Novel glass surfaces with quasi-hexagonally arranged gold nanoparticles to control motor protein immobilisation and motor protein dependent microtubule transport were applied. We first show that the kinesin-like motor protein Eg5 adsorbs efficiently and selectively to gold nanodots comprising a molecular motor nanopattern, while the glass surface between nanodots is passivated by a layer of polyethylene glycol in order to reduce non-specific interactions of individual motors with the substrate. We show that the motor nanopattern and density is indeed controlled by the gold nanodot density. We then use these motor protein arrays to investigate the kinetics of microtubule transport and find that the characteristics of the molecular motor nano...
The modulation of protein molecular motors (actin-myosin) motility has been tested on several candid...
The actin-myosin system, responsible for muscle contraction, is also the force-generating element in...
ABSTRACT Microtubules and motor proteins are protein-based biological agents that work cooperatively...
Novel glass surfaces with quasi-hexagonally arranged gold nanoparticles to control motor protein imm...
This thesis describes experimental work at the interface of nanotechnology and biology. We combine f...
To extract useful work from biological motor proteins, it is necessary to orient microtubules travel...
Recent developments in optical microscopy and nanometer tracking have facilitated our understanding ...
Recent developments in optical microscopy and nanometer tracking have facilitated our understanding ...
Proteins have been optimized by evolution for billions of years to work on a nanometer scale. Theref...
We report on the generation of nanometer-wide, non-topographical patterns of proteins on planar surf...
Nanoscale transportation in engineered environments is critical towards designing efficient and smar...
Nowadays, biomolecular motor-based miniaturized lab-on-a-chip devices have been attracting much atte...
Motor-driven cytoskeletal filaments are versatile transport platforms for nanosized cargo in molecul...
The field of microfluidics has drastically contributed to downscale the size of benchtop experiments...
Protein molecular motors, which convert, directly and efficiently, chemical energy into motion, are ...
The modulation of protein molecular motors (actin-myosin) motility has been tested on several candid...
The actin-myosin system, responsible for muscle contraction, is also the force-generating element in...
ABSTRACT Microtubules and motor proteins are protein-based biological agents that work cooperatively...
Novel glass surfaces with quasi-hexagonally arranged gold nanoparticles to control motor protein imm...
This thesis describes experimental work at the interface of nanotechnology and biology. We combine f...
To extract useful work from biological motor proteins, it is necessary to orient microtubules travel...
Recent developments in optical microscopy and nanometer tracking have facilitated our understanding ...
Recent developments in optical microscopy and nanometer tracking have facilitated our understanding ...
Proteins have been optimized by evolution for billions of years to work on a nanometer scale. Theref...
We report on the generation of nanometer-wide, non-topographical patterns of proteins on planar surf...
Nanoscale transportation in engineered environments is critical towards designing efficient and smar...
Nowadays, biomolecular motor-based miniaturized lab-on-a-chip devices have been attracting much atte...
Motor-driven cytoskeletal filaments are versatile transport platforms for nanosized cargo in molecul...
The field of microfluidics has drastically contributed to downscale the size of benchtop experiments...
Protein molecular motors, which convert, directly and efficiently, chemical energy into motion, are ...
The modulation of protein molecular motors (actin-myosin) motility has been tested on several candid...
The actin-myosin system, responsible for muscle contraction, is also the force-generating element in...
ABSTRACT Microtubules and motor proteins are protein-based biological agents that work cooperatively...