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5-羟色胺 6 受体失调加速破骨细胞的成熟并导致骨丢失。

Dysregulation of 5-hydroxytryptamine 6 receptor accelerates maturation of bone-resorbing osteoclasts and induces bone loss.

机构信息

College of Pharmacy and Medical Research Center, Chungbuk National University, Chungbuk 194-31, Republic of Korea.

Department of Oral and Maxillofacial Pathology, School of Dentistry, Kyung Hee University, Seoul 130-701, Republic of Korea.

出版信息

Theranostics. 2018 Apr 30;8(11):3087-3098. doi: 10.7150/thno.24426. eCollection 2018.

Abstract

Characterizing the regulation of bone-resorbing osteoclasts is central to the understanding of the pathogenesis and treatment of bone diseases, such as osteoporosis and periodontitis. 5-hydroxytryptamine (5-HT) has drawn considerable attention for its role in bone; however, it remains unknown whether the intracellular signaling of 5-HT receptors (5-HTRs) is linked to any of the regulatory mechanisms in osteoclasts. Herein, we report 5-HTR to be a key regulatory receptor for osteoclastogenesis. In order to explore the critical role of 5-HTR in bone-resorbing osteoclasts, experiments were performed using mouse whole bone marrow cells isolated from femora and tibiae and animal experiments were performed using 5-HTR-deficient (5-HTR) mice, bone resorption mice model, and osteoporosis mice model. Compared to other 5HTRs, activation of 5-HTR relatively increased TRAP (tartrate-resistant acid phosphatase) activity during osteoclastogenesis. 5-HTR mice and 5-HTR osteoclast lineages presented with an abnormal phenotype and impaired osteoclastogenesis and impaired osteoclastogenesis. Activation of 5-HTR increased the number of TRAP-positive multinuclear osteoclasts, actin ring formation, and expression of early osteoclast markers with osteoclast lineage commitment. Intracellular 5-HTR signaling was found to be linked to RhoA GTPase activation and was involved in the maturation of osteoclasts. This signaling pathway also showed enhanced bone destruction after lipopolysaccharide (LPS) administration in mice. Furthermore, inhibition of 5-HTR-mediated RhoA GTPase signaling protected against ovariectomy(OVX)-induced bone loss in mice. Taken together, our findings place the 5-HTR system in a new context of osteoclast lineages in both an and system, and also it may offer a novel molecular target for the treatment of bone diseases.

摘要

描述破骨细胞的调节作用是理解骨质疏松症和牙周炎等骨疾病发病机制和治疗方法的核心。5-羟色胺(5-HT)在骨骼中发挥作用引起了广泛关注;然而,5-HT 受体(5-HTR)的细胞内信号是否与破骨细胞的任何调节机制相关仍然未知。在此,我们报告 5-HTR 是破骨细胞发生的关键调节受体。为了探索 5-HTR 在破骨细胞中的关键作用,我们使用从小鼠股骨和胫骨分离的骨髓细胞进行了实验,并使用 5-HTR 缺陷(5-HTR)小鼠、破骨细胞骨吸收模型和骨质疏松症小鼠模型进行了动物实验。与其他 5-HTR 相比,5-HTR 的激活在破骨细胞发生过程中相对增加了 TRAP(抗酒石酸酸性磷酸酶)活性。5-HTR 小鼠和 5-HTR 破骨细胞谱系表现出异常表型,并损害了破骨细胞发生和骨吸收。5-HTR 的激活增加了 TRAP 阳性多核破骨细胞的数量、肌动环形成以及与破骨细胞谱系承诺相关的早期破骨细胞标志物的表达。发现细胞内 5-HTR 信号与 RhoA GTPase 激活相关,并参与破骨细胞的成熟。该信号通路在 LPS 给药后也显示出增强的小鼠骨破坏作用。此外,抑制 5-HTR 介导的 RhoA GTPase 信号转导可预防去卵巢(OVX)诱导的小鼠骨丢失。总之,我们的研究结果将 5-HTR 系统置于一个新的环境中,即在 和 系统中,该系统也可能为治疗骨疾病提供一个新的分子靶点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8c38/5996355/75be9262b452/thnov08p3087g001.jpg

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