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A Protocol for Genetic Induction and Visualization of Benign and Invasive Tumors in Cephalic Complexes of Drosophila melanogaster
Published on: September 11, 2013
CtBP modulates Snail-mediated tumor invasion in Drosophila
Chenxi Wu1,2, Xiang Ding1, Zhuojie Li1
1The First Rehabilitation Hospital of Shanghai, Shanghai Key Laboratory of Signaling and Diseases Research, School of Life Science and Technology, Tongji University, 1239 Siping Road, Shanghai, 200092, China.
Abstract:
Cancer is one of the most fatal diseases that threaten human health, whereas more than 90% mortality of cancer patients is caused by tumor metastasis, rather than the growth of primary tumors. Thus, how to effectively control or even reverse the migration of tumor cells is of great significance for cancer therapy. CtBP, a transcriptional cofactor displaying high expression in a variety of human cancers, has become one of the main targets for cancer prediction, diagnosis, and treatment. The roles of CtBP in promoting tumorigenesis have been well studied in vitro, mostly based on gain-of-function, while its physiological functions in tumor invasion and the underlying mechanism remain largely elusive. Snail (Sna) is a well-known transcription factor involved in epithelial-to-mesenchymal transition (EMT) and tumor invasion, yet the mechanism that regulates Sna activity has not been fully understood. Using Drosophila as a model organism, we found that depletion of CtBP or snail (sna) suppressed RasV12/lgl-/--triggered tumor growth and invasion, and disrupted cell polarity-induced invasive cell migration. In addition, loss of CtBP inhibits RasV12/Sna-induced tumor invasion and Sna-mediated invasive cell migration. Furthermore, both CtBP and Sna are physiologically required for developmental cell migration during thorax closure. Finally, Sna activates the JNK signaling and promotes JNK-dependent cell invasion. Given that CtBP physically interacts with Sna, our data suggest that CtBP and Sna may form a transcriptional complex that regulates JNK-dependent tumor invasion and cell migration in vivo.
Insights
Cancer metastasis drives mortality. This study reveals that CtBP and Snail (Sna) form a complex regulating JNK-dependent tumor invasion and cell migration, offering new therapeutic targets.
Area of Science:
- Molecular Biology
- Cancer Research
- Developmental Biology
Background:
- Tumor metastasis, not primary tumor growth, causes most cancer deaths.
- CtBP is highly expressed in many cancers and is a target for cancer therapy.
- The in vivo functions of CtBP in tumor invasion and Snail (Sna) regulation are not fully understood.
Purpose of the Study:
- To investigate the physiological roles of CtBP and Sna in tumor invasion and cell migration.
- To elucidate the underlying molecular mechanisms regulating Snail activity and its role in cancer.
Main Methods:
- Utilized Drosophila as a model organism to study tumor growth, invasion, and cell migration.
- Employed genetic manipulation (depletion of CtBP or Sna) to assess their functions.
- Investigated the interaction between CtBP and Sna, and their effect on JNK signaling.
Main Results:
- Depletion of CtBP or Sna suppressed RasV12/lgl-/--induced tumor growth and invasion.
- Loss of CtBP inhibited RasV12/Sna-induced tumor invasion and Sna-mediated cell migration.
- CtBP and Sna are essential for developmental cell migration during Drosophila thorax closure.
- Sna activates JNK signaling, which promotes JNK-dependent cell invasion.
- CtBP physically interacts with Sna.
Conclusions:
- CtBP and Sna form a transcriptional complex that regulates JNK-dependent tumor invasion and cell migration in vivo.
- This complex plays a crucial role in both cancer progression and normal developmental processes.
- Targeting the CtBP-Sna interaction could offer novel therapeutic strategies for controlling cancer metastasis.
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