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维生素K2对骨稳态的调节是由类固醇和外源性物质受体SXR介导的。

Vitamin K2 regulation of bone homeostasis is mediated by the steroid and xenobiotic receptor SXR.

作者信息

Tabb Michelle M, Sun Aixu, Zhou Changcheng, Grün Felix, Errandi Jody, Romero Kimberly, Pham Hang, Inoue Satoshi, Mallick Shyamali, Lin Min, Forman Barry M, Blumberg Bruce

机构信息

Department of Developmental and Cell Biology, University of California, Irvine, California 92697-2300, USA.

出版信息

J Biol Chem. 2003 Nov 7;278(45):43919-27. doi: 10.1074/jbc.M303136200. Epub 2003 Aug 14.

Abstract

Vitamin K2 is a critical nutrient required for blood clotting that also plays an important role in bone formation. Vitamin K2 supplementation up-regulates the expression of bone markers, increases bone density in vivo, and is used clinically in the management of osteoporosis. The mechanism of vitamin K2 action in bone formation was thought to involve its normal role as an essential cofactor for gamma-carboxylation of bone matrix proteins. However, there is evidence that suggests vitamin K2 also has a transcriptional regulatory function. Vitamin K2 bound to and activated the orphan nuclear receptor SXR and induced expression of the SXR target gene, CYP3A4, identifying it as a bona fide SXR ligand. Vitamin K2 treatment of osteosarcoma cells increased mRNA levels for the osteoblast markers bone alkaline phosphatase, osteoprotegerin, osteopontin, and matrix Gla protein. The known SXR activators rifampicin and hyperforin induced this panel of bone markers to an extent similar to vitamin K2. Vitamin K2 was able to induce bone markers in primary osteocytes isolated from wild-type murine calvaria but not in cells isolated from mice deficient in the SXR ortholog PXR. We infer that vitamin K2 is a transcriptional regulator of bone-specific genes that acts through SXR to favor the expression of osteoblastic markers. Thus, SXR has a novel role as a mediator of bone homeostasis in addition to its role as a xenobiotic sensor. An important implication of this work is that a subset of SXR activators may function as effective therapeutic agents for the management of osteoporosis.

摘要

维生素K2是血液凝固所需的关键营养素,在骨骼形成中也起着重要作用。补充维生素K2可上调骨标志物的表达,增加体内骨密度,并在临床上用于骨质疏松症的治疗。维生素K2在骨骼形成中的作用机制被认为涉及其作为骨基质蛋白γ-羧化的必需辅助因子的正常作用。然而,有证据表明维生素K2也具有转录调节功能。维生素K2与孤儿核受体SXR结合并激活它,并诱导SXR靶基因CYP3A4的表达,从而将其确定为真正的SXR配体。用维生素K2处理骨肉瘤细胞可增加成骨细胞标志物骨碱性磷酸酶、骨保护素、骨桥蛋白和基质Gla蛋白的mRNA水平。已知的SXR激活剂利福平和贯叶连翘提取物诱导这组骨标志物的程度与维生素K2相似。维生素K2能够在从野生型小鼠颅骨分离的原代骨细胞中诱导骨标志物,但在从缺乏SXR直系同源物PXR的小鼠分离的细胞中则不能。我们推断维生素K2是骨特异性基因的转录调节因子,它通过SXR发挥作用,促进成骨细胞标志物的表达。因此,SXR除了作为外源性物质传感器的作用外,还具有作为骨稳态介质的新作用。这项工作的一个重要意义是,一部分SXR激活剂可能作为治疗骨质疏松症的有效治疗药物。

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