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Functional Characterization of RING-Type E3 Ubiquitin Ligases In Vitro and In Planta
Published on: December 5, 2019
Functional significance and therapeutic implication of ring-type E3 ligases in colorectal cancer
1Department of Medicine and Therapeutics, Institute of Digestive Disease, State Key Laboratory of Digestive Disease, Li Ka Shing Institute of Health Sciences, CUHK-Shenzhen Research Institute, Prince of Wales Hospital, The Chinese University of Hong Kong, Shatin, Hong Kong.
Abstract:
Accumulative studies revealed that E3 ubiquitin ligases have important roles in colorectal carcinogenesis. The pathogenic mechanisms of colorectal cancer (CRC) initiation and progression are complex and heterogeneous, involving somatic mutations, abnormal gene fusion, deletion or amplification and epigenetic alteration, which may cause aberrant expression or altered function of E3 ligases in CRC. Defects of E3 ligases have been reported to be involved in the molecular etiology and pathogenesis of CRC. The aberrant expressed E3 ligases can function as either oncogenes or tumor suppressors depending on ubiquiting target substrates in CRC. Recently, considerable progress has been made in our understanding of the potential roles of E3 ligase-mediated ubiquitylation in colorectal carcinogenesis. There are mainly two subtypes of E3 ubiquitin ligases in humans, as defined by the presence of either a HECT domain or a RING finger domain on the basis of structural similitude. Most cancer-associated E3 ligases participate in regulating the cell cycle, apoptosis, gene transcription, cell signaling and DNA repair, the critical parts of CRC tumorigenesis. In this review, we have provided a comprehensive summary of abnormally expressed E3 ligases and their related pivotal mechanistic effects in CRC. In particular, we have highlighted the function of RING-type E3 ubiquitin enzymes in modulating cancer signaling pathways, immunity and tumor microenvironment in CRC development and progression; their mechanism(s) of action in CRC involving both ubiquitylation-dependent and ubiquitylation-independent effects; and the potential of RING E3 ligases as molecular biomarkers for predicting patient prognosis and as therapeutic targets in CRC. A better understanding of E3 ligase-mediated substrates' ubiquitylation involved in the development of CRC will provide new insights into the pathophysiology mechanisms of CRC, and unravel novel prognostic markers and therapeutic strategies for CRC.
Insights
E3 ubiquitin ligases play crucial roles in colorectal cancer (CRC) development. Understanding their functions, particularly RING-type enzymes, offers new insights into CRC mechanisms, biomarkers, and therapeutic targets.
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- Colorectal cancer (CRC) pathogenesis involves complex genetic and epigenetic alterations.
- E3 ubiquitin ligases are critical regulators implicated in various cellular processes relevant to CRC.
- Aberrant expression or function of E3 ligases contributes to CRC initiation and progression.
Purpose of the Study:
- To comprehensively review the roles of E3 ubiquitin ligases in colorectal carcinogenesis.
- To highlight the specific functions of RING-type E3 ubiquitin enzymes in CRC.
- To explore the potential of E3 ligases as biomarkers and therapeutic targets for CRC.
Main Methods:
- Literature review focusing on E3 ubiquitin ligases and colorectal cancer.
- Analysis of studies detailing the mechanisms of E3 ligase action in CRC.
- Synthesis of information on ubiquitylation-dependent and independent effects of E3 ligases.
Main Results:
- E3 ligases function as oncogenes or tumor suppressors in CRC based on their targets.
- RING-type E3 ubiquitin enzymes modulate cancer signaling, immunity, and the tumor microenvironment in CRC.
- Abnormally expressed E3 ligases are involved in cell cycle, apoptosis, DNA repair, and gene transcription in CRC.
Conclusions:
- E3 ubiquitin ligases are pivotal in colorectal carcinogenesis, with diverse roles.
- RING E3 ligases present significant potential as prognostic biomarkers and therapeutic targets in CRC.
- Further understanding of E3 ligase-mediated ubiquitylation will advance CRC pathophysiology insights and treatment strategies.
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