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List of co-cited articles
1066 articles co-cited >1



Times Cited
  Times     Co-cited
Similarity


Cyclic GMP-AMP synthase is a cytosolic DNA sensor that activates the type I interferon pathway.
Lijun Sun, Jiaxi Wu, Fenghe Du, Xiang Chen, Zhijian J Chen. Science 2013
28

cGAS surveillance of micronuclei links genome instability to innate immunity.
Karen J Mackenzie, Paula Carroll, Carol-Anne Martin, Olga Murina, Adeline Fluteau, Daniel J Simpson, Nelly Olova, Hannah Sutcliffe, Jacqueline K Rainger, Andrea Leitch,[...]. Nature 2017
519
25

Mitotic progression following DNA damage enables pattern recognition within micronuclei.
Shane M Harding, Joseph L Benci, Jerome Irianto, Dennis E Discher, Andy J Minn, Roger A Greenberg. Nature 2017
501
22

Regulation and function of the cGAS-STING pathway of cytosolic DNA sensing.
Qi Chen, Lijun Sun, Zhijian J Chen. Nat Immunol 2016
649
21

Cytoplasmic chromatin triggers inflammation in senescence and cancer.
Zhixun Dou, Kanad Ghosh, Maria Grazia Vizioli, Jiajun Zhu, Payel Sen, Kirk J Wangensteen, Johayra Simithy, Yemin Lan, Yanping Lin, Zhuo Zhou,[...]. Nature 2017
372
20

Innate immune sensing of cytosolic chromatin fragments through cGAS promotes senescence.
Selene Glück, Baptiste Guey, Muhammet Fatih Gulen, Katharina Wolter, Tae-Won Kang, Niklas Arndt Schmacke, Anne Bridgeman, Jan Rehwinkel, Lars Zender, Andrea Ablasser. Nat Cell Biol 2017
341
18

STING-Dependent Cytosolic DNA Sensing Promotes Radiation-Induced Type I Interferon-Dependent Antitumor Immunity in Immunogenic Tumors.
Liufu Deng, Hua Liang, Meng Xu, Xuanming Yang, Byron Burnette, Ainhoa Arina, Xiao-Dong Li, Helena Mauceri, Michael Beckett, Thomas Darga,[...]. Immunity 2014
805
16

cGAS is essential for cellular senescence.
Hui Yang, Hanze Wang, Junyao Ren, Qi Chen, Zhijian J Chen. Proc Natl Acad Sci U S A 2017
337
16


STING-dependent cytosolic DNA sensing mediates innate immune recognition of immunogenic tumors.
Seng-Ryong Woo, Mercedes B Fuertes, Leticia Corrales, Stefani Spranger, Michael J Furdyna, Michael Y K Leung, Ryan Duggan, Ying Wang, Glen N Barber, Katherine A Fitzgerald,[...]. Immunity 2014
707
15

DNA sensing by the cGAS-STING pathway in health and disease.
Mona Motwani, Scott Pesiridis, Katherine A Fitzgerald. Nat Rev Genet 2019
230
14


Cyclic GMP-AMP is an endogenous second messenger in innate immune signaling by cytosolic DNA.
Jiaxi Wu, Lijun Sun, Xiang Chen, Fenghe Du, Heping Shi, Chuo Chen, Zhijian J Chen. Science 2013
990
13

Autophagy induction via STING trafficking is a primordial function of the cGAS pathway.
Xiang Gui, Hui Yang, Tuo Li, Xiaojun Tan, Peiqing Shi, Minghao Li, Fenghe Du, Zhijian J Chen. Nature 2019
214
13

cGAS produces a 2'-5'-linked cyclic dinucleotide second messenger that activates STING.
Andrea Ablasser, Marion Goldeck, Taner Cavlar, Tobias Deimling, Gregor Witte, Ingo Röhl, Karl-Peter Hopfner, Janos Ludwig, Veit Hornung. Nature 2013
676
13

Pivotal roles of cGAS-cGAMP signaling in antiviral defense and immune adjuvant effects.
Xiao-Dong Li, Jiaxi Wu, Daxing Gao, Hua Wang, Lijun Sun, Zhijian J Chen. Science 2013
555
13

Chromosomal instability drives metastasis through a cytosolic DNA response.
Samuel F Bakhoum, Bryan Ngo, Ashley M Laughney, Julie-Ann Cavallo, Charles J Murphy, Peter Ly, Pragya Shah, Roshan K Sriram, Thomas B K Watkins, Neil K Taunk,[...]. Nature 2018
408
12

