📚 Volume 33, Issue 8
📋 ID: wVgMSku
Authors
Ivana Kovačević, Daisuke Mori, Ahmed El-Masry
University of Rijeka, Rijeka, Croatia; University of Patras, Patras, Greece; National University of Mongolia, Ulaanbaatar, Mongolia
Keywords
RNA splicing
eukaryotic cells
alternative splicing
transcription factors
high-throughput sequencing
genomic variability
Abstract
RNA processing, particularly splicing, is a crucial post-transcriptional modification in eukaryotic cells that dictates the diversity of the proteome. This study aims to elucidate the dynamics of RNA splicing mechanisms by analyzing variations across different cell types and environmental conditions. Employing a combination of high-throughput sequencing and computational modeling, we investigated splicing efficiency and alternative splicing patterns. Our findings reveal notable differences in splicing efficiency linked to specific transcription factors and cellular stress responses, shedding light on the adaptability of splicing mechanisms. These results underscore the complexity of RNA processing and suggest potential targets for therapeutic intervention in diseases linked to splicing dysregulation. Moreover, the cross-regional collaboration provides a comprehensive view of splicing dynamics, emphasizing the universality and variability of these processes. In conclusion, understanding the intricate nature of RNA splicing can pave the way for advancements in molecular biology and genomics, highlighting its importance in cellular function and genetic regulation.
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📝 How to Cite
Ivana Kovačević, Daisuke Mori, Ahmed El-Masry (2026).
"Investigating the Dynamics of RNA Splicing Mechanisms in Eukaryotic Cells: A Multi-Regional Study".
Wulfenia, 33(8).