Abstract 51P
Background
Chromosomal instability (CIN) is hallmark of cancer associated to progression and aggressiveness in prostate cancer (PCa). In the search of the mechanisms controlling CIN, long non-coding RNAs (lncRNAs) have shown to play important roles in maintaining genome stability, nevertheless, characterization of these transcripts and the networks they control in CIN regulation is still poorly understood.
Methods
RNA-seq data from the prostate cell lines PrEC (stable) and LNCaP (unstable) was analyzed to find novel lncRNAs associated with CIN. Afterwards, experimental validation of the results in PrEC and LNCaP was performed with RT-qPCR and western blot. For the functional experiments, lncRNA knockdown (KD) was performed by transfecting cells with antisense oligonucleotides (ASOs) targeting the lncRNA of interest, followed by karyotyping to assess CIN in the transfected cells. Confirmation of the lncRNA KD was performed by qPCR.
Results
After analyzing and comparing RNA-Seq data from PrEC and LNCaP, a novel lncRNA was discovered in chromosome 3. This nuclear-retained transcript is adjacent to the protein coding gene RFC4, a gene associated to CIN that participates in DNA repair and replication. RT-qPCR analysis showed that while the lncRNA is upregulated in PrEC, RFC4 is downregulated, the opposite pattern was found in LNCaP, suggesting the lncRNA as a cis-repressor of RFC4. The functional experiments confirmed that the lncRNA is a transcriptional repressor of RFC4 but also a regulator of genome stability. After KD of the lncRNA in the stable cell line PrEC, an increase in RFC4 expression was observed as well as an increased number of tetraploid cells, suggesting CIN induction after lncRNA KD. To understand how the lncRNA regulates genome stability, RNA-Seq was performed in the KD experiments showing that lncRNA KD induced disruption of different pathways needed for proper DNA replication and chromosome segregation.
Conclusions
Together our results indicate that the novel lncRNA is a regulator of CIN through regulation of RFC4 and pathways important for maintaining genome stability. The lncRNA adjacent to the protein coding gene RFC4 could be a novel biomarker for PCa progression.
Editorial acknowledgement
Clinical trial identification
Legal entity responsible for the study
Unidad de Investigación Biomédica en Cáncer - Instituto Nacional de Cancerología - Instituto de Investigaciones Biomédicas - UNAM.
Funding
Unidad de Investigación Biomédica en Cáncer - Instituto Nacional de Cancerología - Instituto de Investigaciones Biomédicas - UNAM - CONACyT.
Disclosure
All authors have declared no conflicts of interest.
Resources from the same session
41P - HLA genotypes modify the age-related penetrance of BRCA1 pathogenic variants in breast cancer patients
Presenter: Ekaterina Kuligina
Session: Cocktail & Poster Display session
Resources:
Abstract
42P - Investigating the influence of extrachromosomal DNA in the progression of non-small cell lung cancer through the TRACERx and PEACE studies
Presenter: Jeanette Kittel
Session: Cocktail & Poster Display session
Resources:
Abstract
43P - MDM2 alterations in primary brain tumors: A potential niche for targeted therapy
Presenter: Diego Gomez Puerto
Session: Cocktail & Poster Display session
Resources:
Abstract
44P - Exploring miR-205 and miR-296 as salivary biomarkers and potential therapeutic targets in oral cancer
Presenter: Thaís Moré Milan
Session: Cocktail & Poster Display session
Resources:
Abstract
45P - Integrative analysis of TCGA DNA methylation, RNA-sequencing, and variant dataset using machine learning in predicting endometrial cancer recurrence
Presenter: Jinhwa Hong
Session: Cocktail & Poster Display session
Resources:
Abstract
46P - The role of microRNA-1246 in early detection of breast cancer: Findings from a systematic review and meta-analysis
Presenter: Muhammed Elfaituri
Session: Cocktail & Poster Display session
Resources:
Abstract
47P - Differential expression of discriminative markers in matched invasion fronts and tumour buds in CRC
Presenter: Laura Grech
Session: Cocktail & Poster Display session
Resources:
Abstract
48P - Transcriptome profiling highlights distinct gene signatures in HER2 high (HER2 3+) and HER 2 low (Her2 1+/2+) breast cancers
Presenter: Tamanna Thakur
Session: Cocktail & Poster Display session
Resources:
Abstract
49P - MiR-155 promotes breast cancer progression by upregulating cancer stemness
Presenter: Jeonghee Han
Session: Cocktail & Poster Display session
Resources:
Abstract
50P - Clinical impact of actionable molecular variants disclosed in late-stage cancer patients by tumor whole-exome sequencing in a prospective single-institution study
Presenter: Christophe Mapendano
Session: Cocktail & Poster Display session
Resources:
Abstract