LncRNA HHIP-AS1 suppresses lung squamous cell carcinoma by stabilizing HHIP mRNA
Zheyu Hu1, Yixian Liu1, Jin Tang1
1Department of histology and embryology, School of Medicine, Shenzhen Campus of Sun Yat-sen University, Sun Yat-sen University, 66 Gongchang Road, Shenzhen 518107, China.
Aims:
Lung squamous cell carcinoma (LUSC) causes over 400,000 deaths annually, yet it lacks targeted therapy. A major antagonist of Hedgehog pathway, HHIP (Hedgehog Interacting Protein) plays an important role in LUSC; however, the regulatory mechanism remains unclear. Long non-coding RNA HHIP-AS1 plays suppressive or promotive roles in different cancers, but its role in LUSC remains unknown. This manuscript is to investigate regulatory mechanism of HHIP and the role of HHIP-AS1 in LUSC.
Main Methods:
Precision-cut lung slices (PCLS) from human LUSC samples are cultured to mimic LUSC growth. Overexpression and knockdown in multiple LUSC cell lines and PCLS are achieved by lentivirus infection. Transcriptome profile and lung cancer activity are evaluated by RNA-sequencing, immunostaining and CCK8 assay etc. KEY FINDINGS: HHIP is regulated independently of Hh pathway in LUSC. Additionally, downregulation of HHIP-AS1 is associated with poor prognosis. Consistently, HHIP-AS1 inhibits LUSC growth by suppressing cell proliferation and migration. Transcriptome profiling of HHIP-AS1 knockdown (KD) cells uncovered HHIP downregulation. Interestingly, a comparison between the transcriptomes of HHIP-AS1 KD or HHIP KD cells manifested high similarity. Subsequently it's confirmed that HHIP-AS1 regulates HHIP in LUSC cells. Notably, HHIP-AS1 regulation on LUSC growth is achieved through stabilizing HHIP mRNA rather than regulating MIR-153-3P/PCDHGA9 or MIR-425-5P/DNYC1I2. Finally, it's confirmed in PCLS from human LUSC samples that HHIP-AS1 suppresses LUSC via regulating HHIP mRNA.
Significance:
This study uncovers HHIP-AS1 as a novel tumor suppressor in LUSC and provides new insights into the molecular regulation of LUSC, which will help developing new therapeutic strategies.
Insights
HHIP-AS1 acts as a tumor suppressor in lung squamous cell carcinoma (LUSC) by stabilizing HHIP mRNA, inhibiting cancer cell growth and migration. This finding offers potential new therapeutic strategies for LUSC.
Area of Science:
- Oncology
- Molecular Biology
- Gene Regulation
Background:
- Lung squamous cell carcinoma (LUSC) is a deadly cancer lacking targeted therapies.
- Hedgehog Interacting Protein (HHIP) is a key player in LUSC, but its regulation is unclear.
- The role of long non-coding RNA HHIP-AS1 in LUSC is currently unknown.
Purpose of the Study:
- To investigate the regulatory mechanism of HHIP in LUSC.
- To determine the role of HHIP-AS1 in LUSC development and progression.
- To explore HHIP-AS1 as a potential therapeutic target for LUSC.
Main Methods:
- Utilized precision-cut lung slices (PCLS) from human LUSC samples for ex vivo culture.
- Performed gene overexpression and knockdown studies in LUSC cell lines and PCLS using lentivirus.
- Analyzed transcriptome profiles via RNA-sequencing and assessed cell activity using immunostaining and CCK8 assays.
Main Results:
- HHIP-AS1 downregulation correlates with poor prognosis in LUSC patients.
- HHIP-AS1 suppresses LUSC cell proliferation and migration by stabilizing HHIP mRNA.
- Transcriptome analysis revealed HHIP downregulation upon HHIP-AS1 knockdown, indicating a regulatory link.
Conclusions:
- HHIP-AS1 functions as a novel tumor suppressor in LUSC.
- HHIP-AS1 regulates LUSC progression primarily through stabilizing HHIP mRNA.
- This research provides novel insights for developing targeted LUSC therapies.
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