Deubiquitination Reactions on the Proteasome for Proteasome Versatility

The 26S proteasome, a master player in proteolysis, is the most complex and meticulously contextured protease in eukaryotic cells. While capable of hosting thousands of discrete substrates due to the selective recognition of ubiquitin tags, this protease complex is also dynamically checked through d...

Full description

Bibliographic Details
Main Authors: Ji Yeong Shin, Srinivasan Muniyappan, Non-Nuoc Tran, Hyeonjeong Park, Sung Bae Lee, Byung-Hoon Lee
Format: Article
Language:English
Published: MDPI AG 2020-07-01
Series:International Journal of Molecular Sciences
Subjects:
Online Access:https://www.mdpi.com/1422-0067/21/15/5312
id doaj-b7cceff5d66a4d71a4a7f82272fd010f
record_format Article
spelling doaj-b7cceff5d66a4d71a4a7f82272fd010f2020-11-25T03:28:51ZengMDPI AGInternational Journal of Molecular Sciences1661-65961422-00672020-07-01215312531210.3390/ijms21155312Deubiquitination Reactions on the Proteasome for Proteasome VersatilityJi Yeong Shin0Srinivasan Muniyappan1Non-Nuoc Tran2Hyeonjeong Park3Sung Bae Lee4Byung-Hoon Lee5Department of New Biology, Daegu Gyeongbuk Institute of Science and Technology (DGIST), Daegu 42988, KoreaDepartment of New Biology, Daegu Gyeongbuk Institute of Science and Technology (DGIST), Daegu 42988, KoreaDepartment of New Biology, Daegu Gyeongbuk Institute of Science and Technology (DGIST), Daegu 42988, KoreaDepartment of New Biology, Daegu Gyeongbuk Institute of Science and Technology (DGIST), Daegu 42988, KoreaProtein Dynamics-based Proteotoxicity Control Lab, Basic Research Lab, Daegu Gyeongbuk Institute of Science and Technology (DGIST), Daegu 42988, KoreaDepartment of New Biology, Daegu Gyeongbuk Institute of Science and Technology (DGIST), Daegu 42988, KoreaThe 26S proteasome, a master player in proteolysis, is the most complex and meticulously contextured protease in eukaryotic cells. While capable of hosting thousands of discrete substrates due to the selective recognition of ubiquitin tags, this protease complex is also dynamically checked through diverse regulatory mechanisms. The proteasome’s versatility ensures precise control over active proteolysis, yet prevents runaway or futile degradation of many essential cellular proteins. Among the multi-layered processes regulating the proteasome’s proteolysis, deubiquitination reactions are prominent because they not only recycle ubiquitins, but also impose a critical checkpoint for substrate degradation on the proteasome. Of note, three distinct classes of deubiquitinating enzymes—USP14, RPN11, and UCH37—are associated with the 19S subunits of the human proteasome. Recent biochemical and structural studies suggest that these enzymes exert dynamic influence over proteasome output with limited redundancy, and at times act in opposition. Such distinct activities occur spatially on the proteasome, temporally through substrate processing, and differentially for ubiquitin topology. Therefore, deubiquitinating enzymes on the proteasome may fine-tune the degradation depending on various cellular contexts and for dynamic proteolysis outcomes. Given that the proteasome is among the most important drug targets, the biology of proteasome-associated deubiquitination should be further elucidated for its potential targeting in human diseases.https://www.mdpi.com/1422-0067/21/15/5312proteasomeproteolysisubiquitindeubiquitinationdeubiquitinating enzymeUSP14
collection DOAJ
language English
format Article
sources DOAJ
author Ji Yeong Shin
Srinivasan Muniyappan
Non-Nuoc Tran
Hyeonjeong Park
Sung Bae Lee
Byung-Hoon Lee
spellingShingle Ji Yeong Shin
Srinivasan Muniyappan
Non-Nuoc Tran
Hyeonjeong Park
Sung Bae Lee
Byung-Hoon Lee
Deubiquitination Reactions on the Proteasome for Proteasome Versatility
International Journal of Molecular Sciences
proteasome
proteolysis
ubiquitin
deubiquitination
deubiquitinating enzyme
USP14
author_facet Ji Yeong Shin
Srinivasan Muniyappan
Non-Nuoc Tran
Hyeonjeong Park
Sung Bae Lee
Byung-Hoon Lee
author_sort Ji Yeong Shin
title Deubiquitination Reactions on the Proteasome for Proteasome Versatility
title_short Deubiquitination Reactions on the Proteasome for Proteasome Versatility
title_full Deubiquitination Reactions on the Proteasome for Proteasome Versatility
title_fullStr Deubiquitination Reactions on the Proteasome for Proteasome Versatility
title_full_unstemmed Deubiquitination Reactions on the Proteasome for Proteasome Versatility
title_sort deubiquitination reactions on the proteasome for proteasome versatility
publisher MDPI AG
series International Journal of Molecular Sciences
issn 1661-6596
1422-0067
publishDate 2020-07-01
description The 26S proteasome, a master player in proteolysis, is the most complex and meticulously contextured protease in eukaryotic cells. While capable of hosting thousands of discrete substrates due to the selective recognition of ubiquitin tags, this protease complex is also dynamically checked through diverse regulatory mechanisms. The proteasome’s versatility ensures precise control over active proteolysis, yet prevents runaway or futile degradation of many essential cellular proteins. Among the multi-layered processes regulating the proteasome’s proteolysis, deubiquitination reactions are prominent because they not only recycle ubiquitins, but also impose a critical checkpoint for substrate degradation on the proteasome. Of note, three distinct classes of deubiquitinating enzymes—USP14, RPN11, and UCH37—are associated with the 19S subunits of the human proteasome. Recent biochemical and structural studies suggest that these enzymes exert dynamic influence over proteasome output with limited redundancy, and at times act in opposition. Such distinct activities occur spatially on the proteasome, temporally through substrate processing, and differentially for ubiquitin topology. Therefore, deubiquitinating enzymes on the proteasome may fine-tune the degradation depending on various cellular contexts and for dynamic proteolysis outcomes. Given that the proteasome is among the most important drug targets, the biology of proteasome-associated deubiquitination should be further elucidated for its potential targeting in human diseases.
topic proteasome
proteolysis
ubiquitin
deubiquitination
deubiquitinating enzyme
USP14
url https://www.mdpi.com/1422-0067/21/15/5312
work_keys_str_mv AT jiyeongshin deubiquitinationreactionsontheproteasomeforproteasomeversatility
AT srinivasanmuniyappan deubiquitinationreactionsontheproteasomeforproteasomeversatility
AT nonnuoctran deubiquitinationreactionsontheproteasomeforproteasomeversatility
AT hyeonjeongpark deubiquitinationreactionsontheproteasomeforproteasomeversatility
AT sungbaelee deubiquitinationreactionsontheproteasomeforproteasomeversatility
AT byunghoonlee deubiquitinationreactionsontheproteasomeforproteasomeversatility
_version_ 1724582394324844544