Abstract
Integrin α7β1 is the major laminin binding integrin receptor of muscle cells. The α7 chain occurs in several splice isoforms, of which α7A and α7B differ in their intracellular domains only. The fact that the expression of α7A and α7B is tightly regulated during skeletal muscle development suggests different and distinct roles for both isoforms. However, so far, functional properties and interacting proteins were described for the α7B chain only. Using a yeast two-hybrid screen, we have found that Def-6, a guanine nucleotide exchange factor for Rac1, binds to the intracellular domain of the α7A subunit. The specificity of the Def-6-α7A interaction has been shown by direct yeast two-hybrid binding assays and coprecipitation experiments. This is the first description of an α7A-specific and -exclusive interaction, because Def-6 did not bind to any other tested integrin cytoplasmic domain. Interestingly, the binding of Def-6 to α7A was abolished, when cells were cotransfected with an Src-related kinase, which is known to phosphorylate Def-6 and stimulate its exchange activity. We found expression of Def-6 was not only restricted to T-lymphocytes as described thus far but in a more widespread manner, including different muscle tissues. In cells, Def-6 is seen in newly forming cell protrusions and focal adhesions, and its localization partially overlaps with the α7A integrin receptor. C2C12 myoblasts overexpressing Def-6 show a delay of Rac1 inactivation during myogenic differentiation and abnormal myotube formation. Thus, our data suggest a role for Def-6 in the fine regulation of Rac1 during myogenesis with the integrin α7A chain guiding this regulation in a spatio-temporal manner. © 2007 by The American Society for Biochemistry and Molecular Biology, Inc.
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CITATION STYLE
Samson, T., Will, C., Knoblauch, A., Sharek, L., Von Der Mark, K., Burridge, K., & Wixler, V. (2007). Def-6, a guanine nucleotide exchange factor for Rac1, interacts with the skeletal muscle integrin chain α7A and influences myoblast differentiation. Journal of Biological Chemistry, 282(21), 15730–15742. https://doi.org/10.1074/jbc.M611197200
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