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Analysis of SCAP N-glycosylation and Trafficking in Human Cells
Published on: November 8, 2016
The SREBP-dependent regulation of cyclin D1 coordinates cell proliferation and lipid synthesis
Arwa Aldaalis1, Maria T Bengoechea-Alonso1, Johan Ericsson1,2
1Division of Biological and Biomedical Sciences, College of Health and Life Sciences, Hamad Bin Khalifa University, Education City, Doha, Qatar.
Abstract:
The sterol regulatory-element binding protein (SREBP) family of transcription factors regulates cholesterol, fatty acid, and triglyceride synthesis and metabolism. However, they are also targeted by the ubiquitin ligase Fbw7, a major tumor suppressor, suggesting that they could regulate cell growth. Indeed, enhanced lipid synthesis is a hallmark of many human tumors. Thus, the SREBP pathway has recently emerged as a potential target for cancer therapy. We have previously demonstrated that one of these transcription factors, SREBP1, is stabilized and remains associated with target promoters during mitosis, suggesting that the expression of these target genes could be important as cells enter G1 and transcription is restored. Activation of cyclin D-cdk4/6 complexes is critical for the phosphorylation and inactivation of the retinoblastoma protein (Rb) family of transcriptional repressors and progression through the G1 phase of the cell cycle. Importantly, the cyclin D-cdk4/6-Rb regulatory axis is frequently dysregulated in human cancer. In the current manuscript, we demonstrate that SREBP1 activates the expression of cyclin D1, a coactivator of cdk4 and cdk6, by binding to an E-box in the cyclin D1 promoter. Consequently, inactivation of SREBP1 in human liver and breast cancer cell lines reduces the expression of cyclin D1 and attenuates Rb phosphorylation. Rb phosphorylation in these cells can be rescued by restoring cyclin D1 expression. On the other hand, expression of active SREBP1 induced the expression of cyclin D1 and increased the phosphorylation of Rb in a manner dependent on cyclin D1 and cdk4/6 activity. Inactivation of SREBP1 resulted in reduced expression of cyclin D1, attenuated phosphorylation of Rb, and reduced proliferation. Inactivation of SREBP1 also reduced the insulin-dependent regulation of the cyclin D1 gene. At the same time, SREBP1 is known to play an important role in supporting lipid synthesis in cancer cells. Thus, we propose that the SREBP1-dependent regulation of cyclin D1 coordinates cell proliferation with the enhanced lipid synthesis required to support cell growth.
Insights
Sterol regulatory-element binding protein 1 (SREBP1) promotes cancer cell proliferation by activating cyclin D1 expression, linking lipid synthesis to cell cycle progression. This discovery offers new therapeutic targets for cancer treatment.
Area of Science:
- Molecular Biology
- Cancer Biology
- Cell Cycle Regulation
Background:
- Sterol regulatory-element binding proteins (SREBPs) regulate lipid synthesis and are implicated in cancer.
- The Fbw7 tumor suppressor targets SREBPs, suggesting a role in cell growth.
- Enhanced lipid synthesis is a hallmark of many human tumors, making the SREBP pathway a potential cancer therapy target.
Purpose of the Study:
- To investigate the role of SREBP1 in regulating cell cycle progression, specifically its interaction with the cyclin D-cdk4/6-Rb axis.
- To determine if SREBP1 directly influences the expression of cyclin D1.
- To elucidate the coordination between SREBP1-mediated lipid synthesis and cell proliferation in cancer cells.
Main Methods:
- Analysis of SREBP1 binding to the cyclin D1 promoter.
- Inactivation and expression of SREBP1 in human liver and breast cancer cell lines.
- Assessment of cyclin D1 expression, Rb phosphorylation, and cell proliferation.
- Investigation of insulin-dependent regulation of cyclin D1.
Main Results:
- SREBP1 directly activates cyclin D1 expression by binding to its promoter.
- Inactivation of SREBP1 reduces cyclin D1 levels, attenuates Rb phosphorylation, and decreases cell proliferation.
- Restoring cyclin D1 expression rescues Rb phosphorylation in SREBP1-inactivated cells.
- Active SREBP1 expression induces cyclin D1 and Rb phosphorylation, dependent on cyclin D1 and cdk4/6 activity.
Conclusions:
- SREBP1 plays a critical role in coordinating cell proliferation with lipid synthesis in cancer cells.
- SREBP1-mediated regulation of cyclin D1 is a key mechanism linking lipid metabolism to cell cycle progression.
- Targeting the SREBP1-cyclin D1 pathway may offer a novel therapeutic strategy for cancers characterized by enhanced lipid synthesis.
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