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Updated: May 19, 2026

A Protocol for Genetic Induction and Visualization of Benign and Invasive Tumors in Cephalic Complexes of Drosophila melanogaster
Published on: September 11, 2013
Sin3a acts through a multi-gene module to regulate invasion in Drosophila and human tumors
T K Das1, J Sangodkar, N Negre
1Department of Developmental and Regenerative Biology, Mount Sinai School of Medicine, New York, NY, USA.
Abstract:
Chromatin remodeling proteins regulate multiple aspects of cell homeostasis, making them ideal candidates for misregulation in transformed cells. Here, we explore Sin3A, a member of the Sin3 family of proteins linked to tumorigenesis that are thought to regulate gene expression through their role as histone deacetylases (HDACs). We identified Drosophila Sin3a as an important mediator of oncogenic Ret receptor in a fly model of Multiple Endocrine Neoplasia Type 2. Reducing Drosophila Sin3a activity led to metastasis-like behavior and, in the presence of Diap1, secondary tumors distant from the site of origin. Genetic and Chip-Seq analyses identified previously undescribed Sin3a targets including genes involved in cell motility and actin dynamics, as well as signaling pathways including Src, Jnk and Rho. A key Sin3a oncogenic target, PP1B, regulates stability of β-Catenin/Armadillo: the outcome is to oppose T-cell factor (TCF) function and Wg/Wnt pathway signaling in both fly and mammalian cancer cells. Reducing Sin3A strongly increased the invasive behavior of A549 human lung adenocarcinoma cells. We show that Sin3A is downregulated in a variety of human tumors and that Src, JNK, RhoA and PP1B/β-Catenin are regulated in a manner analogous to our Drosophila models. Our data suggest that Sin3A influences a specific step of tumorigenesis by regulating a module of genes involved in cell invasion. Tumor progression may commonly rely on such 'modules of invasion' under the control of broad transcriptional regulators.
Insights
Sin3A protein regulates cell invasion and tumor metastasis. Downregulation of Sin3A in human tumors suggests its role as a broad transcriptional regulator in cancer progression.
Area of Science:
- Cell Biology
- Molecular Biology
- Cancer Research
Background:
- Chromatin remodeling proteins are crucial for cell homeostasis and are implicated in cancer.
- Sin3A, a member of the Sin3 family, is linked to tumorigenesis and regulates gene expression via histone deacetylases (HDACs).
Purpose of the Study:
- To investigate the role of Sin3A in tumorigenesis, specifically its involvement in oncogenic signaling and cell invasion.
- To identify Sin3A targets and understand its regulatory mechanisms in both Drosophila and human cancer cells.
Main Methods:
- Utilized a Drosophila model of Multiple Endocrine Neoplasia Type 2 to study Sin3A function.
- Performed genetic and Chromatin Immunoprecipitation sequencing (ChIP-Seq) analyses to identify Sin3A targets.
- Examined the effect of Sin3A modulation on human lung adenocarcinoma cell invasion.
Main Results:
- Reduced Drosophila Sin3a activity promoted metastasis-like behavior and secondary tumor formation.
- Identified novel Sin3a targets involved in cell motility, actin dynamics, and signaling pathways (Src, Jnk, Rho).
- Sin3A downregulation was observed in human tumors, with analogous regulation of key pathways and β-Catenin stability.
Conclusions:
- Sin3A plays a critical role in regulating cell invasion, a key step in tumorigenesis.
- Sin3A influences a module of genes controlling cell invasion, suggesting its function as a broad transcriptional regulator in tumor progression.
- Targeting Sin3A or its regulated pathways may offer therapeutic strategies for invasive cancers.
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