首页> 外文期刊>Journal of bone and mineral research: the official journal of the American Society for Bone and Mineral Research >1,25-dihydroxyvitamin D3 influences cellular homocysteine levels in murine preosteoblastic MC3T3-E1 cells by direct regulation of cystathionine beta-synthase.
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1,25-dihydroxyvitamin D3 influences cellular homocysteine levels in murine preosteoblastic MC3T3-E1 cells by direct regulation of cystathionine beta-synthase.

机译:1,25-二羟基维生素D3通过直接调节胱硫醚β-合酶来影响小鼠成骨前成骨细胞MC3T3-E1细胞中的同型半胱氨酸水平。

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摘要

High homocysteine (HCY) levels are a risk factor for osteoporotic fracture. Furthermore, bone quality and strength are compromised by elevated HCY owing to its negative impact on collagen maturation. HCY is cleared by cystathionine beta-synthase (CBS), the first enzyme in the transsulfuration pathway. CBS converts HCY to cystathionine, thereby committing it to cysteine synthesis. A microarray experiment on MC3T3-E1 murine preosteoblasts treated with 1,25-dihydroxyvitamin D(3) [1,25(OH)(2) D(3) ] revealed a cluster of genes including the cbs gene, of which the transcription was rapidly and strongly induced by 1,25(OH)(2) D(3) . Quantitative real-time PCR and Western blot analysis confirmed higher levels of cbs mRNA and protein after 1,25(OH)(2) D(3) treatment in murine and human cells. Moreover, measurement of CBS enzyme activity and quantitative measurements of HCY, cystathionine, and cysteine concentrations were consistent with elevated transsulfuration activity in 1,25(OH)(2) D(3) -treated cells. The importance of a functional vitamin D receptor (VDR) for transcriptional regulation of cbs was shown in primary murine VDR knockout osteoblasts, in which upregulation of cbs in response to 1,25(OH)(2) D(3) was abolished. Chromatin immunoprecipitation on chip and transfection studies revealed a functional vitamin D response element in the second intron of cbs. To further explore the potential clinical relevance of our ex vivo findings, human data from the Longitudinal Aging Study Amsterdam suggested a correlation between vitamin D status [25(OH)D(3) levels] and HCY levels. In conclusion, this study showed that cbs is a primary 1,25(OH)(2) D(3) target gene which renders HCY metabolism responsive to 1,25(OH)(2) D(3).
机译:高半胱氨酸(HCY)水平是骨质疏松性骨折的危险因素。此外,由于HCY对胶原蛋白成熟的负面影响,因此其骨质量和强度会因HCY升高而受损。 HCY通过胱硫醚β合酶(CBS)清除,CBS是转硫途径中的第一种酶。 CBS将HCY转化为半胱氨酸,从而使其参与半胱氨酸合成。用1,25-二羟基维生素D(3)[1,25(OH)(2)D(3)]处理的MC3T3-E1鼠前成骨细胞的微阵列实验揭示了包括cbs基因在内的一系列基因,其转录为1,25(OH)(2)D(3)迅速而强烈地诱导。定量实时PCR和Western印迹分析证实在小鼠和人类细胞中进行1,25(OH)(2)D(3)处理后,cbs mRNA和蛋白水平更高。此外,在1,25(OH)(2)D(3)处理的细胞中,CBS酶活性的测定以及HCY,胱硫醚和半胱氨酸浓度的定量测定与升高的转硫活性一致。功能性维生素D受体(VDR)对于cbs转录调控的重要性已在原代小鼠VDR敲除成骨细胞中得到了证实,其中取消了对1,25(OH)(2)D(3)响应的cbs上调。芯片上的染色质免疫沉淀和转染研究表明,在cbs的第二个内含子中有功能性的维生素D反应元件。为了进一步探讨我们离体研究结果的潜在临床意义,阿姆斯特丹纵向老龄化研究的人类数据表明维生素D状态[25(OH)D(3)水平]与HCY水平之间存在相关性。总之,这项研究表明cbs是一个主要的1,25(OH)(2)D(3)目标基因,它使HCY代谢对1,25(OH)(2)D(3)产生响应。

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