The selective degradation of sirtuins via macroautophagy in the MPP+ model of Parkinson's disease is promoted by conserved oxidation sites

被引:24
作者
Baeken, Marius W. [1 ,4 ]
Schwarz, Mario [1 ]
Kern, Andreas [1 ]
Moosmann, Bernd [2 ]
Hajieva, Parvana [3 ,5 ]
Behl, Christian [1 ]
机构
[1] Johannes Gutenberg Univ Mainz, Univ Med Ctr, Autophagy Lab, Inst Pathobiochem, Mainz, Germany
[2] Johannes Gutenberg Univ Mainz, Inst Pathobiochem Evolutionary Biochem & Redox Me, Univ Med Ctr, Mainz, Germany
[3] Johannes Gutenberg Univ Mainz, Inst Pathobiochem, Univ Med Ctr, Cellular Adaptat Grp, Mainz, Germany
[4] Okinawa Inst Sci & Technol Grad Univ, Nucle Acid Chem & Engn Unit, Onna, Okinawa 9040495, Japan
[5] MSH Med Sch, Inst Mol Med, Hamburg, Germany
关键词
LIFE-SPAN; NAD(+); SIRT3; MITOCHONDRIA; DEACETYLASE; REGULATOR; AUTOPHAGY; RESIDUES; PROTECTS; HOMOLOG;
D O I
10.1038/s41420-021-00683-x
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
The sirtuin (SIRT) protein family has been of major research interest over the last decades because of their involvement in aging, cancer, and cell death. SIRTs have been implicated in gene and metabolic regulation through their capacity to remove acyl groups from lysine residues in proteins in an NAD(+)-dependent manner, which may alter individual protein properties as well as the histone-DNA interaction. Since SIRTs regulate a wide range of different signaling cascades, a fine-tuned homeostasis of these proteins is imperative to guarantee the function and survival of the cell. So far, however, how exactly this homeostasis is established has remained unknown. Here, we provide evidence that neuronal SIRT degradation in Parkinson's disease (PD) models is executed by autophagy rather than the proteasome. In neuronal Lund human mesencephalic (LUHMES) cells, all seven SIRTs were substrates for autophagy and showed an accelerated autophagy-dependent degradation upon 1-methyl-4-phenylpyridinium (MPP+) mediated oxidative insults in vitro, whereas the proteasome did not contribute to the removal of oxidized SIRTs. Through blockade of endogenous H2O2 generation and supplementation with the selective radical scavenger phenothiazine (PHT), we could identify H2O2-derived species as the responsible SIRT-oxidizing agents. Analysis of all human SIRTs suggested a conserved regulatory motif based on cysteine oxidation, which may have triggered their degradation via autophagy. High amounts of H2O2, however, rapidly carbonylated selectively SIRT2, SIRT6, and SIRT7, which were found to accumulate carbonylation-prone amino acids. Our data may help in finding new strategies to maintain and modify SIRT bioavailability in neurodegenerative disorders.
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页数:11
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共 62 条
[1]   Alpha synuclein aggregation drives ferroptosis: an interplay of iron, calcium and lipid peroxidation [J].
Angelova, Plamena R. ;
Choil, Minee L. ;
Berezhnov, Alexey, V ;
Horrocks, Mathew H. ;
Hughes, Craig D. ;
De, Suman ;
Rodrigues, Margarida ;
Yapom, Ratsuda ;
Little, Daniel ;
Dolt, Karamjit S. ;
Kunath, Tilo ;
Devine, Michael J. ;
Gissen, Paul ;
Shchepinov, Mikhail S. ;
Sylantyev, Sergiy ;
Pavlov, Evgeny, V ;
Klenerman, David ;
Abramov, Andrey Y. ;
Gandhi, Sonia .
CELL DEATH AND DIFFERENTIATION, 2020, 27 (10) :2781-2796
[2]   Novel Insights into the Cellular Localization and Regulation of the Autophagosomal Proteins LC3A, LC3B and LC3C [J].
Baeken, Marius W. ;
Weckmann, Katja ;
Diefenthaler, Philip ;
Schulte, Jan ;
Yusifli, Kamran ;
Moosmann, Bernd ;
Behl, Christian ;
Hajieva, Parvana .
CELLS, 2020, 9 (10) :1-26
[3]   Retrotransposon activation by distressed mitochondria in neurons [J].
Baeken, Marius W. ;
Moosmann, Bernd ;
Hajieva, Parvana .
BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 2020, 525 (03) :570-575
[4]   UniProt: a worldwide hub of protein knowledge [J].