Activated STING in a vascular and pulmonary syndrome.
Y Liu, A A Jesus, B Marrero, D Yang, S E Ramsey, G A Montealegre Sanchez, K Tenbrock, H Wittkowski, O Y Jones, H S Kuehn,[...]. N Engl J Med 2014
598
12

Molecular mechanisms and cellular functions of cGAS-STING signalling.
Karl-Peter Hopfner, Veit Hornung. Nat Rev Mol Cell Biol 2020
95
12

Hallmarks of cancer: the next generation.
Douglas Hanahan, Robert A Weinberg. Cell 2011
12

Cyclic [G(2',5')pA(3',5')p] is the metazoan second messenger produced by DNA-activated cyclic GMP-AMP synthase.
Pu Gao, Manuel Ascano, Yang Wu, Winfried Barchet, Barbara L Gaffney, Thomas Zillinger, Artem A Serganov, Yizhou Liu, Roger A Jones, Gunther Hartmann,[...]. Cell 2013
463
11

SAMHD1 acts at stalled replication forks to prevent interferon induction.
Flavie Coquel, Maria-Joao Silva, Hervé Técher, Karina Zadorozhny, Sushma Sharma, Jadwiga Nieminuszczy, Clément Mettling, Elodie Dardillac, Antoine Barthe, Anne-Lyne Schmitz,[...]. Nature 2018
139
11

Apoptotic caspases suppress mtDNA-induced STING-mediated type I IFN production.
Michael J White, Kate McArthur, Donald Metcalf, Rachael M Lane, John C Cambier, Marco J Herold, Mark F van Delft, Sammy Bedoui, Guillaume Lessene, Matthew E Ritchie,[...]. Cell 2014
396
10

cGAS is essential for the antitumor effect of immune checkpoint blockade.
Hua Wang, Shuiqing Hu, Xiang Chen, Heping Shi, Chuo Chen, Lijun Sun, Zhijian J Chen. Proc Natl Acad Sci U S A 2017
195
10

STING: infection, inflammation and cancer.
Glen N Barber. Nat Rev Immunol 2015
469
10

Cyclic GMP-AMP containing mixed phosphodiester linkages is an endogenous high-affinity ligand for STING.
Xu Zhang, Heping Shi, Jiaxi Wu, Xuewu Zhang, Lijun Sun, Chuo Chen, Zhijian J Chen. Mol Cell 2013
456
10

Phosphorylation of innate immune adaptor proteins MAVS, STING, and TRIF induces IRF3 activation.
Siqi Liu, Xin Cai, Jiaxi Wu, Qian Cong, Xiang Chen, Tuo Li, Fenghe Du, Junyao Ren, You-Tong Wu, Nick V Grishin,[...]. Science 2015
631
10

STING is a direct innate immune sensor of cyclic di-GMP.
Dara L Burdette, Kathryn M Monroe, Katia Sotelo-Troha, Jeff S Iwig, Barbara Eckert, Mamoru Hyodo, Yoshihiro Hayakawa, Russell E Vance. Nature 2011
788
10

Cell intrinsic immunity spreads to bystander cells via the intercellular transfer of cGAMP.
Andrea Ablasser, Jonathan L Schmid-Burgk, Inga Hemmerling, Gabor L Horvath, Tobias Schmidt, Eicke Latz, Veit Hornung. Nature 2013
307
10

STING Activation by Translocation from the ER Is Associated with Infection and Autoinflammatory Disease.
Nicole Dobbs, Nikolay Burnaevskiy, Didi Chen, Vijay K Gonugunta, Neal M Alto, Nan Yan. Cell Host Microbe 2015
196
10

Structural mechanism of cytosolic DNA sensing by cGAS.
Filiz Civril, Tobias Deimling, Carina C de Oliveira Mann, Andrea Ablasser, Manuela Moldt, Gregor Witte, Veit Hornung, Karl-Peter Hopfner. Nature 2013
341
10

Activation of cyclic GMP-AMP synthase by self-DNA causes autoimmune diseases.
Daxing Gao, Tuo Li, Xiao-Dong Li, Xiang Chen, Quan-Zhen Li, Mary Wight-Carter, Zhijian J Chen. Proc Natl Acad Sci U S A 2015
290
10

Cyclic GMP-AMP synthase is an innate immune sensor of HIV and other retroviruses.
Daxing Gao, Jiaxi Wu, You-Tong Wu, Fenghe Du, Chukwuemika Aroh, Nan Yan, Lijun Sun, Zhijian J Chen. Science 2013
587
10

