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磷脂酶Cβ4通过与MKK3和p38丝裂原活化蛋白激酶相互作用促进RANKL依赖的破骨细胞生成。

Phospholipase C β4 promotes RANKL-dependent osteoclastogenesis by interacting with MKK3 and p38 MAPK.

作者信息

Lee Dong-Kyo, Jin Xian, Choi Poo-Reum, Cui Ying, Che Xiangguo, Lee Sihoon, Hur Keun, Kim Hyun-Ju, Choi Je-Yong

机构信息

Department of Biochemistry and Cell Biology, Cell and Matrix Research Institute, School of Medicine, Kyungpook National University, Daegu, Republic of Korea.

Department of Internal Medicine and Laboratory of Molecular Endocrinology, Gachon University School of Medicine, Incheon, Republic of Korea.

出版信息

Exp Mol Med. 2025 Feb;57(2):323-334. doi: 10.1038/s12276-025-01390-8. Epub 2025 Feb 3.

Abstract

Phospholipase C β (PLCβ) is involved in diverse biological processes, including inflammatory responses and neurogenesis; however, its role in bone cell function is largely unknown. Among the PLCβ isoforms (β1-β4), we found that PLCβ4 was the most highly upregulated during osteoclastogenesis. Here we used global knockout and osteoclast lineage-specific PLCβ4 conditional knockout (LysM-PLCβ4) mice as subjects and demonstrated that PLCβ4 is a crucial regulator of receptor activator of nuclear factor κB ligand (RANKL)-induced osteoclast differentiation. The deletion of PLCβ4, both globally and in the osteoclast lineage, resulted in a significant reduction in osteoclast formation and the downregulation of osteoclast marker genes. Notably, male LysM-PLCβ4 mice presented greater bone mass and fewer osteoclasts in vivo than their wild-type littermates, without altered osteoblast function. Mechanistically, we found that PLCβ4 forms a complex with p38 mitogen-activated protein kinase (MAPK) and MAPK kinase 3 (MKK3) in response to RANKL-induced osteoclast differentiation, thereby modulating p38 activation. An immunofluorescence assay further confirmed the colocalization of PLCβ4 with p38 after RANKL exposure. Moreover, p38 activation rescued impaired osteoclast formation and restored the reduction in p38 phosphorylation caused by PLCβ4 deficiency. Thus, our findings reveal that PLCβ4 controls osteoclastogenesis via the RANKL-dependent MKK3-p38 MAPK pathway and that PLCβ4 may be a potential therapeutic candidate for bone diseases such as osteoporosis.

摘要

磷脂酶Cβ(PLCβ)参与多种生物学过程,包括炎症反应和神经发生;然而,其在骨细胞功能中的作用在很大程度上尚不清楚。在PLCβ亚型(β1-β4)中,我们发现PLCβ4在破骨细胞生成过程中上调最为显著。在这里,我们以全局敲除和破骨细胞谱系特异性PLCβ4条件性敲除(LysM-PLCβ4)小鼠为研究对象,证明PLCβ4是核因子κB受体激活剂配体(RANKL)诱导的破骨细胞分化的关键调节因子。全局和破骨细胞谱系中PLCβ4的缺失均导致破骨细胞形成显著减少以及破骨细胞标记基因的下调。值得注意的是,雄性LysM-PLCβ4小鼠在体内比其野生型同窝小鼠具有更高的骨量和更少的破骨细胞,而成骨细胞功能未改变。从机制上讲,我们发现PLCβ4在RANKL诱导的破骨细胞分化过程中与p38丝裂原活化蛋白激酶(MAPK)和MAPK激酶3(MKK3)形成复合物,从而调节p38的激活。免疫荧光分析进一步证实了RANKL暴露后PLCβ4与p38的共定位。此外,p38激活挽救了受损的破骨细胞形成,并恢复了由PLCβ4缺陷导致的p38磷酸化减少。因此,我们的研究结果表明,PLCβ4通过RANKL依赖的MKK3-p38 MAPK途径控制破骨细胞生成,并且PLCβ4可能是骨质疏松症等骨疾病的潜在治疗靶点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5003/11873240/0dd60502ac8c/12276_2025_1390_Fig1_HTML.jpg

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