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Another of his interests is the cytoskeleton and its dynamics.
They act as a cytoskeleton to help the cell maintain its shape.
The role of the cytoskeleton in shape generation and maintenance is important.
The cytoskeleton is a kind of scaffolding present in all cells.
However, some structures in the bacterial cytoskeleton may have yet to be identified.
Large holes appear in the cytoskeleton 35 hours post invasion.
A major subject in this category is the cytoskeleton.
This can lead to degradation of the cytoskeleton and plasma membrane.
The cytoskeleton is a system of scaffolding that keeps cell shape.
In both cases the end result is a weakness in the cytoskeleton of the cell.
It is thought that the result downstream from this signalling could influence the cytoskeleton.
This was an independent event from disruption of the actin cytoskeleton.
The protein encoded by this gene is a component of the cytoskeleton.
Protein 4.2 is a cytoskeleton protein found in red blood cells.
The force required to rake the surface could be provided by the actin cytoskeleton.
It is part of the cytoskeleton in eukaryote.
Actin is a major building block of every eukaryotic cell's cytoskeleton.
It is mainly involved in regulating the shape and movement of cells by acting on the cytoskeleton.
It generally involves drastic changes in cell shape which are driven by the cytoskeleton.
Their cytoplasmic domains interact with the cell cytoskeleton to anchor them.
This means that the sarcolemma is not attached to the cytoskeleton.
The association with the cytoskeleton determines mitochondrial shape, which can affect the function as well.
It is unclear how the cytoskeleton is activated in this restricted region.
It has been reported that activated integrins are associated with the cytoskeleton.
One is the cytoskeleton or scaffolding that gives internal shape to embryonic cells.