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Slik phosphorylation of Talin T152 is crucial for proper Talin recruitment and maintenance of muscle attachment in . | LitMetric

AI Article Synopsis

  • Talin is a key protein that connects integrin receptors to the actin cytoskeleton, crucial for muscle attachment and stability.
  • Phosphorylation of Talin, particularly at the T152 site during muscle development, affects its localization and functionality, with a mutated version showing reduced effectiveness.
  • The kinase Slik is responsible for phosphorylating Talin at T152, and its absence leads to similar issues seen with the Talin mutation, highlighting its importance in muscle attachment.

Article Abstract

Talin is the major scaffold protein linking integrin receptors with the actin cytoskeleton. In , extended Talin generates a stable link between the sarcomeric cytoskeleton and the tendon matrix at muscle attachment sites. Here, we identify phosphorylation sites on Talin by mass spectrometry. Talin is phosphorylated in late embryogenesis when muscles differentiate, especially on T152 in the exposed loop of the F1 domain of the Talin head. Localization of a mutated version of Talin (Talin-T150/T152A) is reduced at muscle attachment sites and can only partially rescue muscle attachment compared with wild-type Talin. We also identify Slik as the kinase phosphorylating Talin at T152. Slik localizes to muscle attachment sites, and the absence of Slik reduces the localization of Talin at muscle attachment sites causing phenotypes similar to Talin-T150/T152A. Thus, our results demonstrate that Talin phosphorylation by Slik plays an important role in fine-tuning Talin recruitment to integrin adhesion sites and maintaining muscle attachment.

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Source
http://dx.doi.org/10.1242/dev.176339DOI Listing

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