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Author Correction: Pro-metastatic collagen lysyl hydroxylase dimer assemblies stabilized by Fe2+-binding

Author

Listed:
  • Hou-Fu Guo

    (The University of Texas MD Anderson Cancer Center)

  • Chi-Lin Tsai

    (The University of Texas MD Anderson Cancer Center)

  • Masahiko Terajima

    (University of North Carolina at Chapel Hill)

  • Xiaochao Tan

    (The University of Texas MD Anderson Cancer Center)

  • Priyam Banerjee

    (The University of Texas MD Anderson Cancer Center)

  • Mitchell D. Miller

    (Rice University)

  • Xin Liu

    (The University of Texas MD Anderson Cancer Center)

  • Jiang Yu

    (The University of Texas MD Anderson Cancer Center)

  • Jovita Byemerwa

    (The University of Texas MD Anderson Cancer Center)

  • Sarah Alvarado

    (Rice University)

  • Tamer S. Kaoud

    (The University of Texas at Austin
    The University of Texas at Austin
    Minia University)

  • Kevin N. Dalby

    (The University of Texas at Austin
    The University of Texas at Austin)

  • Neus Bota-Rabassedas

    (The University of Texas MD Anderson Cancer Center)

  • Yulong Chen

    (The University of Texas MD Anderson Cancer Center)

  • Mitsuo Yamauchi

    (University of North Carolina at Chapel Hill)

  • John A. Tainer

    (The University of Texas MD Anderson Cancer Center)

  • George N. Phillips

    (Rice University)

  • Jonathan M. Kurie

    (The University of Texas MD Anderson Cancer Center)

Abstract

In the originally published version of this Article, financial support was not fully acknowledged. The PDF and HTML versions of the Article have now been corrected to also include support from the National Institutes of Health grant T32GM008280 to Sarah Alvarado.

Suggested Citation

  • Hou-Fu Guo & Chi-Lin Tsai & Masahiko Terajima & Xiaochao Tan & Priyam Banerjee & Mitchell D. Miller & Xin Liu & Jiang Yu & Jovita Byemerwa & Sarah Alvarado & Tamer S. Kaoud & Kevin N. Dalby & Neus Bot, 2018. "Author Correction: Pro-metastatic collagen lysyl hydroxylase dimer assemblies stabilized by Fe2+-binding," Nature Communications, Nature, vol. 9(1), pages 1-1, December.
  • Handle: RePEc:nat:natcom:v:9:y:2018:i:1:d:10.1038_s41467-018-05295-1
    DOI: 10.1038/s41467-018-05295-1
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