| Literature DB >> 31114498 |
Zhiru Wang1,2,3, Wenting Kang1,2, Yinghua You1,2, Jingru Pang1,2, Hongmei Ren1,2, Zhenhe Suo3, Hongmin Liu1,2, Yichao Zheng1,2.
Abstract
Ubiquitin specific protease 7 (USP7) is one of the deubiquitinating enzymes (DUB) that erases ubiquitin and protects substrate protein from degradation. Full activity of USP7 requires the C-terminal Ub-like domains fold back onto the catalytic domain, allowing the remodeling of the active site to a catalytically competent state by the C-terminal peptide. Until now, numerous proteins have been identified as substrates of USP7, which play a key role in cell cycle, DNA repair, chromatin remodeling, and epigenetic regulation. Aberrant activation or overexpression of USP7 may promote oncogenesis and viral disease, making it a target for therapeutic intervention. Currently, several synthetic small molecules have been identified as inhibitors of USP7, and applied in the treatment of diverse diseases. Hence, USP7 may be a promising therapeutic target for the treatment of cancer.Entities:
Keywords: DNA damage; USP7; deubiquitination; immune; structure
Year: 2019 PMID: 31114498 PMCID: PMC6502913 DOI: 10.3389/fphar.2019.00427
Source DB: PubMed Journal: Front Pharmacol ISSN: 1663-9812 Impact factor: 5.810
FIGURE 1Schematic of the ubiquitin-proteasome system. Ubiquitin is activated by E1 in the presence of ATP and transferred to E2 and then conjugated to a lysine or α-amino group of the substrate protein with the aid of E3. Polyubiquinated targets are recognized and degraded by the 26S proteasome, while the ubiquitin on the substrate can be erased by DUBs to protect it from degradation.
FIGURE 2Structure analysis of USP7. (A) USP7 primary sequence map. (B) Structure of the USP7 N-terminal domain (PDB 2F1W). (C) Structure of USP7 catalytic domain and five UBl-domains (PDB 1NB8). (D) Structure of the inactive state of USP7 catalytic domain (PDB 5FWI).
FIGURE 8Overview of USP7 functions.
Proteins regulated by USP7.
| USP7 substrates | Processes | Related cancer | References |
|---|---|---|---|
| EBNA1 | Viral proteins | ||
| ICP0 | |||
| vIRFs | |||
| LANA | |||
| E1B-55K | |||
| Tat | |||
| Foxp3 | Immune response | Non-small cell lung cancer | |
| TRIM27 | Cervical carcinoma | ||
| NLRP3 | Leukemia | ||
| C-Myc and N-Myc | Oncoproteins | Neuroblastoma | |
| p53 | Tumor suppressor proteins | Ovarian cancers | |
| DAXX | Breast cancer | ||
| PTEN | Chronic lymphocytic leukemia | ||
| FOXOs family | Lung carcinoma | ||
| DNMT1 | Epigenetics | Colon cancer | |
| SUMO | |||
| LSD1 | Medulloblastoma | ||
| CHK1 | DNA damage and repair | ||
| UVSSA | |||
| ANXA1 | Hela | ||
| XPC | |||
| HLTF, Rad18 | |||
| Polη | |||
| RNF168 | Breast cancer | ||
| PHF8 | Breast cancer | ||
| MDC1 | Cervical cancer | ||
| Wnt/β-catenin signaling pathway | Several canonical signaling pathways | Colorectal cancer | |
| NF-κB signaling pathway | Multiple myeloma | ||
| NOTCH signaling pathway | Lymphoblastic leukemia |
FIGURE 3Regulation of Foxp3 by USP7. Foxp3 is ubiquitinated by STUB1 and then produces a complex containing Foxp3, Hsp70 and STUB1, which leading to proteasome degradation of Foxp3. USP7 can remove the ubiquitin on Foxp3 and stabilize it.
FIGURE 4USP7-p53-MDM2 axis interactions control the stability of p53 and MDM2. USP7 can stabilize p53 by deubiquitination, meanwhile, USP7 can also remove the ubiquitin of MDM2, which promotes to p53 degradation.
FIGURE 5USP7 and HDAC1 protect DNMT1 from degradation while Tip60 acetylates DNMT1 and promotes its degradation.
FIGURE 6USP7 interacts with a number of substrates in DNA damage response.
FIGURE 7USP7 functions in several canonical signaling pathways. USP7 functions in Wnt/β-catenin signaling pathway (left), NF-κB signaling pathway (middle), NOTCH signaling pathway (right).
FIGURE 9Chemical structures of USP7 inhibitors.
FIGURE 10Co-crystal structures of USP7 in complex with inhibitors. The electrostatic surface representation of the CD of USP7 is shown along with compounds (A) USP7-GNE6640 (PDB code 5UQV). (B) USP7-GNE6776 (PDB code 5UQX). (C) USP7-FT827 (PDB code 5NGF). (D) USP7-FT671 (PDB code 5NGE). The images were generated with molecular operating environment (MOE).