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The Emerging Role of OTUB2 in Diseases: From Cell Signaling Pathway to Physiological Function
Jun Li1,2, Na Zhang3, Meihua Li1
1Department of Neurosurgery, The First Affiliated Hospital of Nanchang University, Jiangxi, China.
Abstract:
Ovarian tumor (OTU) domain-containing ubiquitin aldehyde-binding protein Otubain2 (OTUB2) was a functional cysteine protease in the OTU family with deubiquitinase activity. In recent years, with the wide application of molecular biology techniques, molecular mechanism regulation at multiple levels of cell signaling pathways has been gradually known, such as ubiquitin-mediated protein degradation and phosphorylation-mediated protein activation. OTUB2 is involved in the deubiquitination of many key proteins in different cell signaling pathways, and the effect of OTUB2 on human health or disease is not clear. OTUB2 is likely to cause cancer and other malignant diseases while maintaining normal human development and physiological function. Therefore, it is of great value to comprehensively understand the regulatory mechanism of OTUB2 and regard it as a target for the treatment of diseases. This review makes a general description and appropriate analysis of OTUB2's regulation in different cell signaling pathways, and connects OTUB2 with cancer from the research hotspot perspective of DNA damage repair and immunity, laying the theoretical foundation for future research.
Insights
Otubain2 (OTUB2) is a deubiquitinase enzyme involved in cell signaling. Understanding OTUB2
Area of Science:
- Molecular Biology
- Biochemistry
- Cellular Signaling
Background:
- Otubain2 (OTUB2), a cysteine protease in the OTU family, possesses deubiquitinase activity.
- Cell signaling pathways are regulated by mechanisms like ubiquitination and phosphorylation.
- OTUB2's role in deubiquitinating key proteins in various signaling pathways is increasingly recognized.
Purpose of the Study:
- To comprehensively review the regulatory mechanisms of OTUB2 in different cell signaling pathways.
- To elucidate the connection between OTUB2 and cancer, focusing on DNA damage repair and immunity.
- To establish a theoretical foundation for future research on OTUB2 as a therapeutic target.
Main Methods:
- Literature review and analysis of existing research on OTUB2.
- Exploration of OTUB2's involvement in deubiquitination processes.
- Connecting OTUB2 function to cancer-related research areas like DNA damage repair and immunity.
Main Results:
- OTUB2 plays a role in deubiquitinating critical proteins within diverse cell signaling pathways.
- The precise impact of OTUB2 on human health and disease, particularly cancer, requires further investigation.
- OTUB2 is implicated in both normal physiological functions and the potential development of malignant diseases.
Conclusions:
- A thorough understanding of OTUB2's regulatory mechanisms is crucial for disease treatment strategies.
- OTUB2's involvement in DNA damage repair and immune responses highlights its significance in cancer research.
- This review provides a foundation for future studies targeting OTUB2 in oncological and other diseases.
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