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In Vitro Ubiquitination and Deubiquitination Assays of Nucleosomal Histones
Published on: July 25, 2019
Roles and mechanisms of BAP1 deubiquitinase in tumor suppression
Louis Masclef1, Oumaima Ahmed1, Benjamin Estavoyer1
1Laboratory for Cell Signaling and Cancer, Maisonneuve-Rosemont Hospital Research Center, Montréal, QC, H1T 2M4, Canada.
Abstract:
The BAP1 gene has emerged as a major tumor suppressor mutated with various frequencies in numerous human malignancies, including uveal melanoma, malignant pleural mesothelioma, clear cell renal cell carcinoma, intrahepatic cholangiocarcinoma, hepatocellular carcinoma, and thymic epithelial tumors. BAP1 mutations are also observed at low frequency in other malignancies including breast, colorectal, pancreatic, and bladder cancers. BAP1 germline mutations are associated with high incidence of mesothelioma, uveal melanoma, and other cancers, defining the "BAP1 cancer syndrome." Interestingly, germline BAP1 mutations constitute an important paradigm for gene-environment interactions, as loss of BAP1 predisposes to carcinogen-induced tumorigenesis. Inactivating mutations of BAP1 are also identified in sporadic cancers, denoting the importance of this gene for normal tissue homeostasis and tumor suppression, although some oncogenic properties have also been attributed to BAP1. BAP1 belongs to the deubiquitinase superfamily of enzymes, which are responsible for the maturation and turnover of ubiquitin as well as the reversal of substrate ubiquitination, thus regulating ubiquitin signaling. BAP1 is predominantly nuclear and interacts with several chromatin-associated factors, assembling multi-protein complexes with mutually exclusive partners. BAP1 exerts its function through highly regulated deubiquitination of its substrates. As such, BAP1 orchestrates chromatin-associated processes including gene expression, DNA replication, and DNA repair. BAP1 also exerts cytoplasmic functions, notably in regulating Ca2+ signaling at the endoplasmic reticulum. This DUB is also subjected to multiple post-translational modifications, notably phosphorylation and ubiquitination, indicating that several signaling pathways tightly regulate its function. Recent progress indicated that BAP1 plays essential roles in multiple cellular processes including cell proliferation and differentiation, cell metabolism, as well as cell survival and death. In this review, we summarize the biological and molecular functions of BAP1 and explain how the inactivation of this DUB might cause human cancers. We also highlight some of the unresolved questions and suggest potential new directions.
Insights
The BAP1 gene is a crucial tumor suppressor. Its inactivation causes various cancers, including mesothelioma and uveal melanoma, highlighting its role in gene-environment interactions and cancer development.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- The BAP1 gene functions as a major tumor suppressor, with mutations observed in numerous human cancers like uveal melanoma and mesothelioma.
- Germline BAP1 mutations define the BAP1 cancer syndrome, predisposing individuals to carcinogen-induced tumorigenesis and indicating gene-environment interactions.
Purpose of the Study:
- To review the biological and molecular functions of the BAP1 gene.
- To elucidate how BAP1 inactivation contributes to human cancer development.
- To identify unresolved questions and suggest future research directions for BAP1 in cancer.
Main Methods:
- Literature review of BAP1's role in various cancers.
- Analysis of BAP1's molecular functions, including its deubiquitinase activity and interactions.
- Summary of BAP1's involvement in cellular processes like DNA repair and gene expression.
Main Results:
- BAP1, a deubiquitinase, regulates chromatin-associated processes and cytoplasmic signaling.
- Inactivating BAP1 mutations are implicated in a wide spectrum of sporadic and hereditary cancers.
- BAP1's functions extend to cell proliferation, differentiation, metabolism, survival, and death.
Conclusions:
- BAP1 is a critical tumor suppressor whose inactivation drives tumorigenesis through diverse mechanisms.
- Understanding BAP1's multifaceted roles is essential for developing targeted cancer therapies.
- Further research into BAP1's regulation and function may uncover new avenues for cancer prevention and treatment.
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