ABSTRACT Intracellular transport in plant cells occurs on microtubular and actin arrays. Cy-toplasmic streaming, the rapid motion of plant cell organelles, is mostly driven by an actin– myosin mechanism, whereas specialized functions, such as the transport of large cargo or the assembly of a new cell wall during cell division, are performed by the microtubules. Different modes of transport are used, fast and slow, to either haul cargo over long distances or ascer-tain high-precision targeting, respectively. Various forms of the actin-specific motor protein myosin XI exist in plant cells and might be involved in different cellular functions
AbstractEukaryotic cells create internal order by using protein motors to transport molecules and or...
Plant cells show myosin-driven organelle movement, called cytoplasmic streaming. Soluble molecules, ...
The plant secretory pathway is responsible for the production of the majority of proteins and carboh...
Plant cells exhibit active movement of membrane-bounded materials, which is more pronounced in large...
Abstract Recent studies of aquatic and land plants show that similar phenomena determine intracellul...
SummaryCytoplasmic streaming is active transport widely occurring in plant cells ranging from algae ...
Using genetic approaches, particle image velocimetry and an inert tracer of cytoplasmic streaming, w...
<div><p>Using genetic approaches, particle image velocimetry and an inert tracer of cytoplasmic stre...
Abstract Background The cytoskeletal mechanisms that underlie organelle transport in plants are inti...
In the crowded interior of a cell, diffusion alone is insufficient to master varying transport requi...
The cytoskeleton of eukaryotic cells is a combination of different proteins that specifically intera...
<p>The active, myosin-driven transport of the MyoB membrane compartment along the F-actin bundles en...
Eukaryotic cells are divided into a complex system of compartments, with their spatial organization ...
Using genetic approaches, particle image velocimetry and an inert tracer of cytoplasmic streaming, w...
Plant cells show myosin-driven organelle movement, called cytoplasmic streaming. Soluble molecules, ...
AbstractEukaryotic cells create internal order by using protein motors to transport molecules and or...
Plant cells show myosin-driven organelle movement, called cytoplasmic streaming. Soluble molecules, ...
The plant secretory pathway is responsible for the production of the majority of proteins and carboh...
Plant cells exhibit active movement of membrane-bounded materials, which is more pronounced in large...
Abstract Recent studies of aquatic and land plants show that similar phenomena determine intracellul...
SummaryCytoplasmic streaming is active transport widely occurring in plant cells ranging from algae ...
Using genetic approaches, particle image velocimetry and an inert tracer of cytoplasmic streaming, w...
<div><p>Using genetic approaches, particle image velocimetry and an inert tracer of cytoplasmic stre...
Abstract Background The cytoskeletal mechanisms that underlie organelle transport in plants are inti...
In the crowded interior of a cell, diffusion alone is insufficient to master varying transport requi...
The cytoskeleton of eukaryotic cells is a combination of different proteins that specifically intera...
<p>The active, myosin-driven transport of the MyoB membrane compartment along the F-actin bundles en...
Eukaryotic cells are divided into a complex system of compartments, with their spatial organization ...
Using genetic approaches, particle image velocimetry and an inert tracer of cytoplasmic streaming, w...
Plant cells show myosin-driven organelle movement, called cytoplasmic streaming. Soluble molecules, ...
AbstractEukaryotic cells create internal order by using protein motors to transport molecules and or...
Plant cells show myosin-driven organelle movement, called cytoplasmic streaming. Soluble molecules, ...
The plant secretory pathway is responsible for the production of the majority of proteins and carboh...