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Dissecting the basis for differential substrate specificity of ADAR1 and ADAR2

Author

Listed:
  • Marlon S. Zambrano-Mila

    (Weizmann Institute of Science)

  • Monika Witzenberger

    (Weizmann Institute of Science)

  • Zohar Rosenwasser

    (Bar Ilan University)

  • Anna Uzonyi

    (Weizmann Institute of Science)

  • Ronit Nir

    (Weizmann Institute of Science)

  • Shay Ben-Aroya

    (Bar Ilan University)

  • Erez Y. Levanon

    (Bar Ilan University)

  • Schraga Schwartz

    (Weizmann Institute of Science)

Abstract

Millions of adenosines are deaminated throughout the transcriptome by ADAR1 and/or ADAR2 at varying levels, raising the question of what are the determinants guiding substrate specificity and how these differ between the two enzymes. We monitor how secondary structure modulates ADAR2 vs ADAR1 substrate selectivity, on the basis of systematic probing of thousands of synthetic sequences transfected into cell lines expressing exclusively ADAR1 or ADAR2. Both enzymes induce symmetric, strand-specific editing, yet with distinct offsets with respect to structural disruptions: −26 nt for ADAR2 and −35 nt for ADAR1. We unravel the basis for these differences in offsets through mutants, domain-swaps, and ADAR homologs, and find it to be encoded by the differential RNA binding domain (RBD) architecture. Finally, we demonstrate that this offset-enhanced editing can allow an improved design of ADAR2-recruiting therapeutics, with proof-of-concept experiments demonstrating increased on-target and potentially decreased off-target editing.

Suggested Citation

  • Marlon S. Zambrano-Mila & Monika Witzenberger & Zohar Rosenwasser & Anna Uzonyi & Ronit Nir & Shay Ben-Aroya & Erez Y. Levanon & Schraga Schwartz, 2023. "Dissecting the basis for differential substrate specificity of ADAR1 and ADAR2," Nature Communications, Nature, vol. 14(1), pages 1-14, December.
  • Handle: RePEc:nat:natcom:v:14:y:2023:i:1:d:10.1038_s41467-023-43633-0
    DOI: 10.1038/s41467-023-43633-0
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    1. Colleen M. Burns & Hsin Chu & Susan M. Rueter & Linda K. Hutchinson & Hervé Canton & Elaine Sanders-Bush & Ronald B. Emeson, 1997. "Regulation of serotonin-2C receptor G-protein coupling by RNA editing," Nature, Nature, vol. 387(6630), pages 303-308, May.
    2. Orshay Gabay & Yoav Shoshan & Eli Kopel & Udi Ben-Zvi & Tomer D. Mann & Noam Bressler & Roni Cohen‐Fultheim & Amos A. Schaffer & Shalom Hillel Roth & Ziv Tzur & Erez Y. Levanon & Eli Eisenberg, 2022. "Landscape of adenosine-to-inosine RNA recoding across human tissues," Nature Communications, Nature, vol. 13(1), pages 1-17, December.
    3. Nicholas W. Hubbard & Joshua M. Ames & Megan Maurano & Lan H. Chu & Kim Y. Somfleth & Nandan S. Gokhale & Margo Werner & Jessica M. Snyder & Katrina Lichauco & Ram Savan & Daniel B. Stetson & Andrew O, 2022. "ADAR1 mutation causes ZBP1-dependent immunopathology," Nature, Nature, vol. 607(7920), pages 769-775, July.
    4. Huipeng Jiao & Laurens Wachsmuth & Simone Wolf & Juliane Lohmann & Masahiro Nagata & Göksu Gökberk Kaya & Nikos Oikonomou & Vangelis Kondylis & Manuel Rogg & Martin Diebold & Simon E. Tröder & Branko , 2022. "ADAR1 averts fatal type I interferon induction by ZBP1," Nature, Nature, vol. 607(7920), pages 776-783, July.
    5. Meng How Tan & Qin Li & Raghuvaran Shanmugam & Robert Piskol & Jennefer Kohler & Amy N. Young & Kaiwen Ivy Liu & Rui Zhang & Gokul Ramaswami & Kentaro Ariyoshi & Ankita Gupte & Liam P. Keegan & Cyril , 2017. "Dynamic landscape and regulation of RNA editing in mammals," Nature, Nature, vol. 550(7675), pages 249-254, October.
    6. Julie M. Eggington & Tom Greene & Brenda L. Bass, 2011. "Predicting sites of ADAR editing in double-stranded RNA," Nature Communications, Nature, vol. 2(1), pages 1-9, September.
    7. Richard Reuver & Simon Verdonck & Evelien Dierick & Josephine Nemegeer & Eline Hessmann & Sadeem Ahmad & Maude Jans & Gillian Blancke & Filip Nieuwerburgh & Alexander Botzki & Lars Vereecke & Geert Lo, 2022. "ADAR1 prevents autoinflammation by suppressing spontaneous ZBP1 activation," Nature, Nature, vol. 607(7920), pages 784-789, July.
    8. Leila E. Rieder & Cynthia J. Staber & Barry Hoopengardner & Robert A. Reenan, 2013. "Tertiary structural elements determine the extent and specificity of messenger RNA editing," Nature Communications, Nature, vol. 4(1), pages 1-11, October.
    9. Jeffrey J. Ishizuka & Robert T. Manguso & Collins K. Cheruiyot & Kevin Bi & Arpit Panda & Arvin Iracheta-Vellve & Brian C. Miller & Peter P. Du & Kathleen B. Yates & Juan Dubrot & Ilana Buchumenski & , 2019. "Loss of ADAR1 in tumours overcomes resistance to immune checkpoint blockade," Nature, Nature, vol. 565(7737), pages 43-48, January.
    10. Hagit T. Porath & Shai Carmi & Erez Y. Levanon, 2014. "A genome-wide map of hyper-edited RNA reveals numerous new sites," Nature Communications, Nature, vol. 5(1), pages 1-10, December.
    11. Robert A. Reenan, 2005. "Molecular determinants and guided evolution of species-specific RNA editing," Nature, Nature, vol. 434(7031), pages 409-413, March.
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