Bateman, Alex ;
Martin, Maria-Jesus ;
Orchard, Sandra ;
Magrane, Michele ;
Alpi, Emanuele ;
Bely, Benoit ;
Bingley, Mark ;
Britto, Ramona ;
Bursteinas, Borisas ;
Busiello, Gianluca ;
Bye-A-Jee, Hema ;
Da Silva, Alan ;
De Giorgi, Maurizio ;
Dogan, Tunca ;
Castro, Leyla Garcia ;
Garmiri, Penelope ;
Georghiou, George ;
Gonzales, Daniel ;
Gonzales, Leonardo ;
Hatton-Ellis, Emma ;
Ignatchenko, Alexandr ;
Ishtiaq, Rizwan ;
Jokinen, Petteri ;
Joshi, Vishal ;
Jyothi, Dushyanth ;
Lopez, Rodrigo ;
Luo, Jie ;
Lussi, Yvonne ;
MacDougall, Alistair ;
Madeira, Fabio ;
Mahmoudy, Mahdi ;
Menchi, Manuela ;
Nightingale, Andrew ;
Onwubiko, Joseph ;
Palka, Barbara ;
Pichler, Klemens ;
Pundir, Sangya ;
Qi, Guoying ;
Raj, Shriya ;
Renaux, Alexandre ;
Lopez, Milagros Rodriguez ;
Saidi, Rabie ;
Sawford, Tony ;
Shypitsyna, Aleksandra ;
Speretta, Elena ;
Turner, Edward ;
Tyagi, Nidhi ;
Vasudev, Preethi ;
Volynkin, Vladimir ;
Wardell, Tony .
NUCLEIC ACIDS RESEARCH, 2019, 47 (D1) :D506-D515
[5]   A novel VNTR enhancer within the SIRT3 gene, a human homologue of SIR2, is associated with survival at oldest ages [J].
Bellizzi, D ;
Rose, G ;
Cavalcante, P ;
Covello, G ;
Dato, S ;
De Rango, F ;
Greco, V ;
Maggiolini, M ;
Feraco, E ;
Mari, V ;
Franceschi, C ;
Passarino, G ;
De Benedictis, G .
GENOMICS, 2005, 85 (02) :258-263
[6]   SIRT7 antagonizes human stem cell aging as a heterochromatin stabilizer [J].
Bi, Shijia ;
Liu, Zunpeng ;
Wu, Zeming ;
Wang, Zehua ;
Liu, Xiaoqian ;
Wang, Si ;
Ren, Jie ;
Yao, Yan ;
Zhang, Weiqi ;
Song, Moshi ;
Liu, Guang-Hui ;
Qu, Jing .
PROTEIN & CELL, 2020, 11 (07) :483-504
[7]   Slowing ageing by design: the rise of NAD+ and sirtuin-activating compounds [J].
Bonkowski, Michael S. ;
Sinclair, David A. .
NATURE REVIEWS MOLECULAR CELL BIOLOGY, 2016, 17 (11) :679-690
[8]   Absence of effects of Sir2 overexpression on lifespan in C. elegans and Drosophila [J].
Burnett, Camilla ;
Valentini, Sara ;
Cabreiro, Filipe ;
Goss, Martin ;
Somogyvari, Milan ;
Piper, Matthew D. ;
Hoddinott, Matthew ;
Sutphin, George L. ;
Leko, Vid ;
McElwee, Joshua J. ;
Vazquez-Manrique, Rafael P. ;
Orfila, Anne-Marie ;
Ackerman, Daniel ;
Au, Catherine ;
Vinti, Giovanna ;
Riesen, Michele ;
Howard, Ken ;
Neri, Christian ;
Bedalov, Antonio ;
Kaeberlein, Matt ;
Soti, Csaba ;
Partridge, Linda ;
Gems, David .
NATURE, 2011, 477 (7365) :482-U136
[9]   A Regulatory Signaling Loop Comprising the PGAM5 Phosphatase and CK2 Controls Receptor-Mediated Mitophagy [J].
Chen, Guo ;
Han, Zhe ;
Feng, Du ;
Chen, Yanfang ;
Chen, Linbo ;
Wu, Hao ;
Huang, Li ;
Zhou, Changqian ;
Cai, Xiangyu ;
Fu, Changying ;
Duan, Liangwei ;
Wang, Xiaohui ;
Liu, Lei ;
Liu, Xinqi ;
Shen, Yuequan ;
Zhu, Yushan ;
Chen, Quan .
MOLECULAR CELL, 2014, 54 (03) :362-377
[10]   Zinc deficiency: An unexpected trigger for autophagy [J].
Ding, Binbin ;
Zhong, Qing .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2017, 292 (20) :8531-8532