Cellular senescence and senescence-associated secretory phenotype via the cGAS-STING signaling pathway in cancer

被引:168
作者
Loo, Tze Mun [1 ]
Miyata, Kenichi [1 ]
Tanaka, Yoko [1 ]
Takahashi, Akiko [1 ,2 ,3 ]
机构
[1] Japanese Fdn Canc Res, Inst Canc, Project Cellular Senescence, Tokyo, Japan
[2] JST, PRESTO, Saitama, Japan
[3] AMED, PRIME, Tokyo, Japan
基金
日本学术振兴会; 日本科学技术振兴机构;
关键词
cellular senescence; cGAS-STING; DNA damage; SASP; tumorigenesis; ONCOGENE-INDUCED SENESCENCE; DNA-DAMAGE; CYCLE ARREST; TUMOR SUPPRESSION; STELLATE CELLS; LIVER-CANCER; P16(INK4A); P21(WAF1/CIP1); INFLAMMATION; EXPRESSION;
D O I
10.1111/cas.14266
中图分类号
R73 [肿瘤学];
学科分类号
100214 ;
摘要
Cellular senescence is historically regarded as a tumor suppression mechanism to prevent damaged cells from aberrant proliferation in benign and premalignant tumors. However, recent findings have suggested that senescent cells contribute to tumorigenesis and age-associated pathologies through the senescence-associated secretory phenotype (SASP). Therefore, to control age-associated cancer, it is important to understand the molecular mechanisms of the SASP in the cancer microenvironment. New findings have suggested that the cyclic GMP-AMP synthase (cGAS)-stimulator of interferon genes (STING) signaling pathway, a critical indicator of innate immune response, triggers the SASP in response to accumulation of cytoplasmic DNA (cytoplasmic chromatin fragments, mtDNA and cDNA) in senescent cells. Notably, the cGAS-STING signaling pathway promotes or inhibits tumorigenesis depending on the biological context in vivo, indicating that it may be a potential therapeutic target for cancer. Herein, we review the regulatory machinery and biological function of the SASP via the cGAS-STING signaling pathway in cancer.
引用
收藏
页码:304 / 311
页数:8
相关论文
共 82 条
[1]   Chemokine signaling via the CXCR2 receptor reinforces senescence [J].
Acosta, Juan C. ;
O'Loghlen, Ana ;
Banito, Ana ;
Guijarro, Maria V. ;
Augert, Arnaud ;
Raguz, Selina ;
Fumagalli, Marzia ;
Da Costa, Marco ;
Brown, Celia ;
Popov, Nikolay ;
Takatsu, Yoshihiro ;
Melamed, Jonathan ;
di Fagagna, Fabrizio d'Adda ;
Bernard, David ;
Hernando, Eva ;
Gil, Jesus .
CELL, 2008, 133 (06) :1006-1018
[2]   A complex secretory program orchestrated by the inflammasome controls paracrine senescence [J].
Acosta, Juan Carlos ;
Banito, Ana ;
Wuestefeld, Torsten ;
Georgilis, Athena ;
Janich, Peggy ;
Morton, Jennifer P. ;
Athineos, Dimitris ;
Kang, Tae-Won ;
Lasitschka, Felix ;
Andrulis, Mindaugas ;
Pascual, Gloria ;
Morris, Kelly J. ;
Khan, Sadaf ;
Jin, Hong ;
Dharmalingam, Gopuraja ;
Snijders, Ambrosius P. ;
Carroll, Thomas ;
Capper, David ;
Pritchard, Catrin ;
Inman, Gareth J. ;
Longerich, Thomas ;
Sansom, Owen J. ;
Aznar Benitah, Salvador ;
Zender, Lars ;
Gil, Jesus .
NATURE CELL BIOLOGY, 2013, 15 (08) :978-U221
[3]   Oncogene-induced senescence is part of the tumorigenesis barrier imposed by DNA damage checkpoints [J].
Bartkova, Jirina ;
Rezaei, Nousin ;
Liontos, Michalis ;
Karakaidos, Panagiotis ;
Kletsas, Dimitris ;
Issaeva, Natalia ;
Vassiliou, Leandros-Vassilios F. ;
Kolettas, Evangelos ;
Niforou, Katerina ;
Zoumpourlis, Vassilis C. ;
Takaoka, Munenori ;
Nakagawa, Hiroshi ;
Tort, Frederic ;
Fugger, Kasper ;
Johansson, Fredrik ;
Sehested, Maxwell ;
Andersen, Claus L. ;
Dyrskjot, Lars ;
Orntoft, Torben ;
Lukas, Jiri ;
Kittas, Christos ;
Helleday, Thomas ;
Halazonetis, Thanos D. ;
Bartek, Jiri ;
Gorgoulis, Vassilis G. .
NATURE, 2006, 444 (7119) :633-637
[4]   LINE-1 Retrotransposition Activity in Human Genomes [J].
Beck, Christine R. ;
Collier, Pamela ;
Macfarlane, Catriona ;
Malig, Maika ;
Kidd, Jeffrey M. ;
Eichler, Evan E. ;
Badge, Richard M. ;
Moran, John V. .
CELL, 2010, 141 (07) :1159-U110
[5]   Oncogene-induced senescence as an initial barrier in lymphoma development [J].
Braig, M ;
Lee, S ;
Loddenkemper, C ;
Rudolph, C ;
Peters, AHFM ;
Schlegelberger, B ;
Stein, H ;
Dörken, B ;
Jenuwein, T ;
Schmitt, CA .
NATURE, 2005, 436 (7051) :660-665
[6]   RADIATION-INDUCED CELL-CYCLE ARREST COMPROMISED BY P21 DEFICIENCY [J].
BRUGAROLAS, J ;
CHANDRASEKARAN, C ;
GORDON, JI ;
BEACH, D ;
JACKS, T ;
HANNON, GJ .
NATURE, 1995, 377 (6549) :552-557
[7]   Aging, Cellular Senescence, and Cancer [J].
Campisi, Judith .
ANNUAL REVIEW OF PHYSIOLOGY, VOL 75, 2013, 75 :685-705
[8]   MLL1 is essential for the senescence-associated secretory phenotype [J].
Capell, Brian C. ;
Drake, Adam M. ;
Zhu, Jiajun ;
Shah, Parisha P. ;
Dou, Zhixun ;
Dorsey, Jean ;
Simola, Daniel F. ;
Donahue, Greg ;
Sammons, Morgan ;
Rai, Taranjit Singh ;
Natale, Christopher ;
Ridky, Todd W. ;
Adams, Peter D. ;
Berger, Shelley L. .
GENES & DEVELOPMENT, 2016, 30 (03) :321-336
[9]   MacroH2A1 and ATM Play Opposing Roles in Paracrine Senescence and the Senescence-Associated Secretory Phenotype [J].
Chen, Hongshan ;
Ruiz, Penelope D. ;
McKimpson, Wendy M. ;
Novikov, Leonid ;
Kitsis, Richard N. ;
Gamble, Matthew J. .
MOLECULAR CELL, 2015, 59 (05) :719-731
[10]   Crucial role of p53-dependent cellular senescence in suppression of Pten-deficient tumorigenesis [J].
Chen, ZB ;
Trotman, LC ;
Shaffer, D ;
Lin, HK ;
Dotan, ZA ;
Niki, M ;
Koutcher, JA ;
Scher, HI ;
Ludwig, T ;
Gerald, W ;
Cordon-Cardo, C ;
Pandolfi, PP .
NATURE, 2005, 436 (7051) :725-730