Chemoproteomic discovery of a human RNA ligase

被引:0
|
作者
Yizhi Yuan
Florian M. Stumpf
Lisa A. Schlor
Olivia P. Schmidt
Philip Saumer
Luisa B. Huber
Matthias Frese
Eva Höllmüller
Martin Scheffner
Florian Stengel
Kay Diederichs
Andreas Marx
机构
[1] University of Konstanz,Department of Chemistry
[2] University of Konstanz,Konstanz Research School Chemical Biology
[3] University of Konstanz,Department of Biology
来源
关键词
D O I
暂无
中图分类号
学科分类号
摘要
RNA ligases are present across all forms of life. While enzymatic RNA ligation between 5′-PO4 and 3′-OH termini is prevalent in viruses, fungi, and plants, such RNA ligases are yet to be identified in vertebrates. Here, using a nucleotide-based chemical probe targeting human AMPylated proteome, we have enriched and identified the hitherto uncharacterised human protein chromosome 12 open reading frame 29 (C12orf29) as a human enzyme promoting RNA ligation between 5′-PO4 and 3′-OH termini. C12orf29 catalyses ATP-dependent RNA ligation via a three-step mechanism, involving tandem auto- and RNA AMPylation. Knock-out of C12ORF29 gene impedes the cellular resilience to oxidative stress featuring concurrent RNA degradation, which suggests a role of C12orf29 in maintaining RNA integrity. These data provide the groundwork for establishing a human RNA repair pathway.
引用
收藏
相关论文
共 50 条
  • [41] Discovery of hundreds of mirtrons in mouse and human small RNA data
    Ladewig, Erik
    Okamura, Katsutomo
    Flynt, Alex S.
    Westholm, Jakub O.
    Lai, Eric C.
    [J]. GENOME RESEARCH, 2012, 22 (09) : 1634 - 1645
  • [42] Scientists elucidate the composition of RNA ligase
    Coaker, Hannah
    [J]. FUTURE MEDICINAL CHEMISTRY, 2014, 6 (11) : 1247 - 1247
  • [43] How an RNA ligase discriminates RNA versus DNA damage
    Nandakumar, J
    Shuman, S
    [J]. MOLECULAR CELL, 2004, 16 (02) : 211 - 221
  • [44] Chemoproteomic discovery of a covalent allosteric inhibitor of WRN helicase (vol 629, pg 435, 2024)
    Baltgalvis, Kristen A.
    Lamb, Kelsey N.
    Symons, Kent T.
    Wu, Chu-Chiao
    Hoffman, Melissa A.
    Snead, Aaron N.
    Song, Xiaodan
    Glaza, Thomas
    Kikuchi, Shota
    Green, Jason C.
    Rogness, Donald C.
    Lam, Betty
    Rodriguez-Aguirre, Maria E.
    Woody, David R.
    Eissler, Christie L.
    Rodiles, Socorro
    Negron, Seth M.
    Bernard, Steffen M.
    Tran, Eileen
    Pollock, Jonathan
    Tabatabaei, Ali
    Contreras, Victor
    Williams, Heather N.
    Pastuszka, Martha K.
    Sigler, John J.
    Pettazzoni, Piergiorgio
    Rudolph, Markus G.
    Classen, Moritz
    Brugger, Doris
    Claiborne, Christopher
    Plancher, Jean-Marc
    Cuartas, Isabel
    Seoane, Joan
    Burgess, Laurence E.
    Abraham, Robert T.
    Weinstein, David S.
    Simon, Gabriel M.
    Patricelli, Matthew P.
    Kinsella, Todd M.
    [J]. NATURE, 2024, : E12 - E12
  • [45] PURIFICATION OF WHEAT-GERM RNA LIGASE .2. MECHANISM OF ACTION OF WHEAT-GERM RNA LIGASE
    PICK, L
    FURNEAUX, H
    HURWITZ, J
    [J]. JOURNAL OF BIOLOGICAL CHEMISTRY, 1986, 261 (15) : 6694 - 6704
  • [46] Temporal Dynamics, Discovery, and Emergence of Human-Transmissible RNA Viruses
    Lu, Lu
    Zhang, Feifei
    Brierley, Liam
    Robertson, Gail
    Chase-Topping, Margo
    Lycett, Samantha
    Woolhouse, Mark
    Leitner, Thomas
    [J]. MOLECULAR BIOLOGY AND EVOLUTION, 2024, 41 (01)
  • [47] Global discovery of human-infective RNA viruses: A modelling analysis
    Zhang, Feifei
    Chase-Topping, Margo
    Guo, Chuan-Guo
    van Bunnik, Bram A. D.
    Brierley, Liam
    Woolhouse, Mark E. J.
    [J]. PLOS PATHOGENS, 2020, 16 (11)
  • [48] REVERSAL OF T4 RNA LIGASE
    KRUG, M
    UHLENBECK, OC
    [J]. BIOCHEMISTRY, 1982, 21 (08) : 1858 - 1864
  • [49] RNA ligase ribozymes with a small catalytic core
    Nomura, Yoko
    Yokobayashi, Yohei
    [J]. SCIENTIFIC REPORTS, 2023, 13 (01)
  • [50] RNA ligase ribozymes with a small catalytic core
    Yoko Nomura
    Yohei Yokobayashi
    [J]. Scientific Reports, 13