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破骨细胞通过 MYD88 信号通路在细菌骨感染中直接调节骨溶解。

Osteocytes directly regulate osteolysis via MYD88 signaling in bacterial bone infection.

机构信息

Department of Biomedical Sciences and Comprehensive Care, Indiana University School of Dentistry, Indianapolis, IN, 46202-5126, USA.

Indiana Center for Musculoskeletal Health, Indiana University School of Medicine, Indianapolis, IN, 46202-5126, USA.

出版信息

Nat Commun. 2022 Nov 4;13(1):6648. doi: 10.1038/s41467-022-34352-z.

Abstract

The impact of bone cell activation on bacterially-induced osteolysis remains elusive. Here, we show that matrix-embedded osteocytes stimulated with bacterial pathogen-associated molecular patterns (PAMPs) directly drive bone resorption through an MYD88-regulated signaling pathway. Mice lacking MYD88, primarily in osteocytes, protect against osteolysis caused by calvarial injections of bacterial PAMPs and resist alveolar bone resorption induced by oral Porphyromonas gingivalis (Pg) infection. In contrast, mice with targeted MYD88 restoration in osteocytes exhibit osteolysis with inflammatory cell infiltration. In vitro, bacterial PAMPs induce significantly higher expression of the cytokine RANKL in osteocytes than osteoblasts. Mechanistically, activation of the osteocyte MYD88 pathway up-regulates RANKL by increasing binding of the transcription factors CREB and STAT3 to Rankl enhancers and by suppressing K48-ubiquitination of CREB/CREB binding protein and STAT3. Systemic administration of an MYD88 inhibitor prevents jawbone loss in Pg-driven periodontitis. These findings reveal that osteocytes directly regulate inflammatory osteolysis in bone infection, suggesting that MYD88 and downstream RANKL regulators in osteocytes are therapeutic targets for osteolysis in periodontitis and osteomyelitis.

摘要

骨细胞激活对细菌诱导的骨溶解的影响仍不清楚。在这里,我们表明,受细菌病原体相关分子模式 (PAMP) 刺激的基质嵌入成骨细胞通过 MYD88 调节的信号通路直接驱动骨吸收。主要在成骨细胞中缺乏 MYD88 的小鼠可防止细菌 PAMP 颅骨注射引起的骨溶解,并抵抗口腔牙龈卟啉单胞菌 (Pg) 感染引起的牙槽骨吸收。相比之下,成骨细胞中靶向 MYD88 恢复的小鼠表现出骨溶解和炎症细胞浸润。在体外,细菌 PAMP 诱导的细胞因子 RANKL 在成骨细胞中的表达明显高于成骨细胞。在机制上,成骨细胞 MYD88 途径的激活通过增加转录因子 CREB 和 STAT3 与 Rankl 增强子的结合,并通过抑制 CREB/CREB 结合蛋白和 STAT3 的 K48-泛素化,上调 RANKL。全身给予 MYD88 抑制剂可防止 Pg 驱动的牙周炎中颌骨丢失。这些发现表明成骨细胞直接调节骨感染中的炎症性骨溶解,提示成骨细胞中的 MYD88 和下游 RANKL 调节剂是牙周炎和骨髓炎中骨溶解的治疗靶点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/aaff/9636212/8e2c0e2417f7/41467_2022_34352_Fig1_HTML.jpg

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