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Talin Contains A C-Terminal Calpain2 Cleavage Site Important In Focal Adhesion Dynamics

Overview of attention for article published in PLOS ONE, April 2012
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Title
Talin Contains A C-Terminal Calpain2 Cleavage Site Important In Focal Adhesion Dynamics
Published in
PLOS ONE, April 2012
DOI 10.1371/journal.pone.0034461
Pubmed ID
Authors

Neil Bate, Alexandre R. Gingras, Alexia Bachir, Rick Horwitz, Feng Ye, Bipin Patel, Benjamin T. Goult, David R. Critchley

Abstract

Talin is a large (∼2540 residues) dimeric adaptor protein that associates with the integrin family of cell adhesion molecules in cell-extracellular matrix junctions (focal adhesions; FAs), where it both activates integrins and couples them to the actin cytoskeleton. Calpain2-mediated cleavage of talin between the head and rod domains has previously been shown to be important in FA turnover. Here we identify an additional calpain2-cleavage site that removes the dimerisation domain from the C-terminus of the talin rod, and show that an E2492G mutation inhibits calpain cleavage at this site in vitro, and increases the steady state levels of talin1 in vivo. Expression of a GFP-tagged talin1 E2492G mutant in CHO.K1 cells inhibited FA turnover and the persistence of cell protrusion just as effectively as a L432G mutation that inhibits calpain cleavage between the talin head and rod domains. Moreover, incorporation of both mutations into a single talin molecule had an additive effect clearly demonstrating that calpain cleavage at both the N- and C-terminal regions of talin contribute to the regulation of FA dynamics. However, the N-terminal site was more sensitive to calpain cleavage suggesting that lower levels of calpain are required to liberate the talin head and rod fragments than are needed to clip off the C-terminal dimerisation domain. The talin head and rod liberated by calpain2 cleavage have recently been shown to play roles in an integrin activation cycle important in FA turnover and in FAK-dependent cell cycle progression respectively. The half-life of the talin head is tightly regulated by ubiquitination and we suggest that removal of the C-terminal dimerisation domain from the talin rod may provide a mechanism both for terminating the signalling function of the talin rod and indeed for inactivating full-length talin thereby promoting FA turnover at the rear of the cell.

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Geographical breakdown

Country Count As %
Finland 1 1%
United States 1 1%
Unknown 88 98%

Demographic breakdown

Readers by professional status Count As %
Student > Ph. D. Student 29 32%
Student > Bachelor 13 14%
Researcher 11 12%
Student > Master 11 12%
Student > Postgraduate 4 4%
Other 11 12%
Unknown 11 12%
Readers by discipline Count As %
Agricultural and Biological Sciences 29 32%
Biochemistry, Genetics and Molecular Biology 24 27%
Engineering 8 9%
Medicine and Dentistry 4 4%
Physics and Astronomy 3 3%
Other 8 9%
Unknown 14 16%