AbstractThe movements of BKCa channels were investigated in live cells using quantum dots (QDs). The extracellular N-terminus was metabolically tagged with biotin, labeled with streptavidin-conjugated QDs and then monitored using real-time time-lapse imaging in COS-7 cells and cultured neurons. By tracking hundreds of channels, we were able to determine the characteristics of channel movements quantitatively. Channels in COS-7 cells exhibited a confined diffusion in an area of 1.915 μm2, with an initial diffusion coefficient of 0.033 μm2/s. In neurons, the channel movements were more heterogeneous and highly dependent on subcellular location. While the channels in soma diffused slowly without clear confinement, axodendritic channels showed ...
In this work, we reported that the quantum dot (QD) nanoparticles could be actively transported in t...
The cytoplasm is a highly complex and heterogeneous medium that is structured by the cytoskeleton. H...
AbstractThe stepwise movements generated by myosin, dynein, and kinesin were observed in living cell...
AbstractThe movements of BKCa channels were investigated in live cells using quantum dots (QDs). The...
Voltage-gated ion channels are main players involved in fast synaptic events. However, only slow int...
The presynaptic dopamine transporter mediates rapid reuptake of synaptic dopamine. Although cell sur...
We report the observation of individual steps taken by motor proteins in living cells by following m...
The crowded intracellular environment influences the diffusion-mediated cellular processes, such as ...
International audienceWe report a simple method using semiconductor quantum dots (QDs) to track the ...
AbstractThe lateral diffusion of BKCa channels was previously shown to be highly ‘confined’ in the C...
Dr. Z. Lenkei and Dr. D. Zala contributed equally to this work.International audienceSingle-particle...
ABSTRACT We report amethod for tracking individual quantum dot (QD) labeled proteins inside of live ...
Lipid rafts are cholesterol-enriched subdomains in the plasma membrane that have been reported to ac...
Single‐particle tracking with quantum dots (QDs) constitutes a powerful tool to track the nanoscopic...
AbstractSingle-molecule tracking of membrane proteins has become an important tool for investigating...
In this work, we reported that the quantum dot (QD) nanoparticles could be actively transported in t...
The cytoplasm is a highly complex and heterogeneous medium that is structured by the cytoskeleton. H...
AbstractThe stepwise movements generated by myosin, dynein, and kinesin were observed in living cell...
AbstractThe movements of BKCa channels were investigated in live cells using quantum dots (QDs). The...
Voltage-gated ion channels are main players involved in fast synaptic events. However, only slow int...
The presynaptic dopamine transporter mediates rapid reuptake of synaptic dopamine. Although cell sur...
We report the observation of individual steps taken by motor proteins in living cells by following m...
The crowded intracellular environment influences the diffusion-mediated cellular processes, such as ...
International audienceWe report a simple method using semiconductor quantum dots (QDs) to track the ...
AbstractThe lateral diffusion of BKCa channels was previously shown to be highly ‘confined’ in the C...
Dr. Z. Lenkei and Dr. D. Zala contributed equally to this work.International audienceSingle-particle...
ABSTRACT We report amethod for tracking individual quantum dot (QD) labeled proteins inside of live ...
Lipid rafts are cholesterol-enriched subdomains in the plasma membrane that have been reported to ac...
Single‐particle tracking with quantum dots (QDs) constitutes a powerful tool to track the nanoscopic...
AbstractSingle-molecule tracking of membrane proteins has become an important tool for investigating...
In this work, we reported that the quantum dot (QD) nanoparticles could be actively transported in t...
The cytoplasm is a highly complex and heterogeneous medium that is structured by the cytoskeleton. H...
AbstractThe stepwise movements generated by myosin, dynein, and kinesin were observed in living cell...