扶正固本胶囊通过创新性的 Mekk2 介导的 β-catenin 去泛素化作用,促进骨形成并防止糖皮质激素诱导的骨质疏松症。

IF 2.4 3区 医学 Q3 ENDOCRINOLOGY & METABOLISM Journal of Bone and Mineral Metabolism Pub Date : 2024-09-01 Epub Date: 2024-05-16 DOI:10.1007/s00774-024-01516-4
Guoju Hong, Lin Tang, Tianyu Zhou, Youhong Xie, Jiangyan Wang, Dongdong Ge, Qunwei Dong, Ping Sun
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引用次数: 0

摘要

引言骨的稳态取决于成骨细胞中β-catenin的调控。众所周知,糖皮质激素(GCs)会通过 Wnt 通路信号降低β-catenin 的活性,从而导致骨质疏松症。相反,通过丝裂原活化蛋白激酶激酶2(Mekk2)激活成骨细胞中的β-catenin,为防治GC诱导的骨质疏松症(GIOP)提供了一种创新方法。扶正固本胶囊已显示出治疗 GIOP 的有效性,但其背后的机制尚不清楚:本研究通过CRISPR/Cas9技术产生了Mekk2基因敲除小鼠(Mekk2-/-)。然后对这些小鼠进行阿尔新蓝-茜素红染色和免疫荧光,以评估它们的骨骼和软骨发育情况。为了建立GIOP模型,Mekk2-/-小鼠和野生型(WT)小鼠都接受了地塞米松(DXMS)治疗,随后服用了FTZ胶囊。我们使用 Micro-CT 扫描和组织形态学研究分析了这些小鼠的表型变化。从 Mekk2-/- 和 WT 小鼠体内分离出的原代成骨细胞经过 qRT-PCR 检测关键的成骨标志物,包括 Runx2、Sp7、Bgalp、Col1a1 和 Alp。然后将细胞暴露于 FTZ 或 Wnt3a 的处理中,使用 Western 印迹法和免疫沉淀法评估β-catenin 和 Mekk2 的磷酸化水平以及 Runx2 的蛋白表达。此外,用FTZ和Wnt3a处理转染了TOPflash荧光素酶和Renilla荧光素酶报告子的C3H10T1/2细胞,以测量β-catenin的活性:在我们的研究中,在体内施用 FTZ 能有效防止由 GCs 引起的骨质流失。然而,值得注意的是,这种保护作用在缺乏 Mekk2 的小鼠中大大降低。此外,FTZ 还通过改变 Mekk2 的表达,显著增强了原发性成骨细胞的成骨分化能力。耐人寻味的是,FTZ 对 Mekk2 的影响似乎是通过一种独立于传统 Wnt 信号转导途径的途径发挥作用的。此外,我们的研究结果表明,FTZ还能促进β-catenin的去泛素化,从而进一步促进其对骨骼健康的积极影响:本研究表明,FTZ 在保护 GIOP 患者的骨量方面发挥着重要作用。FTZ产生这种益处的机制涉及激活Mekk2/β-catenin信号通路,这是通过促进成骨细胞生成来抵消GIOP有害影响的一种有前途的替代策略。
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Fufang Zhenshu Tiaozhi capsule enhances bone formation and safeguards against glucocorticoid-induced osteoporosis through innovative Mekk2-mediated β-catenin deubiquitination.

Introduction: Bone homeostasis depends on the regulation of β-catenin in osteoblasts. Glucocorticoids (GCs) are known to diminish β-catenin activity via Wnt pathway signaling, leading to osteoporosis. Conversely, activating β-catenin in osteoblasts through mitogen-activated protein kinase kinase kinase 2 (Mekk2) offers an innovative approach to combat GC-induced osteoporosis (GIOP). Fufang Zhenshu Tiaozhi (FTZ) capsules have shown effectiveness in treating GIOP, but the mechanisms behind this are still unclear.

Materials and methods: In this study, Mekk2 knockout mice (Mekk2-/-) was generated by CRISPR/Cas9. These mice were then subjected to Alcian Blue-Alizarin Red staining and immunofluorescence to assess their bone and cartilage development. To establish models of GIOP, both Mekk2-/- and wild-type (WT) mice were treated with dexamethasone (DXMS) and subsequently given FTZ capsules. We analyzed the resulting phenotypic changes in these mice using Micro-CT scans and histomorphological studies. Primary osteoblasts, isolated from both Mekk2-/- and WT mice, underwent qRT-PCR to measure key osteogenesis markers, including Runx2, Sp7, Bgalp, Col1a1 and Alp. Cells were then exposed to treatments with either FTZ or Wnt3a and the phosphorylation levels of β-catenin and Mekk2, along with the protein expression of Runx2, were evaluated using Western blotting and immunoprecipitation. Additionally, C3H10T1/2 cells transfected with TOPflash-luciferase and Renilla luciferase reporters were treated with FTZ and Wnt3a to measure β-catenin activity.

Results: In our study, administering FTZ in vivo effectively prevented bone loss typically induced by GCs. However, it's important to note that this protective effect was substantially reduced in mice lacking Mekk2. Additionally, FTZ showed a significant ability to enhance osteogenic differentiation in primary osteoblasts, doing so by altering the expression of Mekk2. Intriguingly, the impact of FTZ on Mekk2 appears to function through a pathway separate from the traditional Wnt signaling route. Furthermore, our findings indicate that FTZ also promotes the deubiquitination of β-catenin, contributing further to its positive effects on bone health.

Conclusions: This study suggests that FTZ plays a significant role in protecting bone mass in cases of GIOP. The mechanism through which FTZ confers this benefit involves the activation of Mekk2/β-catenin signaling pathways, which represents a promising alternative strategy to counteract the deleterious effects of GIOP by augmenting osteoblastogenesis.

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来源期刊
Journal of Bone and Mineral Metabolism
Journal of Bone and Mineral Metabolism 医学-内分泌学与代谢
CiteScore
6.30
自引率
3.00%
发文量
89
审稿时长
6-12 weeks
期刊介绍: The Journal of Bone and Mineral Metabolism (JBMM) provides an international forum for researchers and clinicians to present and discuss topics relevant to bone, teeth, and mineral metabolism, as well as joint and musculoskeletal disorders. The journal welcomes the submission of manuscripts from any country. Membership in the society is not a prerequisite for submission. Acceptance is based on the originality, significance, and validity of the material presented. The journal is aimed at researchers and clinicians dedicated to improvements in research, development, and patient-care in the fields of bone and mineral metabolism.
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