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维生素D的构象-功能关系:构象分析预测潜在的侧链结构。

Conformation-function relationship of vitamin D: conformational analysis predicts potential side-chain structure.

作者信息

Yamada S, Yamamoto K, Masuno H, Ohta M

机构信息

Institute for Medical and Dental Engineering, Tokyo Medical and Dental University, 2-3-10 Surugadai Kanda, Chiyoda-ku, Tokyo 101, Japan.

出版信息

J Med Chem. 1998 Apr 23;41(9):1467-75. doi: 10.1021/jm970761l.

Abstract

In previous studies, we have grouped regions in space occupied by the vitamin D side chain into four: A, G, EA, and EG. We showed that the receptor (VDR) affinity of 1alpha,25-dihydroxyvitamin D3 derivatives increases, in terms of side-chain region, in the order EG, G, A, and EA. We called this the active space group concept. In the present study, we used this active space group concept to analyze the conformation-activity relationship of about 40 representative potent 1alpha,25-dihydroxyvitamin D3 analogues. We initially listed structural modifications in the side chain of potent vitamin D analogues and estimated their potency factor. Possible side-chain conformations of representative analogues were calculated by the molecular mechanics method and plotted on a dot map compared with the regions A, G, EA, and EG. The cell-differentiating potency of the analogues was correlated with our active space group concept with few exceptions. Among potent analogues with a natural configuration at C(20), the side chains of those with a 22-oxa, 22-ene, 16-ene, or a 18-nor modification were located in front of region EA (termed F). The side chains of the most potent 20-epi-22-oxa-24-homovitamin D analogues were concentrated at the left side of the EA region (L-EA). Thus, the side chains of almost all potent analogues were distributed around the EA region, and potency increased in the order A, F, EA, and L-EA.

摘要

在先前的研究中,我们将维生素D侧链占据的空间区域分为四类:A、G、EA和EG。我们发现,就侧链区域而言,1α,25 - 二羟基维生素D3衍生物的受体(VDR)亲和力按EG、G、A和EA的顺序增加。我们将此称为活性空间基团概念。在本研究中,我们使用这一活性空间基团概念来分析约40种具有代表性的强效1α,25 - 二羟基维生素D3类似物的构效关系。我们首先列出了强效维生素D类似物侧链中的结构修饰,并估算了它们的效价因子。通过分子力学方法计算了代表性类似物可能的侧链构象,并绘制在点状图上,与A、G、EA和EG区域进行比较。除少数例外情况外,类似物的细胞分化能力与我们的活性空间基团概念相关。在C(20)具有天然构型的强效类似物中,具有22 - 氧杂、22 - 烯、16 - 烯或18 - 降修饰的类似物的侧链位于EA区域(称为F)前方。最强效的20 - 表 - 22 - 氧杂 - 24 - 高维生素D类似物的侧链集中在EA区域左侧(L - EA)。因此,几乎所有强效类似物的侧链都分布在EA区域周围,效价按A、F、EA和L - EA的顺序增加。

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