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Function and regulation of RGS family members in solid tumours: a comprehensive review
Chenglong Yang1, Xiaoyuan Zhang1, Xiaowen Yang1
1Key Laboratory of Precision Oncology in Universities of Shandong, Institute of Precision Medicine, Jining Medical University, Jining, 272067, China.
Abstract:
G protein-coupled receptors (GPCRs) play a key role in regulating the homeostasis of the internal environment and are closely associated with tumour progression as major mediators of cellular signalling. As a diverse and multifunctional group of proteins, the G protein signalling regulator (RGS) family was proven to be involved in the cellular transduction of GPCRs. Growing evidence has revealed dysregulation of RGS proteins as a common phenomenon and highlighted the key roles of these proteins in human cancers. Furthermore, their differential expression may be a potential biomarker for tumour diagnosis, treatment and prognosis. Most importantly, there are few systematic reviews on the functional/mechanistic characteristics and clinical application of RGS family members at present. In this review, we focus on the G-protein signalling regulator (RGS) family, which includes more than 20 family members. We analysed the classification, basic structure, and major functions of the RGS family members. Moreover, we summarize the expression changes of each RGS family member in various human cancers and their important roles in regulating cancer cell proliferation, stem cell maintenance, tumorigenesis and cancer metastasis. On this basis, we outline the molecular signalling pathways in which some RGS family members are involved in tumour progression. Finally, their potential application in the precise diagnosis, prognosis and treatment of different types of cancers and the main possible problems for clinical application at present are discussed. Our review provides a comprehensive understanding of the role and potential mechanisms of RGS in regulating tumour progression. Video Abstract.
Insights
G protein signalling regulator (RGS) proteins are crucial in cancer. This review details their roles in tumour progression and potential as cancer biomarkers.
Area of Science:
- Molecular Biology
- Oncology
- Cellular Signalling
Background:
- G protein-coupled receptors (GPCRs) mediate cellular signalling and are vital for homeostasis.
- The G protein signalling regulator (RGS) family, involved in GPCR transduction, shows dysregulation in human cancers.
- RGS proteins are key regulators of cellular processes relevant to cancer development.
Discussion:
- This review examines the classification, structure, and functions of over 20 RGS family members.
- It summarizes RGS expression changes in various human cancers and their impact on proliferation, stemness, and metastasis.
- Molecular pathways linking RGS proteins to tumour progression are outlined.
Key Insights:
- Dysregulated RGS proteins are common in human cancers, influencing proliferation, stem cell maintenance, tumorigenesis, and metastasis.
- Differential RGS expression may serve as a biomarker for cancer diagnosis, treatment, and prognosis.
- Understanding RGS roles provides insights into cancer mechanisms.
Outlook:
- RGS family members hold potential for precise cancer diagnosis, prognosis, and targeted therapies.
- Challenges in clinical application of RGS proteins need to be addressed.
- Further research can elucidate RGS mechanisms in tumour progression.
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