朱玲新

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Personal Information

Supervisor of Master's Candidates

Supervisor of Doctorate Candidates

  • E-Mail:

  • School/Department:

    口腔医学院
  • Administrative Position:

    科研办公室主任
  • Education Level:

    With Certificate of Graduation for Doctorate Study
  • Business Address:

    武汉大学口腔医学院
  • Gender:

    Male
  • Contact Information:

    lingxin.zhu@whu.edu.cn
  • Professional Title:

    Chief physician
  • Status:

    Employed
  • Academic Titles:

    中华口腔医学会口腔医学教育专委会常务委员、中国病理生理学会内分泌与代谢专委会委员、中国医院协会模拟医学专委会委员
  • Other Post:

    美国密西根大学客座副教授
  • Alma Mater:

    武汉大学
  • Discipline:

    Clinical Stomatology

Other Contact Information

  • ZipCode:

  • PostalAddress:

  • Email:

Paper Publications

Current position: Home > Scientific Research > Paper Publications

A Zeb1/mitochondrial creatine kinase metabolic axis controls osteoclast activation and skeletal remodeling.

  • Date:2024-10-26  Hits:Times
  • DOI number:  

    10.15252/embj.2022111148
  • Journal:  

    EMBO J
  • Abstract:  

    Osteoclasts are bone-resorbing polykaryons responsible for skeletal remodeling during health and disease. Coincident with their differentiation from myeloid precursors, osteoclasts undergo extensive transcriptional and metabolic reprogramming in order to acquire the cellular machinery necessary to demineralize bone and digest its interwoven extracellular matrix. While attempting to identify new regulatory molecules critical to bone resorption, we discovered that murine and human osteoclast differentiation is accompanied by the expression of Zeb1, a zinc-finger transcriptional repressor whose role in normal development is most frequently linked to the control of epithelial-mesenchymal programs. However, following targeting, we find that Zeb1 serves as an unexpected regulator of osteoclast energy metabolism. In vivo, Zeb1-null osteoclasts assume a hyperactivated state, markedly decreasing bone density due to excessive resorptive activity. Mechanistically, Zeb1 acts in a rheostat-like fashion to modulate murine and human osteoclast activity by transcriptionally repressing an ATP-buffering enzyme, mitochondrial creatine kinase 1 (MtCK1), thereby controlling the phosphocreatine energy shuttle and mitochondrial respiration. Together, these studies identify a novel Zeb1/MtCK1 axis that exerts metabolic control over bone resorption in vitro and in vivo.
  • Co-author:  

    Tang Y, Li XY, Kerk SA, Lyssiotis CA, Feng W, Sun X, Hespe GE, Wang Z, Stemmler MP, Brabletz S, Brabletz T, Keller ET, Ma J, Cho JS, Yang J
  • Indexed by:  

    Journal paper
  • Correspondence Author:  

    Weiss SJ
  • Page Number:  

    e111148
  • Translation or Not:  

    no
  • Date of Publication:  

    2023-03-12
  • Included Journals:  

    SCI