Recent advances of NFATc1 in rheumatoid arthritis-related bone destruction: mechanisms and potential therapeutic targets

Author:

Zheng Hao,Liu Yuexuan,Deng Yasi,Li Yunzhe,Liu Shiqi,Yang Yong,Qiu Yun,Li Bin,Sheng Wenbing,Liu Jinzhi,Peng Caiyun,Wang WeiORCID,Yu Huanghe

Abstract

AbstractRheumatoid arthritis (RA) is a chronic autoimmune inflammatory disease characterized by inflammation of the synovial tissue and joint bone destruction, often leading to significant disability. The main pathological manifestation of joint deformity in RA patients is bone destruction, which occurs due to the differentiation and proliferation of osteoclasts. The transcription factor nuclear factor-activated T cell 1 (NFATc1) plays a crucial role in this process. The regulation of NFATc1 in osteoclast differentiation is influenced by three main factors. Firstly, NFATc1 is activated through the upstream nuclear factor kappa-B ligand (RANKL)/RANK signaling pathway. Secondly, the Ca2+-related co-stimulatory signaling pathway amplifies NFATc1 activity. Finally, negative regulation of NFATc1 occurs through the action of cytokines such as B-cell Lymphoma 6 (Bcl-6), interferon regulatory factor 8 (IRF8), MAF basic leucine zipper transcription factor B (MafB), and LIM homeobox 2 (Lhx2). These three phases collectively govern NFATc1 transcription and subsequently affect the expression of downstream target genes including TRAF6 and NF-κB. Ultimately, this intricate regulatory network mediates osteoclast differentiation, fusion, and the degradation of both organic and inorganic components of the bone matrix. This review provides a comprehensive summary of recent advances in understanding the mechanism of NFATc1 in the context of RA-related bone destruction and discusses potential therapeutic agents that target NFATc1, with the aim of offering valuable insights for future research in the field of RA. To assess their potential as therapeutic agents for RA, we conducted a drug-like analysis of potential drugs with precise structures.

Funder

National Natural Science Foundation of China

Natural Science Foundation of Hunan Province

Scientific research project of Hunan Provincial Education Department

Changjiang Scholars Program in Ministry Education, People’s Republic of China

Xiaohe Sci-Tech Talents Special Funding under Hunan Provincial Sci-Tech Talents Sponsorship Program

Research Project of Hunan Administration of Traditional Chinese Medicine

Outstanding Youth Program of Hunan University of Chinese Medicine

The Scientific Research Fund of Hunan University of Chinese Medicine

Hunan University of Chinese Medicine Pharmacy first-class construction Discipline Project

Open Foundation Project of Hunan International Joint Laboratory of Traditional Chinese Medicine

Research Learning and Innovation Experimental Program for College Students of Hunan Province

Postgraduate Innovation Project of Hunan University of Chinese Medicine

Undergraduate Research and Innovation Foundation of Hunan University of Chinese Medicine

Publisher

Springer Science and Business Media LLC

Subject

Genetics (clinical),Genetics,Molecular Biology,Molecular Medicine

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