Motor-based transport mechanisms are critical for a wide range of eukaryotic cell functions, including the transport of vesicle cargos over long distances. Our understanding of the factors that control and regulate motors when bound to a lipid substrate is however incomplete. We used microtubule gliding assays on a lipid bilayer substrate to investigate the role of membrane diffusion in kinesin-1 on/off binding kinetics and thereby transport velocity. Fluorescence imaging experiments demonstrate motor clustering on single microtubules due to membrane diffusion in the absence of ATP, followed by rapid ATP-induced dissociation during gliding. Our experimental data combined with analytical modeling show that the on/off binding kinetics of the ...
Molecular motors often work collectively inside the cell. While the properties of individual motors ...
AbstractThe molecular motor protein Kinesin-1 drives intracellular transport of vesicles, by binding...
Molecular motors often work collectively inside the cell. While the properties of individual motors ...
In eukaryotic cells, membranous vesicles and organelles are transported by ensembles of motor protei...
In eukaryotic cells, membranous vesicles and organelles are transported by ensembles of motor protei...
In eukaryotic cells, membranous vesicles and organelles are transported by ensembles of motor protei...
Understanding the intricacies of biological systems from a first principal approach has provided muc...
Intracellular transport of membrane-bound vesicles and organelles is a process fundamental for many ...
Kinesin-1 (hereafter referred to as kinesin) is a major microtubule-based motor protein for plus-end...
Intracellular transport of membrane-bound vesicles and organelles is a process fundamental for many ...
AbstractKey cellular processes such as cell division, membrane compartmentalization, and intracellul...
Motor-driven cytoskeletal filaments are versatile transport platforms for nanosized cargo in molecul...
The maintenance of intracellular processes, like organelle transport and cell division, depend on bi...
AbstractIntracellular cargo transport frequently involves multiple motor types, either having opposi...
AbstractKey cellular processes such as cell division, membrane compartmentalization, and intracellul...
Molecular motors often work collectively inside the cell. While the properties of individual motors ...
AbstractThe molecular motor protein Kinesin-1 drives intracellular transport of vesicles, by binding...
Molecular motors often work collectively inside the cell. While the properties of individual motors ...
In eukaryotic cells, membranous vesicles and organelles are transported by ensembles of motor protei...
In eukaryotic cells, membranous vesicles and organelles are transported by ensembles of motor protei...
In eukaryotic cells, membranous vesicles and organelles are transported by ensembles of motor protei...
Understanding the intricacies of biological systems from a first principal approach has provided muc...
Intracellular transport of membrane-bound vesicles and organelles is a process fundamental for many ...
Kinesin-1 (hereafter referred to as kinesin) is a major microtubule-based motor protein for plus-end...
Intracellular transport of membrane-bound vesicles and organelles is a process fundamental for many ...
AbstractKey cellular processes such as cell division, membrane compartmentalization, and intracellul...
Motor-driven cytoskeletal filaments are versatile transport platforms for nanosized cargo in molecul...
The maintenance of intracellular processes, like organelle transport and cell division, depend on bi...
AbstractIntracellular cargo transport frequently involves multiple motor types, either having opposi...
AbstractKey cellular processes such as cell division, membrane compartmentalization, and intracellul...
Molecular motors often work collectively inside the cell. While the properties of individual motors ...
AbstractThe molecular motor protein Kinesin-1 drives intracellular transport of vesicles, by binding...
Molecular motors often work collectively inside the cell. While the properties of individual motors ...