Mechanical Engineering and Materials Science
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Improving single molecule force spectroscopy through automated real-time data collection and quantification of experimental conditions.
Ultramicroscopy Jan, 2014 | Pubmed ID: 24001740
Origin of overstretching transitions in single-stranded nucleic acids.
Physical review letters Nov, 2013 | Pubmed ID: 24237568
Single molecule mechanical manipulation for studying biological properties of proteins, DNA, and sugars.
Wiley interdisciplinary reviews. Nanomedicine and nanobiotechnology May-Jun, 2014 | Pubmed ID: 24347439
Unraveling the mysteries of chaperone interactions of the myosin head.
Biophysical journal Aug, 2014 | Pubmed ID: 25099791
Chaperones rescue luciferase folding by separating its domains.
The Journal of biological chemistry Oct, 2014 | Pubmed ID: 25160632
Capturing the mechanical unfolding pathway of a large protein with coiled-coil probes.
Angewandte Chemie (International ed. in English) Dec, 2014 | Pubmed ID: 25339429
Direct observation of multimer stabilization in the mechanical unfolding pathway of a protein undergoing oligomerization.
ACS nano Feb, 2015 | Pubmed ID: 25639698
Modular, Nondegenerate Polyprotein Scaffolds for Atomic Force Spectroscopy.
Biomacromolecules 07, 2016 | Pubmed ID: 27276010
Single-molecule Force Spectroscopy Reveals the Calcium Dependence of the Alternative Conformations in the Native State of a βγ-Crystallin Protein.
The Journal of biological chemistry 08, 2016 | Pubmed ID: 27378818
Competing Pathways and Multiple Folding Nuclei in a Large Multidomain Protein, Luciferase.
Biophysical journal May, 2017 | Pubmed ID: 28494954
Relevance of the Speed and Direction of Pulling in Simple Modular Proteins.
Journal of chemical theory and computation Jun, 2018 | Pubmed ID: 29771510
AFM-Based Single-Molecule Force Spectroscopy of Proteins.
Methods in molecular biology (Clifton, N.J.) , 2018 | Pubmed ID: 29956225
Unraveling the Mechanical Unfolding Pathways of a Multidomain Protein: Phosphoglycerate Kinase.
Biophysical journal Jul, 2018 | Pubmed ID: 29972811
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