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Myeloid Kruppel-Like Factor 2 Critically Regulates K/BxN Serum-Induced Arthritis.


ABSTRACT: Rheumatoid arthritis (RA) is an immune-mediated inflammatory disease, and Krüppel-like factor 2 (KLF2) regulates immune cell activation and function. Herein, we show that in our experiments 50% global deficiency of KLF2 significantly elevated arthritic inflammation and pathogenesis, osteoclastic differentiation, matrix metalloproteinases (MMPs), and inflammatory cytokines in K/BxN serum-induced mice. The severities of RA pathogenesis, as well as the causative and resultant cellular and molecular factors, were further confirmed in monocyte-specific KLF2 deficient mice. In addition, induction of RA resulted in a decreased level of KLF2 in monocytes isolated from both mice and humans along with higher migration of activated monocytes to the RA sites in humans. Mechanistically, overexpression of KLF2 decreased the level of MMP9; conversely, knockdown of KLF2 increased MMP9 in monocytes along with enrichment of active histone marks and histone acetyltransferases on the MMP9 promoter region. These findings define the critical regulatory role of myeloid KLF2 in RA pathogenesis.

SUBMITTER: Das M 

PROVIDER: S-EPMC6721677 | biostudies-other | 2019 Aug

REPOSITORIES: biostudies-other

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Myeloid Krüppel-Like Factor 2 Critically Regulates K/BxN Serum-Induced Arthritis.

Das Manjusri M   Deb Moonmoon M   Laha Dipranjan D   Joseph Matthew M   Kanji Suman S   Aggarwal Reeva R   Iwenofu O Hans OH   Pompili Vincent J VJ   Jarjour Wael W   Das Hiranmoy H  

Cells 20190816 8


Rheumatoid arthritis (RA) is an immune-mediated inflammatory disease, and Krüppel-like factor 2 (KLF2) regulates immune cell activation and function. Herein, we show that in our experiments 50% global deficiency of KLF2 significantly elevated arthritic inflammation and pathogenesis, osteoclastic differentiation, matrix metalloproteinases (MMPs), and inflammatory cytokines in K/BxN serum-induced mice. The severities of RA pathogenesis, as well as the causative and resultant cellular and molecular  ...[more]

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