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Updated: Jan 25, 2026

Nuclear Magnetic Resonance Spectroscopy for the Identification of Multiple Phosphorylations of Intrinsically Disordered Proteins
Published on: December 27, 2016
The multiple roles of the disordered protein CCDC6 in cancer development
Guifeng Wei1,2, Yiji Chen1,2, Yichao Kong1,2
1School of Pharmacy, Hangzhou Normal University, Hangzhou, China.
Abstract:
As a tumor suppressor gene, CCDC6 encodes a coiled-coil domain-containing protein that is ubiquitously expressed and involved in crucial cellular processes such as DNA damage response and apoptosis, although its precise mechanisms remain elusive. Initially identified as part of a fusion gene, CCDC6 can form fusion genes with a variety of proto-oncogenes, including both kinase- and non-kinase-coding genes, thereby facilitating oncogenesis. Alterations in CCDC6 expression across various cancers underscore its intricate role and potential influence on the efficacy of anticancer therapies. Recent findings have demonstrated that CCDC6 can undergo liquid-liquid phase separation (LLPS) and facilitate the LLPS of its associated fusion proteins, providing new perspectives on its functional characterization and potential therapeutic implications in related diseases. We present a comprehensive overview of CCDC6, encompassing its protein characteristics and physiological and genomic aspects. Furthermore, we explored the association between CCDC6 alterations and carcinogenesis, as well as their implications for therapeutic interventions. The objective of this review is to furnish the medicinal community with current information and valuable insights pertaining to diseases associated with CCDC6.
Insights
CCDC6, a tumor suppressor gene, plays a role in DNA repair and cancer. Its alterations and fusion genes impact oncogenesis and therapy, with recent insights into liquid-liquid phase separation (LLPS).
Area of Science:
- Molecular Biology
- Genetics
- Cancer Research
Background:
- CCDC6 is a tumor suppressor gene involved in DNA damage response and apoptosis.
- It can form oncogenic fusion genes with various proto-oncogenes.
- Altered CCDC6 expression is linked to cancer development and treatment efficacy.
Purpose of the Study:
- To provide a comprehensive overview of CCDC6.
- To explore CCDC6's role in carcinogenesis and therapeutic implications.
- To update the medical community on CCDC6-associated diseases.
Main Methods:
- Literature review of CCDC6's protein characteristics, physiological, and genomic aspects.
- Analysis of CCDC6 alterations in cancer.
- Review of recent findings on CCDC6 and liquid-liquid phase separation (LLPS).
Main Results:
- CCDC6's involvement in crucial cellular processes is confirmed.
- CCDC6 fusion genes contribute to oncogenesis.
- CCDC6's role in LLPS offers new functional insights.
Conclusions:
- CCDC6 alterations are significant in cancer.
- Understanding CCDC6's function, including LLPS, is crucial for targeted therapies.
- This review provides valuable insights into CCDC6-related diseases for clinicians.
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