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Mutra, R.

Publications and source records attributed to Mutra, R..

2 recordsLinked to original sources

POZ Domain Transcription Factor Kaiso is a Downstream Effector of STAT1 for Multiple Myeloma Cell Survival and is also essential for Anoikis Resistance of Metastatic Solid Tumors

Role of the transcription factor STAT1 in cancer cell survival has remained unclear. Here we document an oncogenic role for STAT1 in Multiple Myeloma (MM), wherein STAT1 regulates Kaiso expression, represses bmf and is essential for MM cell survival. Moreover, STAT1 is constitutively phosphorylated in MM cell lines and patient derived primary MM cells and STAT1-depletion resulted in reduced Kaiso levels. Importantly, expression of exogenous Kaiso rescued STAT1-depleted MM cells from apoptosis by reversing elevated BMF levels. Further, several MM cell lines harboring diverse oncogenic mutations rely on Kaiso for their survival revealing an oncogenic addiction to Kaiso in MM. Mechanistically, Kaiso interacts with and recruits HDAC1 to pro-apoptotic gene bmf promoter to maintain repressive state. In line with this, depletion of Kaiso or HDAC1 results in elevated BMF levels and apoptosis of MM cells. Kaiso is abundantly expressed in several MM cell lines and patient derived primary MM cells. Interestingly, Kaiso interacting partner p120-catenin levels are very low/undetectable in MM indicating that Kaiso function in MM is p120-independent. While previous reports suggested anoikis promoting role for Kaiso in breast cancer, we show here that bmf repression by Kaiso is central to anoikis-resistance of metastatic solid tumors. Collectively, our data indicate that Kaiso is a downstream effector for STAT1 in MM cell survival and that Kaiso mediated bmf repression is central to MM cell survival and anoikis resistance of metastatic solid tumors. Targetting Kaiso-mediated bmf repression would enable us to develop common drug for MM and metastasis of solid tumors.

cancer biology↗

Transcriptional Repression by RelA and Yin Yang1 is essential for survival of Colorectal Cancer Cells

NF-{kappa}B is primarily known for its transcriptional activation function in the context of immune responses, inflammation, cell survival, proliferation and Cancer. However, whether NF-{kappa}B functions as a transcriptional repressor in the context of tumor growth has not been well addressed. While, classical NF-kB activated by IKK-b has been shown to play a tumor promoting role in colorectal cancer, couple of studies suggested that overexpression of RelA in colorectal cancer cells leads to apoptosis. These findings were contradictor and puzzling with regards to the role of RelA in colorectal cancer. Here, we report that RelA represses proapoptotic gene puma and contributes to colorectal cancer cell survival. Interestingly, Yin-Yang1, a RelA target gene product is also essential to repress puma and contributes to colorectal cancer cell survival. Moreover, RelA and YY1 form a complex in colorectal cancer cells. Depletion of either RelA or YY1 results in upregulation of pro-apoptotic gene Puma. Importantly, we show that binding of Yin Yang1 to RelA impairs transcriptional activation by RelA suggesting that YY1 is an inhibitor of RelA function. Collectively, we present evidence for RelA-YY1 complex formation in colorectal cancer cells, both RelA and YY1 function as transcriptional repressors of puma and contribute to survival of colorectal cancer cells.

cancer biology↗