Findings indicate that RP3-340N1.2 is aberrantly expressed in LUAD and may participate in tumor-associated cellular behaviors through a miR-4650-5p/SHC1-related regulatory mechanism.
Abstract
Long noncoding RNAs (lncRNAs) are increasingly recognized as regulators of cancer-related biological processes. However, the functional significance of many lncRNAs in lung adenocarcinoma (LUAD) remains incompletely understood. In this study, we identified RP3-340N1.2 as an upregulated lncRNA in LUAD through analyses of public transcriptomic datasets, which was further confirmed by quantitative real-time PCR in LUAD cell lines. Functional assays demonstrated that knockdown of RP3-340N1.2 was associated with reduced proliferation, migration, invasion, and clonogenic growth of LUAD cells in vitro. In addition, suppression of RP3-340N1.2 attenuated tumor growth in a xenograft model. Bioinformatic analysis using the LncBase Experimental v3 database identified hsa-miR-4650-5p as a potential interacting microRNA of RP3-340N1.2. This interaction was further examined by dual-luciferase reporter and RNA immunoprecipitation assays. Functional experiments additionally showed that miR-4650-5p overexpression was associated with reduced proliferative and migratory capacities in LUAD cells. Among the predicted downstream targets of miR-4650-5p, SHC1 was selected for further investigation. Alterations in RP3-340N1.2 or miR-4650-5p expression were accompanied by corresponding changes in SHC1 expression and ERK1/2 phosphorylation. Furthermore, rescue experiments demonstrated that SHC1 knockdown largely reversed RP3-340N1.2-associated cellular phenotypes, supporting the functional involvement of SHC1 within this regulatory framework. Collectively, these findings indicate that RP3-340N1.2 is aberrantly expressed in LUAD and may participate in tumor-associated cellular behaviors through a miR-4650-5p/SHC1-related regulatory mechanism. This study provides preliminary evidence supporting the potential relevance of RP3-340N1.2 in LUAD and offers additional insight into lncRNA-associated regulatory networks in this disease.
The ZNF582-AS1/miR-21-5p/miR-516a-3p/CREBRF regulatory axis provides mechanistic insights into EC tumorigenesis and emphasizes the tumor suppressive effect of ZNF582-AS1.
Chen Chen, Fangyuan Chang, Yi Guo et al.· Combinatorial chemistry & hi...· 0 citations
This study investigated the function of long noncoding RNA SLC12A9-AS1 in colorectal cancer (CRC) cells and its potential regulatory mechanism. Reverse transcription-quantitative polymerase chain reaction (RT-qPCR) was used to measure SLC12A9-AS1 and miR-139-3p expression in CRC cell lines. Cell viability was assessed using the Cell Counting Kit-8 (CCK-8) assay, whereas migration and invasion were evaluated using permeable cell culture insert assays. The interaction between SLC12A9-AS1 and miR-139-3p was examined using dual-luciferase reporter (DLR) and RNA immunoprecipitation (RIP) assays. SLC12A9-AS1 was significantly upregulated, whereas miR-139-3p was downregulated, in CRC cells. Silencing SLC12A9-AS1 markedly reduced cell viability, migration, invasion, and epithelial-mesenchymal transition (EMT). The DLR and RIP assays supported an interaction between SLC12A9-AS1 and miR-139-3p. In addition, inhibition of miR-139-3p reversed the suppressive effects of SLC12A9-AS1 knockdown on malignant cellular phenotypes. Collectively, these findings indicate that SLC12A9-AS1 is abnormally overexpressed in CRC cells and that its knockdown attenuates malignant phenotypes, at least in part through regulation of miR-139-3p. These results provide new in vitro experimental evidence for understanding the molecular mechanisms involved in CRC pathogenesis.
Shiyu Zhao, Shuai Zhang, Qiongfeng Tan et al.· Journal of Visualized Experi...· 0 citations
Results highlight lncRNA ABCA9-AS1 as a novel and promising prognostic biomarker that promotes gastric cancer progression by acting as a ceRNA to modulate the miR-497-5p/KIF23 axis.
Yiwen Wu, Yiniu Xia, Hanyu Liu et al.· Current Cancer Drug Targets· 0 citations
ENST00000615487.1 is a structurally stable lncRNA exhibiting context-dependent expression and localization patterns in CRC, suggesting a potential shift from nuclear transcriptional regulation toward cytoplasmic post-transcriptional functions during colorectal carcinogenesis.
Nataša Đokić, Anastasija Bubanja, Jelena Karanović et al.· Non-Coding RNA· 0 citations
Colorectal cancer (CRC) is a prevalent malignancy with a complex genetic basis. Recent genome-wide association studies (GWAS) have identified a susceptibility locus at 3p21.31, however, the functional SNP(s) underlying the association between the 3p21.31 region and CRC remain to be elucidated. In this study, we identified rs2101247 as the potential functional SNP and further demonstrated that rs2101247 is significantly associated with the expression of the nearby long non-coding RNA (lncRNA) RP11-708J19.2 (ENSG00000271161.1). Functional experiments showed that RP11-708J19.2 is upregulated in CRC tumor tissues, and its knockdown reduces cell viability while promoting apoptosis in SW1116 and HCT116 cell lines. Mechanistically, RP11-708J19.2 interacts directly with the deacetylase SIRT7, modulating histone H3K18 acetylation (H3K18ac). Specifically, RP11-708J19.2 knockdown leads to a significant upregulation of H3K18ac levels, implicating a SIRT7-mediated epigenetic pathway in CRC progression. Our findings elucidate a novel functional SNP-lncRNA axis that contributes to CRC pathogenesis, providing potential biomarkers for early detection and therapeutic targets for intervention.
Jiali Ma, Xianglong Tian, Yiwen Qiu et al.· European Journal of Histoche...· 0 citations