Inside cells, motor proteins perform a variety of complex tasks including the transport of vesicles and the separation of chromosomes. We demonstrate a novel use of such biological machines for the mechanical manipulation of nanostructures in a cell-free environment. Specifically, we show that purified kinesin motors in combination with chemically modified microtubules can transport and stretch individual -phage DNA molecules across a surface. This technique, in contrast to existing ones, enables the parallel yet individual manipulation of many molecules and may offer an efficient mechanism for assembling multidimensional DNA structures
DNA provides an ideal substrate for nanoscale construction and programmable dynamic mechanisms. DNA ...
Eukaryotic cells employ cytoskeletal motor proteins to efficiently organize and distribute intracell...
Cells are composed of macromolecular structures of various sizes that act individually or collective...
Inside cells, motor proteins perform a variety of complex tasks including the transport of vesicles ...
Kinesin is a molecular motor which walks on microtubule tracks in the eukaryotic cytoskeleton. It tr...
Kinesin is a molecular motor which walks on microtubule tracks in the eukaryotic cytoskeleton. It tr...
We have developed a technique to manipulate bifunctional DNA molecules: One end is thiolated to bind...
We have developed a technique to manipulate bifunctional DNA molecules: One end is thiolated to bind...
Intracellular protein motors have evolved to perform specific tasks critical to the function of cell...
Biological systems have evolved motor proteins programmed to perform intracellular transport powered...
Motor proteins, like kinesin, transport cargo within biological cells by transforming chemical energ...
Protein complexes belonging to the super-family of ATPases Associated with diverse Activities of the...
This thesis describes experimental work at the interface of nanotechnology and biology. We combine f...
Molecular machines are small assemblies harnessed to perform mechanical work in cells. These motors ...
This thesis describes experimental work at the interface of nanotechnology and biology. We combine f...
DNA provides an ideal substrate for nanoscale construction and programmable dynamic mechanisms. DNA ...
Eukaryotic cells employ cytoskeletal motor proteins to efficiently organize and distribute intracell...
Cells are composed of macromolecular structures of various sizes that act individually or collective...
Inside cells, motor proteins perform a variety of complex tasks including the transport of vesicles ...
Kinesin is a molecular motor which walks on microtubule tracks in the eukaryotic cytoskeleton. It tr...
Kinesin is a molecular motor which walks on microtubule tracks in the eukaryotic cytoskeleton. It tr...
We have developed a technique to manipulate bifunctional DNA molecules: One end is thiolated to bind...
We have developed a technique to manipulate bifunctional DNA molecules: One end is thiolated to bind...
Intracellular protein motors have evolved to perform specific tasks critical to the function of cell...
Biological systems have evolved motor proteins programmed to perform intracellular transport powered...
Motor proteins, like kinesin, transport cargo within biological cells by transforming chemical energ...
Protein complexes belonging to the super-family of ATPases Associated with diverse Activities of the...
This thesis describes experimental work at the interface of nanotechnology and biology. We combine f...
Molecular machines are small assemblies harnessed to perform mechanical work in cells. These motors ...
This thesis describes experimental work at the interface of nanotechnology and biology. We combine f...
DNA provides an ideal substrate for nanoscale construction and programmable dynamic mechanisms. DNA ...
Eukaryotic cells employ cytoskeletal motor proteins to efficiently organize and distribute intracell...
Cells are composed of macromolecular structures of various sizes that act individually or collective...