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BAFF-neutralizing interaction of belimumab related to its therapeutic efficacy for treating systemic lupus erythematosus

Author

Listed:
  • Woori Shin

    (Konkuk University)

  • Hyun Tae Lee

    (Konkuk University)

  • Heejin Lim

    (Konkuk University)

  • Sang Hyung Lee

    (Konkuk University)

  • Ji Young Son

    (Konkuk University)

  • Jee Un Lee

    (Konkuk University)

  • Ki-Young Yoo

    (Konkuk University)

  • Seong Eon Ryu

    (Hanyang University)

  • Jaejun Rhie

    (Konkuk University)

  • Ju Yeon Lee

    (Konkuk University)

  • Yong-Seok Heo

    (Konkuk University)

Abstract

BAFF, a member of the TNF superfamily, has been recognized as a good target for autoimmune diseases. Belimumab, an anti-BAFF monoclonal antibody, was approved by the FDA for use in treating systemic lupus erythematosus. However, the molecular basis of BAFF neutralization by belimumab remains unclear. Here our crystal structure of the BAFF–belimumab Fab complex shows the precise epitope and the BAFF-neutralizing mechanism of belimumab, and demonstrates that the therapeutic activity of belimumab involves not only antagonizing the BAFF–receptor interaction, but also disrupting the formation of the more active BAFF 60-mer to favor the induction of the less active BAFF trimer through interaction with the flap region of BAFF. In addition, the belimumab HCDR3 loop mimics the DxL(V/L) motif of BAFF receptors, thereby binding to BAFF in a similar manner as endogenous BAFF receptors. Our data thus provides insights for the design of new drugs targeting BAFF for the treatment of autoimmune diseases.

Suggested Citation

  • Woori Shin & Hyun Tae Lee & Heejin Lim & Sang Hyung Lee & Ji Young Son & Jee Un Lee & Ki-Young Yoo & Seong Eon Ryu & Jaejun Rhie & Ju Yeon Lee & Yong-Seok Heo, 2018. "BAFF-neutralizing interaction of belimumab related to its therapeutic efficacy for treating systemic lupus erythematosus," Nature Communications, Nature, vol. 9(1), pages 1-11, December.
  • Handle: RePEc:nat:natcom:v:9:y:2018:i:1:d:10.1038_s41467-018-03620-2
    DOI: 10.1038/s41467-018-03620-2
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