In vivo contribution of Cyp24a1 promoter vitamin D response elements.

IF 3.8 3区 医学 Q2 ENDOCRINOLOGY & METABOLISM
Mark B Meyer, Seong Min Lee, Jordan M Towne, Shannon R Cichanski, Martin Kaufmann, Glenville Jones, J Wesley Pike
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引用次数: 0

Abstract

CYP24A1 is a multifunctional, P450 mitochondrial enzyme that catabolizes the vitamin D hormone (calcitriol, 1,25(OH)2D3), its precursor (calcifediol, 25(OH)D3), and numerous vitamin D metabolites. In the kidney, Cyp24a1 is induced by 1,25(OH)2D3 and FGF23, and potently suppressed by PTH to control the circulating levels of 1,25(OH)2D3. Cyp24a1 is controlled by a pair of promoter proximal (PRO) vitamin D response elements (VDREs) that are aided by distal, downstream (DS) enhancers. The DS1 enhancer is kidney-specific and responsible for PTH and FGF23 actions, and the DS2 enhancer responds to 1,25(OH)2D3 in all tissues. Despite this knowledge, in vivo contributions of the PRO VDREs to basal expression, FGF23 activation, and PTH suppression of Cyp24a1, remain unknown. Here in this study, we selectively mutated the PRO VDREs in the mouse to address these questions. We found mutation of the VDREs leads to a dramatic loss of VDR occupancy, a reduction of 1,25(OH)D3-induced kidney Cyp24a1 expression, and near elimination of intestinal Cyp24a1 induction. FGF23 induction of Cyp24a1 was reduced, but not eliminated and still showed a synergistic increase with 1,25(OH)2D3. PTH suppression of Cyp24a1 was unchanged, despite minor reductions in total pCREB occupancy. Finally, VDR recruitment was dramatically reduced across the DS enhancers in the Cyp24a1 locus. Taken together, our data suggest a cooperative relationship between the DS and PRO enhancers in the regulation of Cyp24a1 by 1,25(OH)2D3 and FGF23, and points to the DS1 region as a crucial basal switch for Cyp24a1 activity that further defines the interconnected genomic control in vitamin D catabolism.

Cyp24a1 启动子维生素 D 反应元件的体内贡献。
CYP24A1 是一种多功能 P450 线粒体酶,可分解维生素 D 激素(降钙素三醇,1,25(OH)2D3)、其前体(降钙素二醇,25(OH)D3)和多种维生素 D 代谢物。在肾脏中,Cyp24a1 受 1,25(OH)2D3 和 FGF23 的诱导,并受 PTH 的有效抑制,从而控制 1,25(OH)2D3 的循环水平。Cyp24a1 受一对启动子近端(PRO)维生素 D 反应元件(VDRE)的控制,这对启动子近端(PRO)维生素 D 反应元件由远端下游(DS)增强子辅助。DS1 增强子具有肾脏特异性,负责 PTH 和 FGF23 的作用,而 DS2 增强子则对所有组织中的 1,25(OH)2D3 作出反应。尽管知道了这些,但 PRO VDREs 在体内对 Cyp24a1 的基础表达、FGF23 激活和 PTH 抑制的贡献仍然未知。在本研究中,我们选择性地突变了小鼠的 PRO VDREs,以解决这些问题。我们发现突变 VDREs 会导致 VDR 占有率急剧下降、1,25(OH)D3 诱导的肾脏 Cyp24a1 表达减少以及肠道 Cyp24a1 诱导几乎消失。FGF23对Cyp24a1的诱导作用有所降低,但并未消除,而且仍与1,25(OH)2D3协同增效。尽管总 pCREB 占有率略有下降,但 PTH 对 Cyp24a1 的抑制没有改变。最后,在 Cyp24a1 基因座的 DS 增强子上,VDR 招募显著减少。总之,我们的数据表明,在 1,25(OH)2D3 和 FGF23 对 Cyp24a1 的调控中,DS 和 PRO 增强子之间存在合作关系,并指出 DS1 区域是 Cyp24a1 活性的关键基础开关,它进一步确定了维生素 D 分解代谢中相互关联的基因组控制。
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来源期刊
Endocrinology
Endocrinology 医学-内分泌学与代谢
CiteScore
8.10
自引率
4.20%
发文量
195
审稿时长
2-3 weeks
期刊介绍: The mission of Endocrinology is to be the authoritative source of emerging hormone science and to disseminate that new knowledge to scientists, clinicians, and the public in a way that will enable "hormone science to health." Endocrinology welcomes the submission of original research investigating endocrine systems and diseases at all levels of biological organization, incorporating molecular mechanistic studies, such as hormone-receptor interactions, in all areas of endocrinology, as well as cross-disciplinary and integrative studies. The editors of Endocrinology encourage the submission of research in emerging areas not traditionally recognized as endocrinology or metabolism in addition to the following traditionally recognized fields: Adrenal; Bone Health and Osteoporosis; Cardiovascular Endocrinology; Diabetes; Endocrine-Disrupting Chemicals; Endocrine Neoplasia and Cancer; Growth; Neuroendocrinology; Nuclear Receptors and Their Ligands; Obesity; Reproductive Endocrinology; Signaling Pathways; and Thyroid.
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