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Published on: October 10, 2025
Distinct roles for N-Cadherin linked c-Src and fyn kinases in lens development
Michelle Leonard1, Liping Zhang, Brigid M Bleaken
1Department of Pathology, Anatomy and Cell Biology, Thomas Jefferson University, Philadelphia, Pennsylvania 19107, USA.
Background:
Src family tyrosine kinases (SFKs) are often coincidently expressed but few studies have dissected their individual functions in the same cell during development. Using the classical embryonic lens as our model, we investigated SFK signaling in the regulation of both differentiation initiation and morphogenesis, and the distinct functions of c-Src and Fyn in these processes.
Results:
Blocking SFK activity with the highly specific inhibitor PP1 induced initiation of the lens differentiation program but blocked lens fiber cell elongation and organization into mini lens-like structures called lentoids. These dichotomous roles for SFK signaling were discovered to reflect distinct functions of c-Src and Fyn and their differentiation-state-specific recruitment to and action at N-cadherin junctions. c-Src was highly associated with the nascent N-cadherin junctions of undifferentiated lens epithelial cells. Its siRNA knockdown promoted N-cadherin junctional maturation, blocked proliferation, and induced lens cell differentiation. In contrast, Fyn was recruited to mature N-cadherin junctions of differentiating lens cells and siRNA knockdown suppressed differentiation-specific gene expression and blocked morphogenesis.
Conclusions:
Through inhibition of N-cadherin junction maturation, c-Src promotes lens epithelial cell proliferation and the maintenance of the lens epithelial cell undifferentiated state, while Fyn, signaling downstream of mature N-cadherin junctions, promotes lens fiber cell morphogenesis.
Insights
Src family tyrosine kinases (SFKs) regulate lens development. c-Src maintains proliferation, while Fyn drives cell differentiation and morphogenesis via N-cadherin junctions.
Area of Science:
- Cell Biology
- Developmental Biology
- Biochemistry
Background:
- Src family tyrosine kinases (SFKs) play roles in development, but their distinct functions within the same cell are not fully understood.
- The embryonic lens provides a model to study SFK signaling in differentiation and morphogenesis.
Purpose of the Study:
- To investigate the individual roles of c-Src and Fyn in lens differentiation initiation and morphogenesis.
- To elucidate the mechanisms by which SFKs regulate N-cadherin junctions during lens development.
Main Methods:
- Utilized the embryonic lens as a model system.
- Employed the specific SFK inhibitor PP1.
- Used siRNA knockdown to target c-Src and Fyn.
- Investigated protein localization at N-cadherin junctions.
Main Results:
- SFK inhibition initiated differentiation but blocked fiber cell elongation and lentoid formation.
- c-Src localized to nascent N-cadherin junctions, promoting proliferation and maintaining the undifferentiated state.
- Fyn localized to mature N-cadherin junctions, suppressing differentiation and blocking morphogenesis upon knockdown.
Conclusions:
- c-Src inhibits N-cadherin junction maturation, promoting lens epithelial cell proliferation and maintaining an undifferentiated state.
- Fyn signals downstream of mature N-cadherin junctions, promoting lens fiber cell morphogenesis.
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