Cellular density-dependent increases in HIF-1α compete with c-Myc to down-regulate human EP4 receptor promoter
Naofumi Seira1, Kazuyuki Yamagata1, Keijo Fukushima2
1Laboratory of Chemical Pharmacology Graduate School of Pharmaceutical Sciences Chiba University Chuo-ku Chiba Japan.
Abstract:
The up-regulated expression of E-type prostanoid (EP) 4 receptors has been implicated in carcinogenesis; however, the expression of EP4 receptors has also been reported to be weaker in tumor tissues than in normal tissues. Indeed, EP4 receptors have been suggested to play a role in the maintenance of colorectal homeostasis. This study aimed to examine the underlying mechanisms/reasons for why inconsistent findings have been reported regarding EP4 receptor expression levels in homeostasis and carcinogenesis by focusing on cellular densities. Thus, the human colon cancer HCA-7 cells, which retain some functional features of normal epithelia, and luciferase reporter genes containing wild-type or mutated EP4 receptor promoters were used for elucidating the cellular density-dependent mechanisms about the regulation of EP4 receptor expression. In silico analysis was also utilized for confirming the relevance of the findings with respect to colon cancer development. We here demonstrated that the expression of EP4 receptors was up-regulated by c-Myc by binding to Sp-1 under low cellular density conditions, but was down-regulated under high cellular density conditions via the increase in the expression levels of HIF-1α protein, which may pull out c-Myc and Sp-1 from DNA-binding. The tightly regulated EP4 receptor expression mechanism may be a critical system for maintaining homeostasis in normal colorectal epithelial cells. Therefore, once the system is altered, possibly due to the transient overexpression of EP4 receptors, it may result in aberrant cellular proliferation and transformation to cancerous phenotypes. However, at the point, EP4 receptors themselves and their mediated homeostasis would be no longer required.
Insights
Cellular density regulates E-type prostanoid 4 (EP4) receptor expression in colorectal cells. Low density up-regulates EP4 via c-Myc/Sp-1, while high density down-regulates it through HIF-1α, impacting cancer development.
Area of Science:
- Molecular Biology
- Cancer Research
- Cell Biology
Background:
- E-type prostanoid (EP) 4 receptor expression is inconsistently reported in colorectal carcinogenesis and homeostasis.
- EP4 receptors are implicated in cancer but also suggested to maintain normal colorectal function.
Purpose of the Study:
- To investigate the cellular density-dependent mechanisms regulating EP4 receptor expression.
- To reconcile conflicting findings on EP4 receptor levels in normal versus cancerous colorectal tissues.
Main Methods:
- Utilized human colon cancer HCA-7 cells and luciferase reporter assays with wild-type/mutated EP4 receptor promoters.
- Employed in silico analysis to assess relevance to colon cancer development.
- Focused on cellular density as a key regulatory factor.
Main Results:
- EP4 receptor expression is up-regulated by c-Myc binding to Sp-1 under low cellular density.
- High cellular density leads to down-regulation of EP4 receptors via increased HIF-1α protein.
- HIF-1α may displace c-Myc and Sp-1 from DNA binding sites.
Conclusions:
- A tightly regulated EP4 receptor expression mechanism is crucial for colorectal epithelial homeostasis.
- Alterations in this system, potentially through transient EP4 overexpression, can drive aberrant proliferation and cancer phenotypes.
- Dysregulation of EP4 signaling may be a critical step in colorectal carcinogenesis.
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