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Etv transcription factors functionally diverge from their upstream FGF signaling in lens development.


ABSTRACT: The signal regulated transcription factors (SRTFs) control the ultimate transcriptional output of signaling pathways. Here, we examined a family of FGF-induced SRTFs - Etv1, Etv 4, and Etv 5 - in murine lens development. Contrary to FGF receptor mutants that displayed loss of ERK signaling and defective cell differentiation, Etv deficiency augmented ERK phosphorylation without disrupting the normal lens fiber gene expression. Instead, the transitional zone for lens differentiation was shifted anteriorly as a result of reduced Jag1-Notch signaling. We also showed that Etv proteins suppresses mTOR activity by promoting Tsc2 expression, which is necessary for the nuclei clearance in mature lens. These results revealed the functional divergence between Etv and FGF in lens development, demonstrating that these SRTFs can operate outside the confine of their upstream signaling.

SUBMITTER: Garg A 

PROVIDER: S-EPMC7069720 | biostudies-literature | 2020 Feb

REPOSITORIES: biostudies-literature

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Etv transcription factors functionally diverge from their upstream FGF signaling in lens development.

Garg Ankur A   Hannan Abdul A   Wang Qian Q   Makrides Neoklis N   Zhong Jian J   Li Hongge H   Yoon Sungtae S   Mao Yingyu Y   Zhang Xin X  

eLife 20200211


The signal regulated transcription factors (SRTFs) control the ultimate transcriptional output of signaling pathways. Here, we examined a family of FGF-induced SRTFs - <i>Etv1</i>, <i>Etv 4</i>, and <i>Etv 5</i> - in murine lens development. Contrary to FGF receptor mutants that displayed loss of ERK signaling and defective cell differentiation, <i>Etv</i> deficiency augmented ERK phosphorylation without disrupting the normal lens fiber gene expression. Instead, the transitional zone for lens di  ...[more]

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