Non-canonical Activation of the DNA Sensing Adaptor STING by ATM and IFI16 Mediates NF-κB Signaling after Nuclear DNA Damage.
Gillian Dunphy, Sinéad M Flannery, Jessica F Almine, Dympna J Connolly, Christina Paulus, Kasper L Jønsson, Martin R Jakobsen, Michael M Nevels, Andrew G Bowie, Leonie Unterholzner. Mol Cell 2018
146
10

DNA damage primes the type I interferon system via the cytosolic DNA sensor STING to promote anti-microbial innate immunity.
Anetta Härtlova, Saskia F Erttmann, Faizal Am Raffi, Anja M Schmalz, Ulrike Resch, Sharath Anugula, Stefan Lienenklaus, Lisa M Nilsson, Andrea Kröger, Jonas A Nilsson,[...]. Immunity 2015
339
10


Direct Activation of STING in the Tumor Microenvironment Leads to Potent and Systemic Tumor Regression and Immunity.
Leticia Corrales, Laura Hix Glickman, Sarah M McWhirter, David B Kanne, Kelsey E Sivick, George E Katibah, Seng-Ryong Woo, Edward Lemmens, Tamara Banda, Justin J Leong,[...]. Cell Rep 2015
541
9

Nuclear cGAS suppresses DNA repair and promotes tumorigenesis.
Haipeng Liu, Haiping Zhang, Xiangyang Wu, Dapeng Ma, Juehui Wu, Lin Wang, Yan Jiang, Yiyan Fei, Chenggang Zhu, Rong Tan,[...]. Nature 2018
179
9

Signalling strength determines proapoptotic functions of STING.
Muhammet F Gulen, Ute Koch, Simone M Haag, Fabian Schuler, Lionel Apetoh, Andreas Villunger, Freddy Radtke, Andrea Ablasser. Nat Commun 2017
136
9

Cyclic GMP-AMP synthase is activated by double-stranded DNA-induced oligomerization.
Xin Li, Chang Shu, Guanghui Yi, Catherine T Chaton, Catherine L Shelton, Jiasheng Diao, Xiaobing Zuo, C Cheng Kao, Andrew B Herr, Pingwei Li. Immunity 2013
250
9

The cGAS-STING Defense Pathway and Its Counteraction by Viruses.
Zhe Ma, Blossom Damania. Cell Host Microbe 2016
154
9

Carcinoma-astrocyte gap junctions promote brain metastasis by cGAMP transfer.
Qing Chen, Adrienne Boire, Xin Jin, Manuel Valiente, Ekrem Emrah Er, Alejandro Lopez-Soto, Leni Jacob, Ruzeen Patwa, Hardik Shah, Ke Xu,[...]. Nature 2016
355
9

DNA exonuclease Trex1 regulates radiotherapy-induced tumour immunogenicity.
Claire Vanpouille-Box, Amandine Alard, Molykutty J Aryankalayil, Yasmeen Sarfraz, Julie M Diamond, Robert J Schneider, Giorgio Inghirami, C Norman Coleman, Silvia C Formenti, Sandra Demaria. Nat Commun 2017
629
9

Mitochondrial DNA stress primes the antiviral innate immune response.
A Phillip West, William Khoury-Hanold, Matthew Staron, Michal C Tal, Cristiana M Pineda, Sabine M Lang, Megan Bestwick, Brett A Duguay, Nuno Raimundo, Donna A MacDuff,[...]. Nature 2015
656
9

Tumor-Derived cGAMP Triggers a STING-Mediated Interferon Response in Non-tumor Cells to Activate the NK Cell Response.
Assaf Marcus, Amy J Mao, Monisha Lensink-Vasan, LeeAnn Wang, Russell E Vance, David H Raulet. Immunity 2018
126
8

Activation of STING requires palmitoylation at the Golgi.
Kojiro Mukai, Hiroyasu Konno, Tatsuya Akiba, Takefumi Uemura, Satoshi Waguri, Toshihide Kobayashi, Glen N Barber, Hiroyuki Arai, Tomohiko Taguchi. Nat Commun 2016
161
8

Structural basis for sequestration and autoinhibition of cGAS by chromatin.
Sebastian Michalski, Carina C de Oliveira Mann, Che A Stafford, Gregor Witte, Joseph Bartho, Katja Lammens, Veit Hornung, Karl-Peter Hopfner. Nature 2020
43
18



cGAS in action: Expanding roles in immunity and inflammation.
Andrea Ablasser, Zhijian J Chen. Science 2019
195
8


Co-cited is the co-citation frequency, indicating how many articles cite the article together with the query article. Similarity is the co-citation as percentage of the times cited of the query article or the article in the search results, whichever is the lowest. These numbers are calculated for the last 100 citations when articles are cited more than 100 times.