<p>Factor H (FH) is a negative regulator of the alternative pathway (AP) of complement however, five human factor H-related (FHR) proteins, can also function ex vivo as positive regulators. We compare bulk <i>FH</i> and <i>FHR</i> mRNA expressions in both the human rheumatoid arthritis (RA) synovium and blood cells from the Pathobiology of Early Arthritis Cohort (PEAC) and the Stratification of biological therapies for Rheumatoid Arthritis by Pathobiology (STRAP) Cohort. FH and FHR proteins were detected using multiplexed immunohistochemistry (MIHC) in synovium. In three pathotypes, in the synovium, no differences were found in the expression of <i>FHR</i> mRNA. In the synovium, a significant negative correlation was observed between <i>FH</i> expression and the disease activity score and X-ray joint space narrowing. In RA patients, there was a significant positive correlation between <i>FHR3</i> mRNA level, anti-cyclic citrullinated peptide (CCP) antibodies and rheumatoid factor (RF). FHR proteins were co-localized in the synovial lining area along with complement C3 while FH was almost undetectable in the synovial lining but abundant in sub-synovial lining areas. We do not know whether <i>FH</i> and <i>FHR</i> proteins are locally generated and deposited in synovium or come from circulation. In sum, due to the absence of FH but the presence of FHRs, the synovial lining might fail to be protected from complement-mediated attack, and FHR3 may play a particularly important pathogenic role.</p>

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Analysis of human factor H-related gene and protein expressed in rheumatoid arthritis synovium identifies a novel mechanism promoting dysregulated complement pathway activation

  • Nirmal K. Banda,
  • Larry W. Moreland,
  • Kevin D. Deane,
  • Dmitri Simberg,
  • Robert I. Scheinman,
  • Rachel M. Frank,
  • Jennifer A. Seifert,
  • Jennifer Anolik,
  • Darren Tabechian,
  • Ralf Thiele,
  • Jennifer Hossler,
  • Brendan Boyce,
  • Nida Meednu,
  • Javier Rangel-Moreno,
  • Christopher Ritchlin,
  • Vivian Bykerk,
  • Laura Donlin,
  • Susan Goodman,
  • Ed DiCarlo,
  • Dana Orange,
  • John Carrino,
  • Nwawka Endo Yoshimi,
  • Rahul Satija,
  • Lionel Ivashkiv,
  • Alessandra Pernis,
  • Robert Darnell,
  • Mark Figgie,
  • Michael McNamara. Mandy J. McGeachy,
  • Jay Kolls,
  • Aaron Wise,
  • Andrew Cordle, Peter Gregersen Diane Horowitz,
  • Andrew D. Filer,
  • Jason Turner Holly Adams,
  • Stephen Kelly Rebecca Hands,
  • Kevin Wei,
  • Deepak Rao,
  • Fumitaka Mizoguchi,
  • V. Michael Holers,
  • Kevin D. Deane,
  • Jennifer A. Seifert,
  • Nirmal K. Banda,
  • Larry W. Moreland,
  • Alexander Merkle,
  • Colin Strickland,
  • Gary S. Firestein,
  • David Boyle,
  • Michael H. Weisman,
  • Ami Ben-Artzi,
  • Lindsy Forbess,
  • Ellen Gravallese,
  • Karen Salomon-Escoto,
  • Harris Perlman,
  • Arthur Mandelin Emily Bacalao,
  • Deborah Parks,
  • John Atkinson,
  • Joan Bathon,
  • Eric Matteson,
  • Rachel Lau,
  • Costantino Pitzalis,
  • Myles J. Lewis,
  • V. Michael Holers

摘要

Factor H (FH) is a negative regulator of the alternative pathway (AP) of complement however, five human factor H-related (FHR) proteins, can also function ex vivo as positive regulators. We compare bulk FH and FHR mRNA expressions in both the human rheumatoid arthritis (RA) synovium and blood cells from the Pathobiology of Early Arthritis Cohort (PEAC) and the Stratification of biological therapies for Rheumatoid Arthritis by Pathobiology (STRAP) Cohort. FH and FHR proteins were detected using multiplexed immunohistochemistry (MIHC) in synovium. In three pathotypes, in the synovium, no differences were found in the expression of FHR mRNA. In the synovium, a significant negative correlation was observed between FH expression and the disease activity score and X-ray joint space narrowing. In RA patients, there was a significant positive correlation between FHR3 mRNA level, anti-cyclic citrullinated peptide (CCP) antibodies and rheumatoid factor (RF). FHR proteins were co-localized in the synovial lining area along with complement C3 while FH was almost undetectable in the synovial lining but abundant in sub-synovial lining areas. We do not know whether FH and FHR proteins are locally generated and deposited in synovium or come from circulation. In sum, due to the absence of FH but the presence of FHRs, the synovial lining might fail to be protected from complement-mediated attack, and FHR3 may play a particularly important pathogenic role.