Essential role of the cryptic epitope SLAYGLR within osteopontin in a murine model of rheumatoid arthritis.

نویسندگان

  • Nobuchika Yamamoto
  • Fumihiko Sakai
  • Shigeyuki Kon
  • Junko Morimoto
  • Chiemi Kimura
  • Harumi Yamazaki
  • Ikuko Okazaki
  • Nobuo Seki
  • Takashi Fujii
  • Toshimitsu Uede
چکیده

It has been shown that osteopontin (OPN) plays a pivotal role in the pathogenesis of rheumatoid arthritis (RA). However, the molecular mechanism of OPN action is yet to be elucidated. Splenic monocytes obtained from arthritic mice exhibited a significant capacity for cell migration toward thrombin-cleaved OPN but not toward full-length OPN. Migratory monocytes expressed alpha9 and alpha4 integrins. Since cleavage of OPN by thrombin exposes the cryptic epitope recognized by alpha9 and alpha4 integrins, we investigated the role of the cryptic epitope SLAYGLR in a murine RA model by using a specific antibody (M5) reacting to SLAYGLR sequence. The M5 antibody could abrogate monocyte migration toward the thrombin-cleaved form of OPN. Importantly, M5 antibody could inhibit the proliferation of synovium, bone erosion, and inflammatory cell infiltration in arthritic joints. Thus, we demonstrated that a cryptic epitope, the SLAYGLR sequence of murine OPN, is critically involved in the pathogenesis of a murine model of RA.

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Osteopontin: a bridge between bone and the immune system.

The molecular mechanisms underlying the putative role of osteopontin in the chronic inflammatory disease rheumatoid arthritis are unclear. A study in a murine model of arthritis now demonstrates that a specific antibody directed against the exposed osteopontin epitope SLAYGLR is capable of preventing inflammatory cell infiltration in arthritic joints.

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عنوان ژورنال:
  • The Journal of clinical investigation

دوره 112 2  شماره 

صفحات  -

تاریخ انتشار 2003