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首页> 外文期刊>Journal of cellular biochemistry. >Mechanism of action of superactive vitamin D analogs through regulated receptor degradation.
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Mechanism of action of superactive vitamin D analogs through regulated receptor degradation.

机译:通过调节受体降解作用的超活性维生素D类似物的作用机理。

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摘要

We and others have previously shown that selected vitamin D analogs potentiate the vitamin D receptor (VDR) mediated transcription much more efficiently than the natural hormone itself. Here we show that the transcriptionally active 20-epi analogs, namely KH 1060 and MC 1288, protect VDR against degradation more efficiently than calcitriol at 10(-10) M concentration (VDR t(1/2) > 48 h, 17 h, and 10 h, respectively). The conformationally epi-like analog EB 1089 did not significantly alter the half-life of VDR (10.3 h), but retained the VDR levels over longer periods of time than calcitriol. The transcriptionally weak analog GS 1558, on the other hand, enhanced VDR degradation even more than what was observed with the unliganded receptor (t(1/2) 4.5 h and 5 h, respectively). Inhibition of proteasome activity by the inhibitor MG-132 resulted in a marked increase in the VDR levels in cells treated with the vehicle or GS 1558 (2.5-fold and 2.7-fold, respectively), more than twice the levels observed in the presence of calcitriol or EB 1089 (1.2-fold and 1.1-fold, respectively). MG-132 treatment did not increase the VDR levels in cells treated with KH 1060 or MC 1288. The electrophoretic mobility shift assay (EMSA) with nuclear extracts from MG-132-treated cells revealed formation of a high-molecular-weight RXRbeta-VDR-VDRE complex, which also contained Sug1. In the presence of calcitriol, 34% of total VDR in its DNA binding state was present in this complex. The 20-epi analogs effectively prevented the formation of this complex, since, in this case, only 16% of total VDR was found in this complex. These results suggest that KH 1060 and MC 1288 induce a VDR conformation, which prevents binding of proteins mediating receptor degradation. As a result, the regulation of VDR degradation differs from that found with the calcitriol-VDR complex resulting in superactive transcriptional action of the analogs. Copyright 2000 Wiley-Liss, Inc.
机译:我们和其他人以前已经表明,与天然激素本身相比,所选的维生素D类似物可更有效地增强维生素D受体(VDR)介导的转录。在这里,我们显示转录活性20-epi类似物,即KH 1060和MC 1288,在浓度为10(-10)M时比钙三醇更有效地保护VDR免受降解(VDR t(1/2)> 48 h,17 h,和10小时)。像epi-like的构象类似物EB 1089不会显着改变VDR的半衰期(10.3小时),但是与骨化三醇相比,在更长的时间内保留了VDR水平。另一方面,转录弱的类似物GS 1558增强的VDR降解甚至比未配体受体(分别为t(1/2)4.5 h和5 h)观察到的增强。抑制剂MG-132对蛋白酶体活性的抑制导致用媒介物或GS 1558处理的细胞中VDR含量显着增加(分别为2.5倍和2.7倍),是在存在MG的情况下观察到的水平的两倍以上。骨化三醇或EB 1089(分别为1.2倍和1.1倍)。 MG-132处理并没有增加用KH 1060或MC 1288处理的细胞中的VDR水平。用MG-132处理过的细胞的核提取物进行的电泳迁移率移动分析(EMSA)显示形成了高分子量RXRbeta-VDR -VDRE复合体,其中也包含Sug1。在骨化三醇存在下,该复合物中以DNA结合状态存在的总VDR的34%。 20-epi类似物有效地阻止了该复合物的形成,因为在这种情况下,仅在该复合物中发现了总VDR的16%。这些结果表明,KH 1060和MC 1288诱导了VDR构象,从而阻止了介导受体降解的蛋白质结合。结果,VDR降解的调节不同于骨化三醇-VDR复合物所发现的调节,导致类似物的超活性转录作用。版权所有2000 Wiley-Liss,Inc.

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