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Updated: May 26, 2026

The Soft Agar Colony Formation Assay
Published on: October 27, 2014
Cell division cycle 7 is a novel regulator of transforming growth factor-β-induced smooth muscle cell differentiation
Ning Shi1, Wei-Bing Xie, Shi-You Chen
1Department of Physiology & Pharmacology, University of Georgia, Athens, Georgia 30602, USA.
Abstract:
Smooth muscle cell (SMC) differentiation and proliferation occur simultaneously during embryonic development. The underlying mechanisms especially common factors regulating both processes, however, remain largely unknown. The present study has identified cell division cycle 7 (Cdc7) as one of the factors mediating both the proliferation and SMC differentiation. TGF-β induces Cdc7 expression and phosphorylation in the initial phase of SMC differentiation of pluripotent mesenchymal C3H10T1/2 cells. Cdc7 specific inhibitor or shRNA knockdown suppresses TGF-β-induced expression of SMC early markers including α-SMA, SM22α, and calponin. Cdc7 overexpression, on the other hand, enhances SMC marker expression. Cdc7 function in inducing SMC differentiation is independent of Dumbbell former 4 or Dbf4, the catalytic subunit of Cdc7 critical for cell proliferation, suggesting that Cdc7 mediates SMC differentiation through a mechanism distinct from cell proliferation. Cdc7 regulates SMC differentiation via activating SMC marker gene transcription. Knockdown of Cdc7 by shRNA inhibits SMC marker gene promoter activities. Mechanistically, Cdc7 interacts with Smad3 to induce SMC differentiation. Smad3 is required for Cdc7 function in inducing SMC promoter activities and marker gene expression. Likewise, Cdc7 enhances Smad3 binding to SMC marker promoter via supporting Smad3 nuclear retention and physically interacting with Smad3. Taken together, our studies have demonstrated a novel role of Cdc7 in SMC differentiation.
Insights
Cell division cycle 7 (Cdc7) promotes smooth muscle cell (SMC) differentiation by activating gene transcription. This process involves Cdc7 interacting with Smad3, independent of its role in cell proliferation.
Area of Science:
- Cell Biology
- Developmental Biology
- Molecular Biology
Background:
- Smooth muscle cell (SMC) differentiation and proliferation are crucial during embryonic development.
- The common regulatory mechanisms and factors for both processes are not well understood.
Purpose of the Study:
- To identify novel factors regulating both SMC proliferation and differentiation.
- To elucidate the specific role of cell division cycle 7 (Cdc7) in SMC differentiation.
Main Methods:
- Utilized C3H10T1/2 cells and TGF-β induction.
- Employed Cdc7 specific inhibitors and shRNA knockdown.
- Investigated gene expression, promoter activity, and protein interactions (Cdc7 and Smad3).
Main Results:
- Cdc7 expression and phosphorylation are induced by TGF-β during early SMC differentiation.
- Cdc7 inhibition suppressed SMC marker expression, while overexpression enhanced it.
- Cdc7 mediates SMC differentiation via Smad3 interaction, independently of its proliferation function.
Conclusions:
- Cell division cycle 7 (Cdc7) plays a novel and critical role in regulating SMC differentiation.
- Cdc7 activates SMC marker gene transcription through interaction with Smad3.
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