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Publication : Structural and Functional Analysis of a Talin Triple-Domain Module Suggests an Alternative Talin Autoinhibitory Configuration.

First Author  Zhang H Year  2016
Journal  Structure Volume  24
Issue  5 Pages  721-729
PubMed ID  27150043 Mgi Jnum  J:245362
Mgi Id  MGI:5918754 Doi  10.1016/j.str.2016.02.020
Citation  Zhang H, et al. (2016) Structural and Functional Analysis of a Talin Triple-Domain Module Suggests an Alternative Talin Autoinhibitory Configuration. Structure 24(5):721-729
abstractText  Talin plays an important role in regulating integrin-mediated signaling. Talin function is autoinhibited by intramolecular interactions between the integrin-binding F3 domain and the autoinhibitory domain (R9). We determined the crystal structure of a triple-domain fragment, R7R8R9, which contains R9 and the RIAM (Rap1-interacting adaptor molecule) binding domain (R8). The structure reveals a crystallographic contact between R9 and a symmetrically related R8 domain, representing a homodimeric interaction in talin. Strikingly, we demonstrated that the alpha5 helix of R9 also interacts with the F3 domain, despite no interdomain contact involving the alpha5 helix in the crystal structure of an F2F3:R9 autoinhibitory complex reported previously. Mutations on the alpha5 helix significantly diminish the F3:R9 association and lead to elevated talin activity. Our results offer biochemical and functional evidence of the existence of a new talin autoinhibitory configuration, thus providing a more comprehensive understanding of talin autoinhibition, regulation, and quaternary structure assembly.
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