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  Cytoskeletal organization through multivalent interactions.

Braun, M., Diez, S., & Lansky, Z. (2020). Cytoskeletal organization through multivalent interactions. Journal of cell science, 133(12): jcs234393, pp. 1-1. doi:10.1242/jcs.234393.

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 Creators:
Braun, Marcus1, Author           
Diez, Stefan1, Author           
Lansky, Zdenek1, Author           
Affiliations:
1Max Planck Institute for Molecular Cell Biology and Genetics, Max Planck Society, ou_2340692              

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 Abstract: The cytoskeleton consists of polymeric protein filaments with periodic lattices displaying identical binding sites, which establish a multivalent platform for the binding of a plethora of filament-associated ligand proteins. Multivalent ligand proteins can tether themselves to the filaments through one of their binding sites, resulting in an enhanced reaction kinetics for the remaining binding sites. In this Opinion, we discuss a number of cytoskeletal phenomena underpinned by such multivalent interactions, namely (1) generation of entropic forces by filament crosslinkers, (2) processivity of molecular motors, (3) spatial sorting of proteins, and (4) concentration-dependent unbinding of filament-associated proteins. These examples highlight that cytoskeletal filaments constitute the basis for the formation of microenvironments, which cytoskeletal ligand proteins can associate with and, once engaged, can act within at altered reaction kinetics. We thus argue that multivalency is one of the properties crucial for the functionality of the cytoskeleton.

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 Dates: 2020-06-15
 Publication Status: Published in print
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 Identifiers: DOI: 10.1242/jcs.234393
Other: cbg-7702
PMID: 32540925
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Title: Journal of cell science
  Other : J Cell Sci
Source Genre: Journal
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Pages: - Volume / Issue: 133 (12) Sequence Number: jcs234393 Start / End Page: 1 - 1 Identifier: -