SummarySingle-molecule atomic force microscopy and spectroscopy were applied to detect molecular interactions stabilizing the structure of halorhodopsin (HR), a light-driven chloride pump from Halobacterium salinarum. Because of the high structural and sequence similarities between HR and bacteriorhodopsin, we compared their unfolding pathways and polypeptide regions that established structurally stable segments against unfolding. Unfolding pathways and structural segments stabilizing the proteins both exhibited a remarkably high similarity. This suggests that different amino acid compositions can establish structurally indistinguishable energetic barriers. These stabilizing domains rather result from comprehensive interactions of all amino...
The correct folding and assembly of proteins within biological membranes is essential for membrane b...
Membrane proteins are exist in lipid bilayers and perform various biochemical reactions that are ess...
AbstractIn the last decade atomic force microscopy has been used to measure the mechanical stability...
SummarySingle-molecule atomic force microscopy and spectroscopy were applied to detect molecular int...
AbstractThe combination of high-resolution atomic force microscopy imaging and single-molecule force...
AbstractThe folding and stability of transmembrane proteins is a fundamental and unsolved biological...
AbstractBacteriorhodopsin (bR) is a haloarchaeal membrane protein that converts the energy of single...
The combination of high-resolution atomic force microscopy imaging and single-molecule force spectro...
Single-molecule force spectroscopy (SMFS) with atomic force microscope (AFM) has advanced our knowle...
Single-molecule force spectroscopy (SMFS) with atomic force microscope (AFM) has advanced our knowle...
Relatively little is known about the folding and stability of membrane proteins. Conventional therma...
SummarySelecting an individual membrane protein and probing its mechanical properties has become pos...
AbstractMechanical single-molecule techniques offer exciting possibilities to investigate protein fo...
AbstractRecent advances in atomic force microscopy allowed globular and membrane proteins to be mech...
AbstractThe folding mechanism of integral membrane proteins has eluded detailed study, largely as a ...
The correct folding and assembly of proteins within biological membranes is essential for membrane b...
Membrane proteins are exist in lipid bilayers and perform various biochemical reactions that are ess...
AbstractIn the last decade atomic force microscopy has been used to measure the mechanical stability...
SummarySingle-molecule atomic force microscopy and spectroscopy were applied to detect molecular int...
AbstractThe combination of high-resolution atomic force microscopy imaging and single-molecule force...
AbstractThe folding and stability of transmembrane proteins is a fundamental and unsolved biological...
AbstractBacteriorhodopsin (bR) is a haloarchaeal membrane protein that converts the energy of single...
The combination of high-resolution atomic force microscopy imaging and single-molecule force spectro...
Single-molecule force spectroscopy (SMFS) with atomic force microscope (AFM) has advanced our knowle...
Single-molecule force spectroscopy (SMFS) with atomic force microscope (AFM) has advanced our knowle...
Relatively little is known about the folding and stability of membrane proteins. Conventional therma...
SummarySelecting an individual membrane protein and probing its mechanical properties has become pos...
AbstractMechanical single-molecule techniques offer exciting possibilities to investigate protein fo...
AbstractRecent advances in atomic force microscopy allowed globular and membrane proteins to be mech...
AbstractThe folding mechanism of integral membrane proteins has eluded detailed study, largely as a ...
The correct folding and assembly of proteins within biological membranes is essential for membrane b...
Membrane proteins are exist in lipid bilayers and perform various biochemical reactions that are ess...
AbstractIn the last decade atomic force microscopy has been used to measure the mechanical stability...