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Titlebook: Cytoskeleton; Alexander D. Bershadsky,Juri M. Vasiliev Book 1988 Plenum Press, New York 1988 Capping.Elongation.Organe.Organelle.Terminati

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Architektur von AnwendungssystemenIntermediate filaments (IFs), as indicated by their name, are thicker than actin filaments, but thinner than microtubules. Their diameter in electron microscopic sections is 8–12 nm (Fig. 3.1A).It is possible that IFs, in contrast to actin filaments and microtubules, are not universal components of the cytoskeleton of all eukaryotic cells.
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IntroductionCytoskeleton is the system of fibrillar structures in the cytoplasm of eukaryotic cells (Fig. I.l). The three main types of fibrils forming these structures are microtubules, actin filaments, and intermediate filaments (Fig. I.2).
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Systems of Actin FilamentsActin filaments (Fig. 1.1) are the main components of a large group of cytoskeletal structures. These filaments, also called microfilaments or F-actin (filamentous actin), are polymerized from globular actin monomers (G-actin).
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Systems of Intermediate FilamentsIntermediate filaments (IFs), as indicated by their name, are thicker than actin filaments, but thinner than microtubules. Their diameter in electron microscopic sections is 8–12 nm (Fig. 3.1A).It is possible that IFs, in contrast to actin filaments and microtubules, are not universal components of the cytoskeleton of all eukaryotic cells.
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Regulation of Synthesis of Cytoskeletal Proteinson. Regulation of the state of the cytoskeleton involves two processes: (1) regulation of the expression of genes coding cytoskeletal proteins and of the synthesis of these proteins, and (2) regulations of the state of assembly of the cytoskeletal proteins and of the distribution of cytoskeletal elements.
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