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Distinguishing preferences of human APOBEC3A and APOBEC3B for cytosines in hairpin loops, and reflection of these preferences in APOBEC-signature cancer genome mutations

Author

Listed:
  • Yasha Butt

    (Wayne State University)

  • Ramin Sakhtemani

    (Wayne State University
    Massachusetts General Hospital Cancer Center
    Broad Institute of MIT and Harvard)

  • Rukshana Mohamad-Ramshan

    (Wayne State University)

  • Michael S. Lawrence

    (Massachusetts General Hospital Cancer Center
    Broad Institute of MIT and Harvard)

  • Ashok S. Bhagwat

    (Wayne State University
    Wayne State University School of Medicine)

Abstract

The APOBEC3 enzymes convert cytosines in single-stranded DNA to uracils to protect against viruses and retrotransposons but can contribute to mutations that diversify tumors. To understand the mechanism of mutagenesis, we map the uracils resulting from expression of APOBEC3B or its catalytic carboxy-terminal domain (CTD) in Escherichia coli. Like APOBEC3A, the uracilomes of A3B and A3B-CTD show a preference to deaminate cytosines near transcription start sites and the lagging-strand replication templates and in hairpin loops. Both biochemical activities of the enzymes and genomic uracil distribution show that A3A prefers 3 nt loops the best, while A3B prefers 4 nt loops. Reanalysis of hairpin loop mutations in human tumors finds intrinsic characteristics of both the enzymes, with a much stronger contribution from A3A. We apply Hairpin Signatures 1 and 2, which define A3A and A3B preferences respectively and are orthogonal to published methods, to evaluate their contribution to human tumor mutations.

Suggested Citation

  • Yasha Butt & Ramin Sakhtemani & Rukshana Mohamad-Ramshan & Michael S. Lawrence & Ashok S. Bhagwat, 2024. "Distinguishing preferences of human APOBEC3A and APOBEC3B for cytosines in hairpin loops, and reflection of these preferences in APOBEC-signature cancer genome mutations," Nature Communications, Nature, vol. 15(1), pages 1-13, December.
  • Handle: RePEc:nat:natcom:v:15:y:2024:i:1:d:10.1038_s41467-024-46231-w
    DOI: 10.1038/s41467-024-46231-w
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    1. Adam Langenbucher & Danae Bowen & Ramin Sakhtemani & Elodie Bournique & Jillian F. Wise & Lee Zou & Ashok S. Bhagwat & Rémi Buisson & Michael S. Lawrence, 2021. "An extended APOBEC3A mutation signature in cancer," Nature Communications, Nature, vol. 12(1), pages 1-11, December.
    2. Michael Lawrence & Wolfgang Huber & Hervé Pagès & Patrick Aboyoun & Marc Carlson & Robert Gentleman & Martin T Morgan & Vincent J Carey, 2013. "Software for Computing and Annotating Genomic Ranges," PLOS Computational Biology, Public Library of Science, vol. 9(8), pages 1-10, August.
    3. Michael B. Burns & Lela Lackey & Michael A. Carpenter & Anurag Rathore & Allison M. Land & Brandon Leonard & Eric W. Refsland & Delshanee Kotandeniya & Natalia Tretyakova & Jason B. Nikas & Douglas Ye, 2013. "APOBEC3B is an enzymatic source of mutation in breast cancer," Nature, Nature, vol. 494(7437), pages 366-370, February.
    4. Shraddha Sharma & Santosh K. Patnaik & R. Thomas Taggart & Eric D. Kannisto & Sally M. Enriquez & Paul Gollnick & Bora E. Baysal, 2015. "APOBEC3A cytidine deaminase induces RNA editing in monocytes and macrophages," Nature Communications, Nature, vol. 6(1), pages 1-15, November.
    5. Ludmil B. Alexandrov & Serena Nik-Zainal & David C. Wedge & Samuel A. J. R. Aparicio & Sam Behjati & Andrew V. Biankin & Graham R. Bignell & Niccolò Bolli & Ake Borg & Anne-Lise Børresen-Dale & Sandri, 2013. "Correction: Corrigendum: Signatures of mutational processes in human cancer," Nature, Nature, vol. 502(7470), pages 258-258, October.
    6. Ludmil B. Alexandrov & Serena Nik-Zainal & David C. Wedge & Samuel A. J. R. Aparicio & Sam Behjati & Andrew V. Biankin & Graham R. Bignell & Niccolò Bolli & Ake Borg & Anne-Lise Børresen-Dale & Sandri, 2013. "Signatures of mutational processes in human cancer," Nature, Nature, vol. 500(7463), pages 415-421, August.
    7. Hideko Isozaki & Ramin Sakhtemani & Ammal Abbasi & Naveed Nikpour & Marcello Stanzione & Sunwoo Oh & Adam Langenbucher & Susanna Monroe & Wenjia Su & Heidie Frisco Cabanos & Faria M. Siddiqui & Nicole, 2023. "Therapy-induced APOBEC3A drives evolution of persistent cancer cells," Nature, Nature, vol. 620(7973), pages 393-401, August.
    8. Michael B. Burns & Lela Lackey & Michael A. Carpenter & Anurag Rathore & Allison M. Land & Brandon Leonard & Eric W. Refsland & Delshanee Kotandeniya & Natalia Tretyakova & Jason B. Nikas & Douglas Ye, 2013. "Correction: Corrigendum: APOBEC3B is an enzymatic source of mutation in breast cancer," Nature, Nature, vol. 502(7472), pages 580-580, October.
    9. Ludmil B. Alexandrov & Jaegil Kim & Nicholas J. Haradhvala & Mi Ni Huang & Alvin Wei Tian Ng & Yang Wu & Arnoud Boot & Kyle R. Covington & Dmitry A. Gordenin & Erik N. Bergstrom & S. M. Ashiqul Islam , 2020. "The repertoire of mutational signatures in human cancer," Nature, Nature, vol. 578(7793), pages 94-101, February.
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