10 |
Journal | Journal of Biological Chemistry |
Volume | 291 |
Issue number | 8 |
Early online date | 24 Dec 2015 |
DOIs | |
Publication status | Published - 19 Feb 2016 |
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Dive into the research topics of 'Single-molecule force spectroscopy predicts a misfolded, domain-swapped conformation in human γD-crystallin protein'. Together they form a unique fingerprint.Projects
- 3 Finished
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The nanomechanics of a single protein
Garcia-Manyes, S. (Primary Investigator)
EPSRC Engineering and Physical Sciences Research Council
1/10/2012 → 31/03/2018
Project: Research
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The molecular mechanisms determining the onset of protein aggregation revealed by single molecule force-clamp spectroscopy
Garcia-Manyes, S. (Primary Investigator)
BBSRC Biotechnology and Biological Sciences Research Council
1/12/2011 → 1/04/2015
Project: Research
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ForcePROT - Conformational dynamics of single molecules under force
Garcia-Manyes, S. (Primary Investigator)
1/09/2011 → 31/08/2015
Project: Research