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Antiproliferative Activity of Non-Calcemic Vitamin D Analogs on Human Melanoma Lines in Relation to VDR and PDIA3 Receptors

机译:关于VDR和PDIA3受体相关的人黑色素瘤系中非钙质维生素D模拟的抗增殖活性

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摘要

Vitamin D is a precursor for secosteroidal hormones, which demonstrate pleiotropic biological activities, including the regulation of growth and the differentiation of normal and malignant cells. Our previous studies have indicated that the inhibition of melanoma proliferation by a short side-chain, low calcemic analog of vitamin D—21(OH)pD is not fully dependent on the expression of vitamin D receptor (VDR). We have examined the effects of classic vitamin D metabolites, 1,25(OH)2D3 and 25(OH)D3, and two low calcemic vitamin D analogs, (21(OH)pD and calcipotriol), on proliferation, mRNA expression and vitamin D receptor (VDR) translocation in three human melanoma cell lines: WM98, A375 and SK-MEL-188b (subline b of SK-MEL-188, which lost responsiveness to 1,25(OH)2D3 and became VDR−/−CYP27B1−/−). All tested compounds efficiently inhibited the proliferation of WM98 and A375 melanoma cells except SK-MEL-188b, in which only the short side-chain vitamin D analog—21(OH)pD was effective. Overall, 21(OH)pD was the most potent compound in all three melanoma cell lines in the study. The lack of responsiveness of SK-MEL-188b to 1,25(OH)2D3, 25(OH)D3 and calcipotriol is explained by a lack of characteristic transcripts for the VDR, its splicing variants as well as for vitamin D-activating enzyme CYP27B1. On the other hand, the expression of VDR and its splicing variants and other vitamin D related genes (RXR, PDIA3, CYP3A4, CYP2R1, CYP27B1, CYP24A1 and CYP11A1) was detected in WM98 and A375 melanomas with the transcript levels being modulated by vitamin D analogs. The expression of VDR isoforms in WM98 cells was stimulated strongly by calcipotriol. The antiproliferative activities of 21(OH)pD appear not to require VDR translocation to the nucleus, which explains the high efficacy of this noncalcemic pregnacalciferol analog in SK-MEL-188b melanoma, that is, VDR−/−. Therefore, we propose that 21(OH)pD is a good candidate for melanoma therapy, although the mechanism of its action remains to be defined.
机译:维生素D是安全型激素的前体,其证明了抗磷酸生物活性,包括调节生长和正常和恶性细胞的分化。我们以前的研究表明,通过短的侧链抑制黑素瘤增殖,维生素D-21(OH)PD的低钙化模拟不完全取决于维生素D受体(VDR)的表达。我们研究了经典维生素D代谢物,1,25(OH)2D3和25(OH)D3和两种低钙化维生素D类似物的影响,(21(OH)Pd和Calcipotriol),对增殖,mRNA表达和维生素D受体(VDR)三种人黑素瘤细胞系中的易位:WM98,A375和SK-MEL-188B(SK-MEL-188的载载B次数,其丧失响应性为1,25(OH)2D3并成为VDR - / - CYP27B1 - / - )。除SK-MEL-188B之外,所有测试的化合物都有效抑制WM98和A375黑色素瘤细胞的增殖,其中只有短的侧链维生素D模拟-21(OH)PD是有效的。总体而言,21(OH)Pd是研究中所有三种黑素瘤细胞系中最有效的化合物。 SK-MEL-188B至1,25(OH)2D3,25(OH)D3和COPIPOTRIOS的缺乏对缺乏对VDR的特征转录物来解释的,其剪接变体以及维生素D-活化酶来解释CYP27B1。另一方面,在WM98和A375黑色素中检测到VDR及其剪接变体和其它维生素D相关基因(RXR,PDIA3,CYP3A4,CYP2R1和CYP1A1,CYP24A1和CYP11A1,CYP24A1和CYP11A1),其具有通过维生素D调节的转录水平类似物。通过Calcipotriol强烈地刺激WM98细胞中VDR同种型的表达。 21(OH)PD的抗增殖活性似乎不需要对核的VDR易位,这解释了这种非钙妊娠杀菌剂在SK-Mel-188b黑色素瘤中的高疗效,即VDR - / - 。因此,我们提出21(OH)PD是黑素瘤治疗的良好候选者,尽管其行为的机制仍有待定义。

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