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A Multi-Faceted Analysis Showing CRNDE Transcripts and a Recently Confirmed Micropeptide as Important Players in
Anna Balcerak1,2, Laura Aleksandra Szafron3, Tymon Rubel4
1Department of Pathology and Anatomical Sciences, State University of New York, Buffalo, NY 14203, USA.
Abstract:
CRNDE is considered an oncogene expressed as long non-coding RNA. Our previous paper is the only one reporting CRNDE as a micropeptide-coding gene. The amino acid sequence of this micropeptide (CRNDEP) has recently been confirmed by other researchers. This study aimed at providing a mass spectrometry (MS)-based validation of the CRNDEP sequence and an investigation of how the differential expression of CRNDE(P) influences the metabolism and chemoresistance of ovarian cancer (OvCa) cells. We also assessed cellular localization changes of CRNDEP, looked for its protein partners, and bioinformatically evaluated its RNA-binding capacities. Herein, we detected most of the CRNDEP sequence by MS. Moreover, our results corroborated the oncogenic role of CRNDE, portraying it as the gene impacting carcinogenesis at the stages of DNA transcription and replication, affecting the RNA metabolism, and stimulating the cell cycle progression and proliferation, with CRNDEP being detected in the centrosomes of dividing cells. We also showed that CRNDEP is located in nucleoli and revealed interactions of this micropeptide with p54, an RNA helicase. Additionally, we proved that high CRNDE(P) expression increases the resistance of OvCa cells to treatment with microtubule-targeted cytostatics. Furthermore, altered CRNDE(P) expression affected the activity of the microtubular cytoskeleton and the formation of focal adhesion plaques. Finally, according to our in silico analyses, CRNDEP is likely capable of RNA binding. All these results contribute to a better understanding of the CRNDE(P) role in OvCa biology, which may potentially improve the screening, diagnosis, and treatment of this disease.
Insights
The long non-coding RNA CRNDE and its micropeptide CRNDEP promote ovarian cancer by affecting DNA replication, RNA metabolism, and cell proliferation. High expression increases chemoresistance to microtubule-targeting drugs.
Area of Science:
- Molecular Biology
- Oncology
- Biochemistry
Background:
- CRNDE is an oncogene and a long non-coding RNA.
- CRNDE also codes for a micropeptide, CRNDEP, whose sequence is confirmed.
- The role of CRNDE(P) in ovarian cancer (OvCa) metabolism and chemoresistance requires further investigation.
Purpose of the Study:
- To validate the CRNDEP sequence using mass spectrometry (MS).
- To investigate the influence of CRNDE(P) differential expression on OvCa cell metabolism and chemoresistance.
- To assess CRNDEP's cellular localization, protein partners, and RNA-binding capacity.
Main Methods:
- Mass spectrometry (MS) for CRNDEP sequence validation.
- Cellular localization studies and protein-protein interaction assays.
- Bioinformatic analysis of RNA-binding potential.
Main Results:
- MS confirmed most of the CRNDEP sequence.
- CRNDE(P) expression impacts DNA transcription/replication, RNA metabolism, cell cycle, and proliferation.
- CRNDEP localizes to centrosomes and nucleoli, interacting with RNA helicase p54.
- High CRNDE(P) expression confers resistance to microtubule-targeting cytostatics.
- Altered CRNDE(P) expression affects microtubular cytoskeleton and focal adhesion plaques.
- In silico analysis suggests CRNDEP has RNA-binding capabilities.
Conclusions:
- CRNDE(P) plays a significant role in OvCa biology, influencing key cellular processes and chemoresistance.
- CRNDEP's interaction with p54 and its localization suggest roles in RNA metabolism and cell division.
- Findings may improve OvCa screening, diagnosis, and treatment strategies.
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