Pharmacological Targeting of DHHC9-Mediated STRN4 Palmitoylation to Suppress YAP-Driven Cancer Metastasis
Yang Tian1,2,3, Wei Li1, Qing Zhai1
1Cancer Institute, Xuzhou Medical University, Xuzhou, Jiangsu, China.
Abstract:
Protein S-palmitoylation, a dynamic and reversible post-translational modification involving the attachment of palmitate to cysteine residues, is a key regulator of protein functionality and cellular signalling. Dysregulation of this modification has emerged as a critical driver of cancer progression. Among the 23 DHHC palmitoyl transferases responsible for catalysing S-palmitoylation, aberrant expression of specific members is linked to tumorigenesis and development, underscoring their potential as promising therapeutic targets. However, the cancer-specific roles and substrates of individual DHHC enzymes remain poorly characterised. In this study, we identified DHHC9 as a crucial regulator of adenocarcinoma progression, including colorectal and lung cancers. Functional studies demonstrated that DHHC9 knockdown profoundly inhibited cell migration in vitro and tumour metastasis in vivo. Proteomic and functional analyses revealed that STRN4, a core component of the STRIPAK complex, was palmitoylated by DHHC9 at cysteine 701. The STRN4 palmitoylation reduced YAP phosphorylation, promoted nuclear translocation of YAP and activated downstream Hippo pathway transcriptional targets-including CCN1, CCN2 and ANKRD1-thereby driving cancer cell migration. Notably, we discovered two small molecules, Treprostinil and 10-HCPT, as potent DHHC9 inhibitors that effectively suppressed adenocarcinoma cell migration. Our findings define the DHHC9-STRN4-YAP axis as a novel mechanism linking palmitoylation to phosphatase regulation and Hippo pathway dysregulation, unveiling DHHC9 as a highly promising therapeutic target in cancer treatment.
Insights
DHHC9 palmitoyl transferase drives adenocarcinoma progression by regulating the STRN4-YAP axis. Inhibiting DHHC9 suppressed cancer cell migration and metastasis, highlighting DHHC9 as a potential therapeutic target.
Area of Science:
- Biochemistry
- Molecular Biology
- Oncology
Background:
- Protein S-palmitoylation is a reversible post-translational modification regulating protein function and signaling.
- Dysregulation of S-palmitoylation is implicated in cancer progression.
- DHHC palmitoyl transferases catalyze S-palmitoylation, with specific members linked to tumorigenesis.
Purpose of the Study:
- To investigate the role of DHHC9 in adenocarcinoma progression.
- To identify DHHC9 substrates and elucidate its mechanism in cancer.
- To explore DHHC9 as a therapeutic target for adenocarcinoma.
Main Methods:
- Functional studies involving DHHC9 knockdown in vitro and in vivo.
- Proteomic analysis to identify DHHC9 substrates.
- Western blotting and reporter assays to assess Hippo pathway activity.
- Small molecule screening for DHHC9 inhibitors.
Main Results:
- DHHC9 knockdown inhibited adenocarcinoma cell migration and metastasis.
- STRN4 was identified as a DHHC9 substrate, with palmitoylation at Cys701.
- DHHC9-mediated STRN4 palmitoylation reduced YAP phosphorylation, promoting nuclear translocation and Hippo pathway activation.
- Treprostinil and 10-HCPT were identified as potent DHHC9 inhibitors that suppressed cancer cell migration.
Conclusions:
- The DHHC9-STRN4-YAP axis represents a novel mechanism linking palmitoylation to phosphatase regulation and Hippo pathway dysregulation in cancer.
- DHHC9 is a crucial regulator of adenocarcinoma progression.
- DHHC9 is a promising therapeutic target for treating colorectal and lung cancers.
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