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Circular RNAs in the KRAS pathway: Emerging players in cancer progression
Md Sadique Hussain1, Ehssan Moglad2, Muhammad Afzal3
1School of Pharmaceutical Sciences, Jaipur National University, Jagatpura, Jaipur, Rajasthan 302017, India.
Abstract:
Circular RNAs (circRNAs) have been recognized as key components in the intricate regulatory network of the KRAS pathway across various cancers. The KRAS pathway, a central signalling cascade crucial in tumorigenesis, has gained substantial emphasis as a possible therapeutic target. CircRNAs, a subgroup of non-coding RNAs known for their closed circular arrangement, play diverse roles in gene regulation, contributing to the intricate landscape of cancer biology. This review consolidates existing knowledge on circRNAs within the framework of the KRAS pathway, emphasizing their multifaceted functions in cancer progression. Notable circRNAs, such as Circ_GLG1 and circITGA7, have been identified as pivotal regulators in colorectal cancer (CRC), influencing KRAS expression and the Ras signaling pathway. Aside from their significance in gene regulation, circRNAs contribute to immune evasion, apoptosis, and drug tolerance within KRAS-driven cancers, adding complexity to the intricate interplay. While our comprehension of circRNAs in the KRAS pathway is evolving, challenges such as the diverse landscape of KRAS mutant tumors and the necessity for synergistic combination therapies persist. Integrating cutting-edge technologies, including deep learning-based prediction methods, holds the potential for unveiling disease-associated circRNAs and identifying novel therapeutic targets. Sustained research efforts are crucial to comprehensively unravel the molecular mechanisms governing the intricate interplay between circRNAs and the KRAS pathway, offering insights that could potentially revolutionize cancer diagnostics and treatment strategies.
Insights
Circular RNAs (circRNAs) regulate the KRAS pathway in cancer, impacting gene expression, immune evasion, and drug tolerance. Further research may reveal new diagnostic and therapeutic strategies for KRAS-driven cancers.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Circular RNAs (circRNAs) are key regulators in cancer, particularly within the KRAS pathway.
- The KRAS pathway is a critical signaling cascade in tumorigenesis and a focus for cancer therapy.
- CircRNAs exhibit diverse regulatory roles in gene expression and cancer progression.
Purpose of the Study:
- To review and consolidate current knowledge on circRNAs within the KRAS pathway.
- To highlight the multifaceted functions of circRNAs in KRAS-driven cancers.
- To discuss challenges and future directions in circRNA research for cancer therapy.
Main Methods:
- Literature review consolidating existing research on circRNAs and the KRAS pathway.
- Identification of specific circRNAs (e.g., Circ_GLG1, circITGA7) and their roles in colorectal cancer (CRC).
- Discussion of circRNA involvement in immune evasion, apoptosis, and drug tolerance.
Main Results:
- CircRNAs like Circ_GLG1 and circITGA7 are identified as regulators of KRAS expression and signaling in CRC.
- CircRNAs contribute to immune evasion, apoptosis, and drug tolerance in KRAS-driven cancers.
- Challenges include the heterogeneity of KRAS mutant tumors and the need for combination therapies.
Conclusions:
- Understanding circRNAs in the KRAS pathway is crucial for advancing cancer diagnostics and treatment.
- Emerging technologies like deep learning can help identify disease-associated circRNAs and therapeutic targets.
- Continued research is vital to unravel the complex interplay between circRNAs and the KRAS pathway for novel cancer strategies.
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