Single-molecule force spectroscopy of polycystic kidney disease proteins.
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Summary
Protein engineering strategies and single-molecule AFM techniques for probing protein mechanics, with special emphasis on polycystic kidney disease (PKD) proteins are described and step-by-step protocols for preparing proteins and performing single-mite force measurements are provided.
- Type
- dissertation
- Published
- 2012-01-01
- Cited by
- 2
- References
- 32
- OpenAlex
- https://openalex.org/W22573448
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:38049404
Keywords
Humanities, Segmentation, Computer science, Artificial intelligence, Art
References
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- Pulling single molecules of titin by AFM—recent advances and physiological implications
- Statistical mechanics of supercoiled DNA.
- Stretching single molecules along unbinding and unfolding pathways with the scanning force microscope.
- Removal of the MDCK Cell Primary Cilium Abolishes Flow Sensing
- Force spectroscopy of single biomolecules.
- Mechanotransduction gone awry
- The micro‐mechanics of single molecules studied with atomic force microscopy
- Mechanical Biochemistry of Proteins One Molecule at a Time*
- Homocysteine-mediated reactivity and assembly of gold nanoparticles.
- Bending the MDCK Cell Primary Cilium Increases Intracellular Calcium
- Biomechanics, One Molecule at a Time*
- Entropic elasticity of lambda-phage DNA.
- Atomic force microscopy: mechanical unfolding of proteins.
- Silanized surfaces for in vitro studies of actomyosin function and nanotechnology applications.
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