DUSP3/VHR: A Druggable Dual Phosphatase for Human Diseases

双特异性磷酸酶 磷酸酶 激酶 蛋白质酪氨酸磷酸酶 磷酸化 生物 计算生物学 可药性 MAPK/ERK通路 生物化学 细胞生物学 癌症研究 化学 基因
作者
Lucas Falcão Monteiro,Pault Y. M. Ferruzo,Lilian C. Russo,Jéssica Oliveira Farias,Fábio Luís Forti
出处
期刊:Reviews of Physiology Biochemistry and Pharmacology [Springer Science+Business Media]
卷期号:176: 1-35 被引量:21
标识
DOI:10.1007/112_2018_12
摘要

Protein tyrosine kinases (PTK), discovered in the 1970s, have been considered master regulators of biological processes with high clinical significance as targets for human diseases. Their actions are countered by protein tyrosine phosphatases (PTP), enzymes yet underrepresented as drug targets because of the high homology of their catalytic domains and high charge of their catalytic pocket. This scenario is still worse for some PTP subclasses, for example, for the atypical dual-specificity phosphatases (ADUSPs), whose biological functions are not even completely known. In this sense, the present work focuses on the dual-specificity phosphatase 3 (DUSP3), also known as VH1-related phosphatase (VHR), an uncommon regulator of mitogen-activated protein kinase (MAPK) phosphorylation. DUSP3 expression and activities are suggestive of a tumor suppressor or tumor-promoting enzyme in different types of human cancers. Furthermore, DUSP3 has other biological functions involving immune response mediation, thrombosis, hemostasis, angiogenesis, and genomic stability that occur through either MAPK-dependent or MAPK-independent mechanisms. This broad spectrum of actions is likely due to the large substrate diversity and molecular mechanisms that are still under scrutiny. The growing advances in characterizing new DUSP3 substrates will allow the development of pharmacological inhibitors relevant for possible future clinical trials. This review covers all aspects of DUSP3, since its gene cloning and crystallographic structure resolution, in addition to its classical and novel substrates and the biological processes involved, followed by an update of what is currently known about the DUSP3/VHR-inhibiting compounds that might be considered potential drugs to treat human diseases.
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