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Published on: July 28, 2010
Palmitoyltransferase ZDHHC6 promotes colon tumorigenesis by targeting PPARγ-driven lipid biosynthesis via regulating
Junqi Shan1, Xinyu Li2, Runqi Sun3
1Department of Surgical Oncology, Shandong Cancer Hospital and Institute, Shandong First Medical University, Shandong Academy of Medical Sciences, Jinan, Shandong, 250117, China.
Background:
The failure of proper recognition of the intricate nature of pathophysiology in colorectal cancer (CRC) has a substantial effect on the progress of developing novel medications and targeted therapy approaches. Imbalances in the processes of lipid oxidation and biosynthesis of fatty acids are significant risk factors for the development of CRC. Therapeutic intervention that specifically targets the peroxisome proliferator-activated receptor gamma (PPARγ) and its downstream response element, in response to lipid metabolism, has been found to promote the growth of tumors and has shown significant clinical advantages in cancer patients.
Methods:
Clinical CRC samples and extensive in vitro and in vivo experiments were carried out to determine the role of ZDHHC6 and its downstream targets via a series of biochemical assays, molecular analysis approaches and lipid metabolomics assay, etc. RESULTS: To study the effect of ZDHHC6 on the progression of CRC and identify whether ZDHHC6 is a palmitoyltransferase that regulates fatty acid synthesis, which directly palmitoylates and stabilizes PPARγ, and this stabilization in turn activates the ACLY transcription-related metabolic pathway. In this study, we demonstrate that PPARγ undergoes palmitoylation in its DNA binding domain (DBD) section. This lipid-related modification enhances the stability of PPARγ protein by preventing its destabilization. As a result, palmitoylated PPARγ inhibits its degradation induced by the lysosome and facilitates its translocation into the nucleus. In addition, we have identified zinc finger-aspartate-histidine-cysteine 6 (ZDHHC6) as a crucial controller of fatty acid biosynthesis. ZDHHC6 directly interacts with and adds palmitoyl groups to stabilize PPARγ at the Cys-313 site within the DBD domain of PPARγ. Consequently, this palmitoylation leads to an increase in the expression of ATP citrate lyase (ACLY). Furthermore, our findings reveals that ZDHHC6 actively stimulates the production of fatty acids and plays a role in the development of colorectal cancer. However, we have observed a significant reduction in the cancer-causing effects when the expression of ZDHHC6 is inhibited in in vivo trials. Significantly, in CRC, there is a strong positive correlation between the high expression of ZDHHC6 and the expression of PPARγ. Moreover, this high expression of ZDHHC6 is connected with the severity of CRC and is indicative of a poor prognosis.
Conclusions:
We have discovered a mechanism in which lipid biosynthesis is controlled by ZDHHC6 and includes the signaling of PPARγ-ACLY in the advancement of CRC. This finding provides a justification for targeting lipid synthesis by blocking ZDHHC6 as a potential therapeutic approach.
Insights
Researchers found that ZDHHC6 controls lipid biosynthesis by stabilizing PPARγ, which promotes colorectal cancer (CRC) growth. Inhibiting ZDHHC6 reduced cancer effects, suggesting it as a therapeutic target for CRC.
Area of Science:
- Oncology
- Biochemistry
- Molecular Biology
Background:
- Colorectal cancer (CRC) pathophysiology is complex, hindering novel drug development.
- Lipid metabolism dysregulation, including fatty acid synthesis, is a key CRC risk factor.
- Targeting peroxisome proliferator-activated receptor gamma (PPARγ) has shown clinical benefits but can also promote tumor growth.
Purpose of the Study:
- To investigate the role of ZDHHC6 in colorectal cancer progression.
- To determine if ZDHHC6 acts as a palmitoyltransferase regulating fatty acid synthesis and PPARγ stability.
- To explore the therapeutic potential of targeting ZDHHC6 in CRC.
Main Methods:
- Analysis of clinical CRC samples.
- In vitro and in vivo experimental models.
- Biochemical assays, molecular analysis, and lipid metabolomics.
Main Results:
- ZDHHC6 palmitoylates and stabilizes PPARγ by preventing its lysosomal degradation, enhancing nuclear translocation.
- ZDHHC6 activates the ATP citrate lyase (ACLY) pathway, increasing fatty acid production.
- High ZDHHC6 expression correlates with increased PPARγ, CRC severity, and poor prognosis, while ZDHHC6 inhibition reduces cancer progression.
Conclusions:
- ZDHHC6 controls CRC advancement via the PPARγ-ACLY lipid biosynthesis signaling pathway.
- Blocking ZDHHC6 represents a potential therapeutic strategy for colorectal cancer by targeting lipid synthesis.
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