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在体外,松弛素通过松弛素/胰岛素样家族肽受体2(Rxfp2)增强MC3T3-E1细胞的分化和基质矿化。

RELAXIN enhances differentiation and matrix mineralization through Relaxin/insulin-like family peptide receptor 2 (Rxfp2) in MC3T3-E1 cells in vitro.

作者信息

Duarte Carolina, Kobayashi Yukiho, Kawamoto Tatsuo, Moriyama Keiji

机构信息

Maxillofacial Orthognathics, Department of Maxillofacial Reconstruction and Function, Division of Maxillofacial/Neck Reconstruction, Graduate School of Medical and Dental Sciences, Tokyo Medical and Dental University, 1-5-45, Yushima, Bunkyo-ku, Tokyo 113-8549, Japan.

Maxillofacial Orthognathics, Department of Maxillofacial Reconstruction and Function, Division of Maxillofacial/Neck Reconstruction, Graduate School of Medical and Dental Sciences, Tokyo Medical and Dental University, 1-5-45, Yushima, Bunkyo-ku, Tokyo 113-8549, Japan; Hard Tissue Genome Research Center, Tokyo Medical and Dental University, 1-5-45, Yushima, Bunkyo-ku, Tokyo 113-8510 Japan.

出版信息

Bone. 2014 Aug;65:92-101. doi: 10.1016/j.bone.2014.05.005. Epub 2014 May 22.

Abstract

RELAXIN (RLN) is a polypeptide hormone of the insulin-like hormone family; it facilitates birth by softening and widening the pubic symphysis and cervix in many mammals, including humans. The role of RLN in bone metabolism was recently suggested by its ability to induce osteoclastogenesis and activate osteoclast function. RLN binds to RELAXIN/INSULIN-LIKE FAMILY PEPTIDE 1 (RXFP1) and 2 (RXFP2), with varying species-specific affinities. Young men with mutated RXFP2 are at high risk for osteoporosis, as RXFP2 influences osteoblast metabolism by binding to INSULIN-LIKE PEPTIDE 3 (INSL3). However, there have been no reports on RLN function in osteoblast differentiation and mineralization or on the functionally dominant receptors for RLN in osteoblasts. We previously described Rxfp1 and 2 expression patterns in developing mouse oral components, including the maxillary and mandibular bones, Meckel's cartilage, tongue, and tooth primordia. We hypothesized that Rln/Rxfp signaling is a key mediator of skeletal development and metabolism. Here, we present the gene expression patterns of Rxfp1 and 2 in developing mouse calvarial frontal bones as determined by in situ hybridization. In addition, RLN enhanced osteoblastic differentiation and caused abnormal mineralization and extracellular matrix metabolism through Rxfp2, which was predominant over Rxfp1 in MC3T3-E1 mouse calvarial osteoblasts. Our data suggest a novel role for Rln in craniofacial skeletal development and metabolism through Rxfp2.

摘要

松弛素(RLN)是胰岛素样激素家族的一种多肽激素;在包括人类在内的许多哺乳动物中,它通过软化和扩张耻骨联合及子宫颈来促进分娩。最近,RLN在骨代谢中的作用因其诱导破骨细胞生成和激活破骨细胞功能的能力而被提出。RLN以不同的物种特异性亲和力与松弛素/胰岛素样家族肽1(RXFP1)和2(RXFP2)结合。携带突变RXFP2的年轻男性患骨质疏松症的风险很高,因为RXFP2通过与胰岛素样肽3(INSL3)结合来影响成骨细胞代谢。然而,关于RLN在成骨细胞分化和矿化中的功能,或其在成骨细胞中功能上占主导地位的受体,尚无相关报道。我们之前描述了发育中小鼠口腔组织成分(包括上颌骨和下颌骨、梅克尔软骨、舌头和牙胚)中Rxfp1和2的表达模式。我们假设Rln/Rxfp信号是骨骼发育和代谢的关键调节因子。在此,我们展示了通过原位杂交确定的发育中小鼠颅盖额骨中Rxfp1和2的基因表达模式。此外,RLN通过Rxfp2增强成骨细胞分化,并导致异常矿化和细胞外基质代谢,在MC3T3-E1小鼠颅盖成骨细胞中,Rxfp2比Rxfp1占主导地位。我们的数据表明Rln通过Rxfp2在颅面骨骼发育和代谢中具有新的作用。

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