CD147/Basigin: From Integrative Molecular Hub to Translational Therapeutic Target

Xiang-Min Yang1,2, Huijie Bian1,2, Zhi-Nan Chen1,2

  • 1Department of Cell Biology, National Translational Science Center for Molecular Medicine, The Fourth Military Medical University, Xi'an, Shaanxi, 710032, China.

Insights

CD147 (Basigin/EMMPRIN) is a key regulator in cancer and disease. This review details its structure, function, and potential as a therapeutic target.

Area of Science:

  • Molecular Biology
  • Immunology
  • Oncology

Background:

  • CD147 (Basigin/EMMPRIN), an immunoglobulin superfamily member, regulates physiological processes like spermatogenesis and neural function.
  • Pathological CD147 overexpression drives tumor progression, immune evasion, and metabolic reprogramming, serving as a prognostic biomarker.
  • CD147 acts as a pathogen entry receptor and is implicated in cardiovascular, autoimmune, and neurodegenerative diseases.

Purpose of the Study:

  • To review the molecular structure, isoforms, post-translational modifications, and signaling pathways of CD147.
  • To highlight CD147's diverse roles in cancer, infection, autoimmunity, and cardiovascular disease.
  • To discuss challenges and propose strategies for targeting CD147 as a precision biomarker and therapeutic agent.

Main Methods:

  • Literature review synthesizing current research on CD147.
  • Analysis of CD147's interactions with key molecules like MCTs, integrins, and CyPA.
  • Examination of CD147's role in various pathological conditions and disease models.

Main Results:

  • CD147 functions as an "Energy-Structure Coupler," linking metabolic flux with morphogenetic plasticity.
  • It orchestrates critical cellular processes and contributes to disease pathogenesis.
  • CD147's multifaceted roles underscore its significance across multiple scientific domains.

Conclusions:

  • CD147 is a pivotal regulator with diverse functions in health and disease.
  • Understanding CD147's structure and signaling is crucial for developing targeted therapies.
  • Addressing the "specificity paradox" is key to exploiting CD147 effectively as a biomarker and therapeutic target.

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