RNA sensing via the RIG-I-like receptor LGP2 is essential for the induction of a type I IFN response in ADAR1 deficiency

被引:33
|
作者
Stok, Jorn E. [1 ]
Oosenbrug, Timo [1 ]
ter Haar, Laurens R. [1 ]
Gravekamp, Dennis [1 ]
Bromley, Christian P. [2 ]
Zelenay, Santiago [2 ]
Reis e Sousa, Caetano [3 ]
van der Veen, Annemarthe G. [1 ]
机构
[1] Leiden Univ, Dept Immunol, Med Ctr, Leiden, Netherlands
[2] Univ Manchester, Canc Res UK Manchester Inst, Alderley Pk, England
[3] Francis Crick Inst, Immunobiol Lab, London, England
来源
EMBO JOURNAL | 2022年 / 41卷 / 06期
基金
英国医学研究理事会; 欧洲研究理事会; 英国惠康基金;
关键词
autoinflammation; innate immunity; RIG-I-like receptor family; RNA editing; type I interferon; INNATE IMMUNE SENSOR; ADENOSINE-DEAMINASE; INTERFERON; MUTATIONS; DSRNA; RECOGNITION; TARGET; SELF; IDENTIFICATION; BINDING;
D O I
10.15252/embj.2021109760
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
RNA editing by the adenosine deaminase ADAR1 prevents innate immune responses to endogenous RNAs. In ADAR1-deficient cells, unedited self RNAs form base-paired structures that resemble viral RNAs and inadvertently activate the cytosolic RIG-I-like receptor (RLR) MDA5, leading to an antiviral type I interferon (IFN) response. Mutations in ADAR1 cause Aicardi-Goutieres Syndrome (AGS), an autoinflammatory syndrome characterized by chronic type I IFN production. Conversely, ADAR1 loss and the consequent type I IFN production restricts tumor growth and potentiates the activity of some chemotherapeutics. Here, we show that another RIG-I-like receptor, LGP2, also has an essential role in the induction of a type I IFN response in ADAR1-deficient human cells. This requires the canonical function of LGP2 as an RNA sensor and facilitator of MDA5-dependent signaling. Furthermore, we show that the sensitivity of tumor cells to ADAR1 loss requires LGP2 expression. Finally, type I IFN induction in tumor cells depleted of ADAR1 and treated with some chemotherapeutics fully depends on LGP2 expression. These findings highlight a central role for LGP2 in self RNA sensing with important clinical implications.
引用
收藏
页数:18
相关论文
共 48 条
  • [1] Identifying the interactome of the RIG-I-like Receptor LGP2
    Thompson, Ahna B.
    Stone, Amy E. L.
    Gale, Michael J.
    JOURNAL OF IMMUNOLOGY, 2016, 196
  • [2] Single molecule analysis of the RIG-I-like receptor, LGP2
    Bruns, A.
    Pollpeter, D.
    Hadizadeh, N.
    Myong, S.
    Marko, J.
    Horvath, C.
    CYTOKINE, 2012, 59 (03) : 566 - 566
  • [3] The RIG-I-like Receptor LGP2 Recognizes the Termini of Double-stranded RNA
    Li, Xiaojun
    Ranjith-Kumar, C. T.
    Brooks, Monica T.
    Dharmaiah, S.
    Herr, Andrew B.
    Kao, Cheng
    Li, Pingwei
    JOURNAL OF BIOLOGICAL CHEMISTRY, 2009, 284 (20) : 13881 - 13891
  • [4] RIG-I-Like Receptor LGP2 Is Required for Tumor Control by Radiotherapy
    Zheng, Wenxin
    Ranoa, Diana Rose E.
    Huang, Xiaona
    Hou, Yuzhu
    Yang, Kaiting
    Poli, Elizabeth C.
    Beckett, Michael A.
    Fu, Yang-Xin
    Weichselbaum, Ralph R.
    CANCER RESEARCH, 2020, 80 (24) : 5633 - 5641
  • [5] RIG-I-like receptor LGP2 protects tumor cells from ionizing radiation
    Widau, Ryan C.
    Parekh, Akash D.
    Ranck, Mark C.
    Golden, Daniel W.
    Kumar, Kiran A.
    Sood, Ravi F.
    Pitroda, Sean P.
    Liao, Zhengkai
    Huang, Xiaona
    Darga, Thomas E.
    Xu, David
    Huang, Lei
    Andrade, Jorge
    Roizman, Bernard
    Weichselbaum, Ralph R.
    Khodarev, Nikolai N.
    PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2014, 111 (04) : E484 - E491
  • [6] RIG-I-Like Receptors Evolved Adaptively in Mammals, with Parallel Evolution at LGP2 and RIG-I
    Cagliani, Rachele
    Forni, Diego
    Tresoldi, Claudia
    Pozzoli, Uberto
    Filippi, Giulia
    Rainone, Veronica
    De Gioia, Luca
    Clerici, Mario
    Sironi, Manuela
    JOURNAL OF MOLECULAR BIOLOGY, 2014, 426 (06) : 1351 - 1365
  • [7] The RIG-I-like Receptor LGP2 Controls CD8+ T Cell Survival and Fitness
    Suthar, Mehul S.
    Ramos, Hilario J.
    Brassil, Margaret M.
    Netland, Jason
    Chappell, Craig P.
    Blahnik, Gabriele
    McMillan, Aimee
    Diamond, Michael S.
    Clark, Edward A.
    Bevan, Michael J.
    Gale, Michael, Jr.
    IMMUNITY, 2012, 37 (02) : 235 - 248
  • [8] The RIG-I-like receptor LGP2 inhibits Dicer-dependent processing of long double-stranded RNA and blocks RNA interference in mammalian cells
    van der Veen, Annemarthe G.
    Maillard, Pierre V.
    Schmidt, Jan Marten
    Lee, Sonia A.
    Deddouche-Grass, Safia
    Borg, Annabel
    Kjaer, Svend
    Snijders, Ambrosius P.
    Reis e Sousa, Caetano
    EMBO JOURNAL, 2018, 37 (04):
  • [9] Efficient Dicer processing of virus-derived double-stranded RNAs and its modulation by RIG-I-like receptor LGP2
    Zhang, Yuqiang
    Xu, Yan
    Dai, Yunpeng
    Li, Zhe
    Wang, Jiaxing
    Ye, Zhi
    Ren, Yanxin
    Wang, Hua
    Li, Wan-xiang
    Lu, Jinfeng
    Ding, Shou-Wei
    Li, Yang
    PLOS PATHOGENS, 2021, 17 (08)
  • [10] Expression and Functional Characterization of the RIG-I-Like Receptors MDA5 and LGP2 in Rainbow Trout (Oncorhynchus mykiss)
    Chang, Mingxian
    Collet, Bertrand
    Nie, Pin
    Lester, Katherine
    Campbell, Scott
    Secombes, Christopher J.
    Zou, Jun
    JOURNAL OF VIROLOGY, 2011, 85 (16) : 8403 - 8412