Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Ubiquitin recognition of BAP1: understanding its enzymatic function

View through CrossRef
BRCA1-associated protein 1 (BAP1) is a nuclear localizing UCH, having tumor suppressor activity and is widely involved in many crucial cellular processes. BAP1 has garnered attention for its links with cancer, however, the molecular mechanism in the regulation of cancer by BAP1 has not been established. Amongst the four UCHs, only BAP1 and UCHL5 are able to hydrolyze small and large ubiquitin adducts but UCHL5 hydrolyzes only when it is present in the PA700 complex of the proteasome. The ability of BAP1 to cleave large ubiquitin derivatives is because of its relatively longer active-site crossover loop than other UCHs. The mechanism of ubiquitin recognition has not been studied for BAP1. The comparative enzymatic analysis of ubiquitin C-terminal hydrolase L1 (UCHL1), ubiquitin C-terminal hydrolase L3 (UCHL3), ubiquitin C-terminal hydrolase L5 (UCHL5N), and BAP1N has confirmed that enzymatically BAP1 is similar to UCHL5, which corroborates with the bioinformatics analysis done earlier. We have undertaken extensive mutational approaches to gain mechanistic insight into BAP1–ubiquitin interaction. Based on the homology-modeled BAP1 structure, we have identified a few BAP1 residues which possibly play a crucial role in ubiquitin interaction of which a few mutations have been identified in many cancers. Our comparative thermodynamic analysis reveals that BAP1–ubiquitin interaction is majorly driven by entropy factor which is unique amongst UCHs. Our study sheds light on BAP1 interaction with ubiquitin, which will be useful in understanding its enzymatic function.
Title: Ubiquitin recognition of BAP1: understanding its enzymatic function
Description:
BRCA1-associated protein 1 (BAP1) is a nuclear localizing UCH, having tumor suppressor activity and is widely involved in many crucial cellular processes.
BAP1 has garnered attention for its links with cancer, however, the molecular mechanism in the regulation of cancer by BAP1 has not been established.
Amongst the four UCHs, only BAP1 and UCHL5 are able to hydrolyze small and large ubiquitin adducts but UCHL5 hydrolyzes only when it is present in the PA700 complex of the proteasome.
The ability of BAP1 to cleave large ubiquitin derivatives is because of its relatively longer active-site crossover loop than other UCHs.
The mechanism of ubiquitin recognition has not been studied for BAP1.
The comparative enzymatic analysis of ubiquitin C-terminal hydrolase L1 (UCHL1), ubiquitin C-terminal hydrolase L3 (UCHL3), ubiquitin C-terminal hydrolase L5 (UCHL5N), and BAP1N has confirmed that enzymatically BAP1 is similar to UCHL5, which corroborates with the bioinformatics analysis done earlier.
We have undertaken extensive mutational approaches to gain mechanistic insight into BAP1–ubiquitin interaction.
Based on the homology-modeled BAP1 structure, we have identified a few BAP1 residues which possibly play a crucial role in ubiquitin interaction of which a few mutations have been identified in many cancers.
Our comparative thermodynamic analysis reveals that BAP1–ubiquitin interaction is majorly driven by entropy factor which is unique amongst UCHs.
Our study sheds light on BAP1 interaction with ubiquitin, which will be useful in understanding its enzymatic function.

Related Results

Slow proliferation of BAP1-deficient uveal melanoma cells is associated with reduced S6 signaling and resistance to nutrient stress
Slow proliferation of BAP1-deficient uveal melanoma cells is associated with reduced S6 signaling and resistance to nutrient stress
Uveal melanoma (UM) is the deadliest form of eye cancer in adults. Inactivating mutations and/or loss of expression of the gene encoding BRCA1-associated protein 1 (BAP1) in UM tum...
Abstract 1757: Spectrum of BAP1 mutations identified in diverse cancer lineages
Abstract 1757: Spectrum of BAP1 mutations identified in diverse cancer lineages
Abstract Background: Germline mutations in the tumor suppressor gene, BAP1, a deubiquitylase that regulates key cellular pathways, are associated with a recently-des...
Ubiquitin and Ubiquitin‐like Protein Conjugation
Ubiquitin and Ubiquitin‐like Protein Conjugation
Abstract Protein modification by ubiquitin and ubiquitin‐like proteins (Ubls) plays a pervasive role in eukaryotic cell regulation. One aim of this article is to survey t...
A mechanistic study of the Polycomb PR-DUB complex
A mechanistic study of the Polycomb PR-DUB complex
Etude du complexe Polycomb PR-DUB : une approche mécanistique BAP1 est un suppresseur de tumeurs dont le nombre de partenaires protéiques rend complexe l'appréhensi...
Can Mutations in the BAP1 Gene be Detected by Immunohisto-chemistry in Hereditary Kidney Cancers?
Can Mutations in the BAP1 Gene be Detected by Immunohisto-chemistry in Hereditary Kidney Cancers?
  Background: Hereditary renal cell carcinoma (RCC) constitutes about 5% of all RCCs. The most common and well studied syndromes include, VHL, HLRCC, BHD, Familial Oncocytoma, RCC ...
Triad1 Regulates Myelopoiesis through Different Ubiquitin Ligase Activities.
Triad1 Regulates Myelopoiesis through Different Ubiquitin Ligase Activities.
Abstract The modification of cellular proteins with poly-ubiquitin chains plays an essential role in hematopoiesis. Different types of ubiquitin chains may have oppo...
Abstract 2728: Correlation of p62/ubiquitin IHC expression with clinicopathologic outcome in gastrointestinal carcinomas
Abstract 2728: Correlation of p62/ubiquitin IHC expression with clinicopathologic outcome in gastrointestinal carcinomas
Abstract Background:P62 and ubiquitin are small regulatory proteins demonstrated to have implications in the prognosis and survival of various malignancies including...
BAP1 serves as a clear-cell renal cell carcinoma suppressor and is inversely regulated by miR-200c-3p
BAP1 serves as a clear-cell renal cell carcinoma suppressor and is inversely regulated by miR-200c-3p
Abstract The initiation and development of malignant tumor is always accompanied by a series of complex gene expression alterations inside the cells. As a tumor suppressor,...

Back to Top