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An integrin phosphorylation switch: the effect of beta3 integrin tail phosphorylation on DOK1 and talin binding.

J Biol Chem.. 2008-02;  283(9):5420 - 5426
Camilla L. Oxley, Nicholas J. Anthis, Edward D. Lowe, Ioannis Vakonakis, Iain D. Campbell, and Kate L. Wegener. Department of Biochemistry, University of Oxford, South Parks Road, Oxford OX1 3QU, United Kingdom.
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摘要

Integrins play a fundamental role in cell migration and adhesion; knowledge of how they are regulated and controlled is vital for understanding these processes. Recent work showed that Dok1 negatively regulates integrin activation, presumably by competition with talin. To understand how this occurs, we used NMR spectroscopy and x-ray crystallography to investigate the molecular details of interactions with integrins. The binding affinities of beta3 integrin tails for the Dok1 and talin phosphotyrosine binding domains were quantified using 15N-1H hetero-nuclear single quantum correlation titrations, revealing that the unphosphorylated integrin tail binds more strongly to talin than Dok1. Chemical shift mapping s... More

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