Replication Stress at Telomeric and Mitochondrial DNA: Common Origins and Consequences on Ageing

被引:48
作者
Billard, Pauline [1 ,2 ]
Poncet, Delphine A. [1 ,2 ]
机构
[1] Univ Lyon, Univ Claude Bernard Lyon 1, INSERM 1052, Ctr Rech Cancerol Lyon,Ctr Leon Berard,CNRS 5286, F-69008 Lyon, France
[2] Hospices Civils Lyon, Groupement Hosp Est, Ctr Biopathol Est, Inst Biopathol Mol, F-69500 Bron, France
关键词
telomere; mitochondria; replication stress; senescence; ageing; helicase; G-quadruplex; R-loop; ROTHMUND-THOMSON SYNDROME; HISTONE VARIANT H3.3; REVERSE-TRANSCRIPTASE; OXIDATIVE STRESS; G-QUADRUPLEXES; RPA-TO-POT1; SWITCH; TOPOISOMERASE-II; PROTEIN TERT; DAMAGE; MAINTENANCE;
D O I
10.3390/ijms20194959
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Senescence is defined as a stress-induced durable cell cycle arrest. We herein revisit the origin of two of these stresses, namely mitochondrial metabolic compromise, associated with reactive oxygen species (ROS) production, and replicative senescence, activated by extreme telomere shortening. We discuss how replication stress-induced DNA damage of telomeric DNA (telDNA) and mitochondrial DNA (mtDNA) can be considered a common origin of senescence in vitro, with consequences on ageing in vivo. Unexpectedly, mtDNA and telDNA share common features indicative of a high degree of replicative stress, such as G-quadruplexes, D-loops, RNA:DNA heteroduplexes, epigenetic marks, or supercoiling. To avoid these stresses, both compartments use similar enzymatic strategies involving, for instance, endonucleases, topoisomerases, helicases, or primases. Surprisingly, many of these replication helpers are active at both telDNA and mtDNA (e.g., RNAse H1, FEN1, DNA2, RecQ helicases, Top2 alpha, Top2 beta, TOP3A, DNMT1/3a/3b, SIRT1). In addition, specialized telomeric proteins, such as TERT (telomerase reverse transcriptase) and TERC (telomerase RNA component), or TIN2 (shelterin complex), shuttle from telomeres to mitochondria, and, by doing so, modulate mitochondrial metabolism and the production of ROS, in a feedback manner. Hence, mitochondria and telomeres use common weapons and cooperate to resist/prevent replication stresses, otherwise producing common consequences, namely senescence and ageing.
引用
收藏
页数:21
相关论文
共 173 条
[51]   Mitochondrial Telomerase Reverse Transcriptase Binds to and Protects Mitochondrial DNA and Function From Damage [J].
Haendeler, Judith ;
Droese, Stefan ;
Buechner, Nicole ;
Jakob, Sascha ;
Altschmied, Joachim ;
Goy, Christine ;
Spyridopoulos, Ioakim ;
Zeiher, Andreas M. ;
Brandt, Ulrich ;
Dimmeler, Stefanie .
ARTERIOSCLEROSIS THROMBOSIS AND VASCULAR BIOLOGY, 2009, 29 (06) :929-U400
[52]   Lack of the DNA glycosylases MYH and OGG1 in the cancer prone double mutant mouse does not increase mitochondrial DNA mutagenesis [J].
Halsne, Ruth ;
Esbensen, Ying ;
Wang, Wei ;
Scheffler, Katja ;
Suganthan, Rajikala ;
Bjoras, Magnar ;
Eide, Lars .
DNA REPAIR, 2012, 11 (03) :278-285
[53]   Ciprofloxacin impairs mitochondrial DNA replication initiation through inhibition of Topoisomerase 2 [J].
Hangas, Anu ;
Aasumets, Koit ;
Kekalainen, Nina J. ;
Paloheina, Mika ;
Pohjoismaki, Jaakko L. ;
Gerhold, Joachim M. ;
Goffart, Steffi .
NUCLEIC ACIDS RESEARCH, 2018, 46 (18) :9625-9636
[54]   Tissue specific differences in mitochondrial DNA maintenance and expression [J].
Herbers, Elena ;
Kekalainen, Nina J. ;
Hangas, Anu ;
Pohjoismaki, Jaakko L. ;
Goffart, Steffi .
MITOCHONDRION, 2019, 44 :85-92
[55]   Cellular senescence in aging primates [J].
Herbig, U ;
Ferreira, M ;
Condel, L ;
Carey, D ;
Sedivy, JM .
SCIENCE, 2006, 311 (5765) :1257-1257
[56]   Telomeres are favoured targets of a persistent DNA damage response in ageing and stress-induced senescence [J].
Hewitt, Graeme ;
Jurk, Diana ;
Marques, Francisco D. M. ;
Correia-Melo, Clara ;
Hardy, Timothy ;
Gackowska, Agata ;
Anderson, Rhys ;
Taschuk, Morgan ;
Mann, Jelena ;
Passos, Joao F. .
NATURE COMMUNICATIONS, 2012, 3
[57]   TRF2 recruits ORC through TRFH domain dimerization [J].
Higa, Mitsunori ;
Kushiyama, Tatsunori ;
Kurashige, Seiichiro ;
Kohmon, Daisuke ;
Enokitani, Kouki ;
Iwahori, Satoko ;
Sugimoto, Nozomi ;
Yoshida, Kazumasa ;
Fujita, Masatoshi .
BIOCHIMICA ET BIOPHYSICA ACTA-MOLECULAR CELL RESEARCH, 2017, 1864 (01) :191-201
[58]   Topoisomerase II inhibition suppresses the proliferation of telomerase-negative cancers [J].
Hsieh, Meng-Hsun ;
Tsai, Cheng-Hui ;
Lin, Chuan-Chuan ;
Li, Tsai-Kun ;
Hung, Ting-Wei ;
Chang, Li-Te ;
Hsin, Ling-Wei ;
Teng, Shu-Chun .
CELLULAR AND MOLECULAR LIFE SCIENCES, 2015, 72 (09) :1825-1837
[59]   The Alteration of Subtelomeric DNA Methylation in Aging-Related Diseases [J].
Hu, Haochang ;
Li, Bin ;
Duan, Shiwei .
FRONTIERS IN GENETICS, 2019, 9
[60]   Generation of mice with mitochondrial dysfunction by introducing mouse mtDNA carrying a deletion into zygotes [J].
Inoue, K ;
Nakada, K ;
Ogura, A ;
Isobe, K ;
Goto, Y ;
Nonaka, I ;
Hayashi, JI .
NATURE GENETICS, 2000, 26 (02) :176-181