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Author Correction: Maternal vitamin C regulates reprogramming of DNA methylation and germline development

Author

Listed:
  • Stephanie P. DiTroia

    (University of California, San Francisco
    University of California, San Francisco
    Broad Institute of MIT and Harvard)

  • Michelle Percharde

    (University of California, San Francisco
    University of California, San Francisco
    MRC London Institute of Medical Sciences (LMS)
    Imperial College London)

  • Marie-Justine Guerquin

    (Université Paris-Sud, Université Paris-Saclay, Laboratory of Development of the Gonads)

  • Estelle Wall

    (University of California, San Francisco
    University of California, San Francisco)

  • Evelyne Collignon

    (University of Toronto)

  • Kevin T. Ebata

    (University of California, San Francisco
    University of California, San Francisco)

  • Kathryn Mesh

    (University of California, San Francisco
    University of California, San Francisco)

  • Swetha Mahesula

    (University of Texas Southwestern Medical Center)

  • Michalis Agathocleous

    (University of Texas Southwestern Medical Center)

  • Diana J. Laird

    (University of California, San Francisco
    University of California, San Francisco)

  • Gabriel Livera

    (Université Paris-Sud, Université Paris-Saclay, Laboratory of Development of the Gonads)

  • Miguel Ramalho-Santos

    (University of California, San Francisco
    University of California, San Francisco
    University of Toronto)

Abstract

An Amendment to this paper has been published and can be accessed via a link at the top of the paper.

Suggested Citation

  • Stephanie P. DiTroia & Michelle Percharde & Marie-Justine Guerquin & Estelle Wall & Evelyne Collignon & Kevin T. Ebata & Kathryn Mesh & Swetha Mahesula & Michalis Agathocleous & Diana J. Laird & Gabri, 2019. "Author Correction: Maternal vitamin C regulates reprogramming of DNA methylation and germline development," Nature, Nature, vol. 576(7785), pages 1-1, December.
  • Handle: RePEc:nat:nature:v:576:y:2019:i:7785:d:10.1038_s41586-019-1699-9
    DOI: 10.1038/s41586-019-1699-9
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    Cited by:

    1. Roman Thaler & Farzaneh Khani & Ines Sturmlechner & Sharareh S. Dehghani & Janet M. Denbeigh & Xianhu Zhou & Oksana Pichurin & Amel Dudakovic & Sofia S. Jerez & Jian Zhong & Jeong-Heon Lee & Ramesh Na, 2022. "Vitamin C epigenetically controls osteogenesis and bone mineralization," Nature Communications, Nature, vol. 13(1), pages 1-18, December.
    2. Wen-Xiang Liu & Hai-Ning Liu & Zhan-Ping Weng & Qi Geng & Yue Zhang & Ya-Feng Li & Wei Shen & Yang Zhou & Teng Zhang, 2023. "Maternal vitamin B1 is a determinant for the fate of primordial follicle formation in offspring," Nature Communications, Nature, vol. 14(1), pages 1-17, December.

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