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Published on: February 7, 2018
In Silico Analysis of Non-Conventional Oxidative Stress-Related Enzymes and Their Potential Relationship with
Fábio Rodrigues Ferreira Seiva1, Maria Luisa Gonçalves Agneis1, Matheus Ribas de Almeida1
1Department of Chemical and Biological Sciences, São Paulo State University (UNESP), Institute of Bioscience, Botucatu 18610-034, SP, Brazil.
Abstract:
Carcinogenesis is driven by complex molecular events, often involving key enzymes that regulate oxidative stress (OS). While classical enzymes such as SOD, catalase, and GPx have been extensively studied, other, non-classical oxidative stress-related enzymes (OSRE) may play critical roles in cancer progression. We aimed to explore the role of OSRE involved in an OS scenario and to assess their potential contribution to carcinogenesis in some of the most prevalent cancer types. Through data mining and bioinformatic analysis of gene and protein expression and mutation data, we identified OSRE with altered expression and mutations across cancer types. Functional pathways involving EGFR, MT-ND, GST, PLCG2, PRDX6, SRC, and JAK2 were investigated. Our findings reveal that enzymes traditionally considered peripheral to OS play significant roles in tumor progression. Those OSRE may contribute to cancer initiation and progression, as well as be involved with cancer hallmarks, such as EMT and invasion, proliferation, and ROS production. In addition, enzymes like SRC and JAK2 were found to have dual roles in both promoting ROS generation and being modulated by OS. OSRE also interact with key oncogenic signaling pathways, including Wnt/β-catenin and JAK2/STAT3, linking them to cancer aggressiveness and therapeutic resistance. Future research should focus on translating these findings into clinical applications, including the development of novel inhibitors or drugs targeting these non-classical enzymes.
Insights
Non-classical oxidative stress-related enzymes (OSRE) significantly impact cancer progression and initiation. These enzymes interact with key oncogenic pathways, offering potential new therapeutic targets for cancer treatment.
Area of Science:
- Molecular Biology
- Biochemistry
- Oncology
Background:
- Carcinogenesis involves complex molecular events regulated by enzymes controlling oxidative stress (OS).
- While classical OS enzymes are well-studied, non-classical OSRE roles in cancer remain underexplored.
Purpose of the Study:
- To investigate the role of OSRE in OS scenarios.
- To assess the contribution of OSRE to carcinogenesis in prevalent cancer types.
Main Methods:
- Data mining and bioinformatic analysis of gene and protein expression and mutation data.
- Investigation of functional pathways involving EGFR, MT-ND, GST, PLCG2, PRDX6, SRC, and JAK2.
Main Results:
- Identified OSRE with altered expression and mutations across cancer types.
- Found that peripheral OSRE significantly contribute to tumor progression, cancer hallmarks (EMT, invasion, proliferation, ROS production), and interact with oncogenic pathways (Wnt/β-catenin, JAK2/STAT3).
- SRC and JAK2 exhibit dual roles in promoting ROS generation and being modulated by OS.
Conclusions:
- Non-classical OSRE are critical in cancer initiation, progression, aggressiveness, and therapeutic resistance.
- These OSRE represent promising targets for novel cancer therapies and drug development.
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