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Correction: Corrigendum: Proteogenomic integration reveals therapeutic targets in breast cancer xenografts

Author

Listed:
  • Kuan-lin Huang
  • Shunqiang Li
  • Philipp Mertins
  • Song Cao
  • Harsha P. Gunawardena
  • Kelly V. Ruggles
  • D. R. Mani
  • Karl R. Clauser
  • Maki Tanioka
  • Jerry Usary
  • Shyam M. Kavuri
  • Ling Xie
  • Christopher Yoon
  • Jana W. Qiao
  • John Wrobel
  • Matthew A. Wyczalkowski
  • Petra Erdmann-Gilmore
  • Jacqueline E. Snider
  • Jeremy Hoog
  • Purba Singh
  • Beifang Niu
  • Zhanfang Guo
  • Sam Qiancheng Sun
  • Souzan Sanati
  • Emily Kawaler
  • Xuya Wang
  • Adam Scott
  • Kai Ye
  • Michael D. McLellan
  • Michael C. Wendl
  • Anna Malovannaya
  • Jason M. Held
  • Michael A. Gillette
  • David Fenyö
  • Christopher R. Kinsinger
  • Mehdi Mesri
  • Henry Rodriguez
  • Sherri R. Davies
  • Charles M. Perou
  • Cynthia Ma
  • R. Reid Townsend
  • Xian Chen
  • Steven A. Carr
  • Matthew J. Ellis
  • Li Ding

Abstract

Nature Communications 8: Article number: 14864 (2017)); Published: 28 March 2017; Updated: 25 April 2017 The original version of this Article contained a typographical error in the spelling of the author Beifang Niu, which was incorrectly given as Beifung Niu. This has now been corrected in both thePDF and HTML versions of the Article.

Suggested Citation

  • Kuan-lin Huang & Shunqiang Li & Philipp Mertins & Song Cao & Harsha P. Gunawardena & Kelly V. Ruggles & D. R. Mani & Karl R. Clauser & Maki Tanioka & Jerry Usary & Shyam M. Kavuri & Ling Xie & Christo, 2017. "Correction: Corrigendum: Proteogenomic integration reveals therapeutic targets in breast cancer xenografts," Nature Communications, Nature, vol. 8(1), pages 1-1, April.
  • Handle: RePEc:nat:natcom:v:8:y:2017:i:1:d:10.1038_ncomms15479
    DOI: 10.1038/ncomms15479
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    Cited by:

    1. Karama Asleh & Gian Luca Negri & Sandra E. Spencer Miko & Shane Colborne & Christopher S. Hughes & Xiu Q. Wang & Dongxia Gao & C. Blake Gilks & Stephen K. L. Chia & Torsten O. Nielsen & Gregg B. Morin, 2022. "Proteomic analysis of archival breast cancer clinical specimens identifies biological subtypes with distinct survival outcomes," Nature Communications, Nature, vol. 13(1), pages 1-19, December.
    2. Zaili Luo & Dazhuan Xin & Yunfei Liao & Kalen Berry & Sean Ogurek & Feng Zhang & Liguo Zhang & Chuntao Zhao & Rohit Rao & Xinran Dong & Hao Li & Jianzhong Yu & Yifeng Lin & Guoying Huang & Lingli Xu &, 2023. "Loss of phosphatase CTDNEP1 potentiates aggressive medulloblastoma by triggering MYC amplification and genomic instability," Nature Communications, Nature, vol. 14(1), pages 1-19, December.
    3. Sam Crowl & Ben T. Jordan & Hamza Ahmed & Cynthia X. Ma & Kristen M. Naegle, 2022. "KSTAR: An algorithm to predict patient-specific kinase activities from phosphoproteomic data," Nature Communications, Nature, vol. 13(1), pages 1-16, December.
    4. S. Mouron & M. J. Bueno & A. Lluch & L. Manso & I. Calvo & J. Cortes & J. A. Garcia-Saenz & M. Gil-Gil & N. Martinez-Janez & J. V. Apala & E. Caleiras & Pilar Ximénez-Embún & J. Muñoz & L. Gonzalez-Co, 2022. "Phosphoproteomic analysis of neoadjuvant breast cancer suggests that increased sensitivity to paclitaxel is driven by CDK4 and filamin A," Nature Communications, Nature, vol. 13(1), pages 1-18, December.

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