Vasorin-deficient mice display disturbed vitamin D and mineral homeostasis in combination with a low bone mass phenotype

IF 2.1 Q3 ENDOCRINOLOGY & METABOLISM
Marco Eijken , A. Michaela Krautzberger , Manuela Scholze-Wittler , Bianca Boers-Sijmons , Marijke Koedam , Barbara Kosiol , Heinrich Schrewe , Johannes P. van Leeuwen , Bram C. van der Eerden
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Abstract

Vasorin (Vasn) is a pleiotropic molecule involved in various physiological and pathological conditions, including cancer. Vasn has also been detected in bone cells of developing skeletal tissues but no function for Vasn in bone metabolism has been implicated yet. Therefore, this study aimed to investigate if Vasn plays a significant role in bone biology. First, we investigated tissue distribution of Vasn expression, using lacZ knock-in reporter mice. We detected clear Vasn expression in skeletal elements of postnatal mice. In particular, osteocytes and bone forming osteoblasts showed high expression of Vasn, while the bone marrow was devoid of signal. Vasn knockout mice (Vasn−/−) displayed postnatal growth retardation and died after four weeks. MicroCT analysis of femurs from 22- to 25-day-old Vasn−/− mice demonstrated reduced trabecular and cortical bone volume corresponding to a low bone mass phenotype. Ex vivo bone marrow cultures demonstrated that osteoclast differentiation and activity were not affected by Vasn deficiency. However, osteogenesis of Vasn−/− bone marrow cultures was disturbed, resulting in lower numbers of alkaline phosphate positive colonies, impaired mineralization and lower expression of osteoblast marker genes. In addition to the bone phenotype, these mice developed a vitamin D3-related phenotype with a strongly reduced circulating 25-hydroxyvitamin D3 and 1,25-dihydroxyvitamin D3 and urinary loss of vitamin D binding protein. In conclusion, Vasn-deficient mice suffer from severe disturbances in bone metabolism and mineral homeostasis.

Vasorin缺陷小鼠表现出维生素D和矿物质平衡紊乱以及低骨量表型
Vasorin(Vasn)是一种多效应分子,与包括癌症在内的各种生理和病理状况有关。在发育中的骨骼组织的骨细胞中也检测到了 Vasn,但尚未发现 Vasn 在骨代谢中的功能。因此,本研究旨在探讨 Vasn 是否在骨生物学中发挥重要作用。首先,我们利用 lacZ 基因敲入报告小鼠研究了 Vasn 表达的组织分布。我们在出生后小鼠的骨骼元素中检测到了明显的 Vasn 表达。特别是,骨细胞和骨形成的成骨细胞显示出 Vasn 的高表达,而骨髓中则没有信号。Vasn基因敲除小鼠(Vasn-/-)出生后生长迟缓,四周后死亡。对 22 至 25 天大的 Vasn-/- 小鼠股骨的显微 CT 分析表明,骨小梁和皮质骨体积减少,这与低骨量表型相对应。体内外骨髓培养表明,破骨细胞的分化和活性不受 Vasn 缺乏的影响。然而,Vasn-/-缺失骨髓培养物的成骨过程受到干扰,导致碱性磷酸酶阳性集落数量减少、矿化受损和成骨细胞标记基因表达降低。除了骨骼表型外,这些小鼠还出现了维生素 D3 相关表型,循环中的 25- 羟维生素 D3 和 1,25- 二羟维生素 D3 显著减少,尿液中的维生素 D 结合蛋白减少。总之,Vasn缺陷小鼠的骨代谢和矿物质平衡受到严重干扰。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Bone Reports
Bone Reports Medicine-Orthopedics and Sports Medicine
CiteScore
4.30
自引率
4.00%
发文量
444
审稿时长
57 days
期刊介绍: Bone Reports is an interdisciplinary forum for the rapid publication of Original Research Articles and Case Reports across basic, translational and clinical aspects of bone and mineral metabolism. The journal publishes papers that are scientifically sound, with the peer review process focused principally on verifying sound methodologies, and correct data analysis and interpretation. We welcome studies either replicating or failing to replicate a previous study, and null findings. We fulfil a critical and current need to enhance research by publishing reproducibility studies and null findings.
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