Ubiquitin modifications

被引:1503
作者
Swatek, Kirby N. [1 ]
Komander, David [1 ]
机构
[1] MRC, Mol Biol Lab, Francis Crick Ave, Cambridge CB2 0QH, England
基金
欧洲研究理事会; 英国医学研究理事会;
关键词
ubiquitin; proteasomal degradation; phosphorylation; post-translational modification; Parkin; NF-KAPPA-B; MEDIATED LINEAR UBIQUITINATION; AUTOPHAGY RECEPTOR OPTINEURIN; E3 LIGASE PARKIN; POLYUBIQUITIN CHAINS; STRUCTURAL BASIS; PINK1-DEPENDENT PHOSPHORYLATION; SUBSTRATE DEGRADATION; QUANTITATIVE-ANALYSIS; PROTEIN-DEGRADATION;
D O I
10.1038/cr.2016.39
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
Protein ubiquitination is a dynamic multifaceted post-translational modification involved in nearly all aspects of eukaryotic biology. Once attached to a substrate, the 76-amino acid protein ubiquitin is subjected to further modifications, creating a multitude of distinct signals with distinct cellular outcomes, referred to as the 'ubiquitin code'. Ubiquitin can be ubiquitinated on seven lysine (Lys) residues or on the N-terminus, leading to polyubiquitin chains that can encompass complex topologies. Alternatively or in addition, ubiquitin Lys residues can be modified by ubiquitin- like molecules (such as SUMO or NEDD8). Finally, ubiquitin can also be acetylated on Lys, or phosphorylated on Ser, Thr or Tyr residues, and each modification has the potential to dramatically alter the signaling outcome. While the number of distinctly modified ubiquitin species in cells is mind-boggling, much progress has been made to characterize the roles of distinct ubiquitin modifications, and many enzymes and receptors have been identified that create, recognize or remove these ubiquitin modifications. We here provide an overview of the various ubiquitin modifications present in cells, and highlight recent progress on ubiquitin chain biology. We then discuss the recent findings in the field of ubiquitin acetylation and phosphorylation, with a focus on Ser65-phosphorylation and its role in mitophagy and Parkin activation.
引用
收藏
页码:399 / 422
页数:24
相关论文
共 203 条
[1]   Autoubiquitination of the 26S Proteasome on Rpn13 Regulates Breakdown of Ubiquitin Conjugates [J].
Besche, Henrike C. ;
Sha, Zhe ;
Kukushkin, Nikolay V. ;
Peth, Andreas ;
Hock, Eva-Maria ;
Kim, Woong ;
Gygi, Steven ;
Gutierrez, Juan A. ;
Liao, Hua ;
Dick, Lawrence ;
Goldberg, Alfred L. .
EMBO JOURNAL, 2014, 33 (10) :1159-1176
[2]   The mitochondrial deubiquitinase USP30 opposes parkin-mediated mitophagy [J].
Bingol, Baris ;
Tea, Joy S. ;
Phu, Lilian ;
Reichelt, Mike ;
Bakalarski, Corey E. ;
Song, Qinghua ;
Foreman, Oded ;
Kirkpatrick, Donald S. ;
Sheng, Morgan .
NATURE, 2014, 510 (7505) :370-+
[3]   Human HOIP and LUBAC deficiency underlies autoinflammation, immunodeficiency, amylopectinosis, and lymphangiectasia [J].
Boisson, Bertrand ;
Laplantine, Emmanuel ;
Dobbs, Kerry ;
Cobat, Aurelie ;
Tarantino, Nadine ;
Hazen, Melissa ;
Lidov, Hart G. W. ;
Hopkins, Gregory ;
Du, Likun ;
Belkadi, Aziz ;
Chrabieh, Maya ;
Itan, Yuval ;
Picard, Capucine ;
Fournet, Jean-Christophe ;
Eibel, Hermann ;
Tsitsikov, Erdyni ;
Pai, Sung-Yun ;
Abel, Laurent ;
Al-Herz, Waleed ;
Casanova, Jean-Laurent ;
Israel, Alain ;
Notarangelo, Luigi D. .
JOURNAL OF EXPERIMENTAL MEDICINE, 2015, 212 (06) :939-951
[4]   Immunodeficiency, autoinflammation and amylopectinosis in humans with inherited HOIL-1 and LUBAC deficiency [J].
Boisson, Bertrand ;
Laplantine, Emmanuel ;
Prando, Carolina ;
Giliani, Silvia ;
Israelsson, Elisabeth ;
Xu, Zhaohui ;
Abhyankar, Avinash ;
Israel, Laura ;
Trevejo-Nunez, Giraldina ;
Bogunovic, Dusan ;
Cepika, Alma-Martina ;
MacDuff, Donna ;
Chrabieh, Maya ;
Hubeau, Marjorie ;
Bajolle, Fanny ;
Debre, Marianne ;
Mazzolari, Evelina ;
Vairo, Donatella ;
Agou, Fabrice ;
Virgin, Herbert W. ;
Bossuyt, Xavier ;
Rambaud, Caroline ;
Facchetti, Fabio ;
Bonnet, Damien ;
Quartier, Pierre ;
Fournet, Jean-Christophe ;
Pascual, Virginia ;
Chaussabel, Damien ;
Notarangelo, Luigi D. ;
Puel, Anne ;
Israel, Alain ;
Casanova, Jean-Laurent ;
Picard, Capucine .
NATURE IMMUNOLOGY, 2012, 13 (12) :1178-+
[5]   Efficient Internalization of MHC I Requires Lysine-11 and Lysine-63 Mixed Linkage Polyubiquitin Chains [J].
Boname, Jessica M. ;
Thomas, Mair ;
Stagg, Helen R. ;
Xu, Ping ;
Peng, Junmin ;
Lehner, Paul J. .
TRAFFIC, 2010, 11 (02) :210-220
[6]   Cezanne (OTUD7B) regulates HIF-1α homeostasis in a proteasome-independent manner [J].
Bremm, Anja ;
Moniz, Sonia ;
Mader, Julia ;
Rocha, Sonia ;
Komander, David .
EMBO REPORTS, 2014, 15 (12) :1268-1277
[7]   Emerging roles for Lys11-linked polyubiquitin in cellular regulation [J].
Bremm, Anja ;
Komander, David .
TRENDS IN BIOCHEMICAL SCIENCES, 2011, 36 (07) :355-363
[8]   Autoregulation of Parkin activity through its ubiquitin-like domain [J].
Chaugule, Viduth K. ;
Burchell, Lynn ;
Barber, Kathryn R. ;
Sidhu, Ateesh ;
Leslie, Simon J. ;
Shaw, Gary S. ;
Walden, Helen .
EMBO JOURNAL, 2011, 30 (14) :2853-2867
[9]   Regulation of NF-κB by ubiquitination [J].
Chen, Jueqi ;
Chen, Zhijian J. .
CURRENT OPINION IN IMMUNOLOGY, 2013, 25 (01) :4-12
[10]   PINK1-Phosphorylated Mitofusin 2 Is a Parkin Receptor for Culling Damaged Mitochondria [J].
Chen, Yun ;
Dorn, Gerald W., II .
SCIENCE, 2013, 340 (6131) :471-475