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Structure and regulation of ZCCHC4 in m6A-methylation of 28S rRNA

Author

Listed:
  • Wendan Ren

    (University of California)

  • Jiuwei Lu

    (University of California)

  • Mengjiang Huang

    (University of California)

  • Linfeng Gao

    (University of California)

  • Dongxu Li

    (University of North Carolina at Chapel Hill School of Medicine
    University of North Carolina at Chapel Hill)

  • Gang Greg Wang

    (University of North Carolina at Chapel Hill School of Medicine
    University of North Carolina at Chapel Hill)

  • Jikui Song

    (University of California
    University of California)

Abstract

N6-methyladenosine (m6A) modification provides an important epitranscriptomic mechanism that critically regulates RNA metabolism and function. However, how m6A writers attain substrate specificities remains unclear. We report the 3.1 Å-resolution crystal structure of human CCHC zinc finger-containing protein ZCCHC4, a 28S rRNA-specific m6A methyltransferase, bound to S-adenosyl-L-homocysteine. The methyltransferase (MTase) domain of ZCCHC4 is packed against N-terminal GRF-type and C2H2 zinc finger domains and a C-terminal CCHC domain, creating an integrated RNA-binding surface. Strikingly, the MTase domain adopts an autoinhibitory conformation, with a self-occluded catalytic site and a fully-closed cofactor pocket. Mutational and enzymatic analyses further substantiate the molecular basis for ZCCHC4-RNA recognition and a role of the stem-loop structure within substrate in governing the substrate specificity. Overall, this study unveils unique structural and enzymatic characteristics of ZCCHC4, distinctive from what was seen with the METTL family of m6A writers, providing the mechanistic basis for ZCCHC4 modulation of m6A RNA methylation.

Suggested Citation

  • Wendan Ren & Jiuwei Lu & Mengjiang Huang & Linfeng Gao & Dongxu Li & Gang Greg Wang & Jikui Song, 2019. "Structure and regulation of ZCCHC4 in m6A-methylation of 28S rRNA," Nature Communications, Nature, vol. 10(1), pages 1-9, December.
  • Handle: RePEc:nat:natcom:v:10:y:2019:i:1:d:10.1038_s41467-019-12923-x
    DOI: 10.1038/s41467-019-12923-x
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    Cited by:

    1. Qiang Luo & Jiezhen Mo & Hao Chen & Zetao Hu & Baihui Wang & Jiabing Wu & Ziyu Liang & Wenhao Xie & Kangxi Du & Maolin Peng & Yingping Li & Tianyang Li & Yangyi Zhang & Xiaoyan Shi & Wen-Hui Shen & Ya, 2022. "Structural insights into molecular mechanism for N6-adenosine methylation by MT-A70 family methyltransferase METTL4," Nature Communications, Nature, vol. 13(1), pages 1-11, December.

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