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Revisiting the roles of VHR/DUSP3 phosphatase in human diseases
Lilian Cristina Russo1, Jéssica Oliveira Farias1, Pault Yeison Minaya Ferruzo1
1Departamento de Bioquímica, Instituto de Quimica, Universidade de Sao Paulo, Sao Paulo, SP, BR.
Abstract:
Protein tyrosine phosphatases have long been considered key regulators of biological processes and are therefore implicated in the origins of various human diseases. Heterozygosity, mutations, deletions, and the complete loss of some of these enzymes have been reported to cause neurodegenerative diseases, autoimmune syndromes, genetic disorders, metabolic diseases, cancers, and many other physiological imbalances. Vaccinia H1-related phosphatase, also known as dual-specificity phosphatase 3, is a protein tyrosine phosphatase enzyme that regulates the phosphorylation of the mitogen-activated protein kinase signaling pathway, a central mediator of a diversity of biological responses. It has been suggested that vaccinia H1-related phosphatase can act as a tumor suppressor or tumor-promoting phosphatase in different cancers. Furthermore, emerging evidence suggests that this enzyme has many other biological functions, such as roles in immune responses, thrombosis, hemostasis, angiogenesis, and genomic stability, and this broad spectrum of vaccinia H1-related phosphatase activity is likely the result of its diversity of substrates. Hence, fully identifying and characterizing these substrate-phosphatase interactions will facilitate the identification of pharmacological inhibitors of vaccinia H1-related phosphatase that can be evaluated in clinical trials. In this review, we describe the biological processes mediated by vaccinia H1-related phosphatase, especially those related to genomic stability. We also focus on validated substrates and signaling circuitry with clinical relevance in human diseases, particularly oncogenesis.
Insights
Dual-specificity phosphatase 3 (DUSP3) regulates key cellular pathways and its diverse substrates impact diseases like cancer and genomic instability. Understanding DUSP3 interactions can lead to new cancer therapies.
Area of Science:
- Biochemistry
- Molecular Biology
- Oncology
Background:
- Protein tyrosine phosphatases (PTPs) are crucial regulators of biological processes.
- Dysregulation of PTPs is linked to numerous human diseases, including cancer, autoimmune disorders, and neurodegeneration.
- Vaccinia H1-related phosphatase, or dual-specificity phosphatase 3 (DUSP3), is a PTP involved in mitogen-activated protein kinase signaling.
Purpose of the Study:
- To review the biological processes mediated by DUSP3, with a focus on genomic stability.
- To highlight validated DUSP3 substrates and signaling pathways relevant to human diseases, particularly oncogenesis.
- To emphasize the potential of DUSP3 as a therapeutic target.
Main Methods:
- Literature review of existing research on DUSP3.
- Analysis of DUSP3's role in various signaling pathways.
- Examination of DUSP3's involvement in disease pathogenesis, especially cancer.
Main Results:
- DUSP3 acts as a dual regulator in cancer, functioning as both a tumor suppressor and promoter.
- DUSP3 plays significant roles in immune responses, thrombosis, hemostasis, angiogenesis, and genomic stability.
- A diverse range of substrates contributes to DUSP3's broad biological functions.
Conclusions:
- Identifying and characterizing DUSP3-substrate interactions is critical for developing targeted therapies.
- DUSP3's multifaceted roles in cellular signaling and disease pathogenesis warrant further investigation.
- Pharmacological inhibitors targeting DUSP3 hold promise for clinical applications in treating diseases like cancer.
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