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N-甲基化环RGD肽作为高活性和选择性α(V)β(3)整合素拮抗剂。

N-Methylated cyclic RGD peptides as highly active and selective alpha(V)beta(3) integrin antagonists.

作者信息

Dechantsreiter M A, Planker E, Mathä B, Lohof E, Hölzemann G, Jonczyk A, Goodman S L, Kessler H

机构信息

Institut für Organische Chemie und Biochemie, Technische Universität München, Lichtenbergstrasse 4, D-85747 Garching, Germany.

出版信息

J Med Chem. 1999 Aug 12;42(16):3033-40. doi: 10.1021/jm970832g.

Abstract

The alpha(V)beta(3) integrin receptor plays an important role in human tumor metastasis and tumor-induced angiogenesis. The in vivo inhibition of this receptor by antibodies or by cyclic peptides containing the RGD sequence may in the future be used to selectively suppress these diseases. Here we investigate the influence of N-methylation of the active and selective alpha(V)beta(3) antagonist cyclo(RGDfV) (L1) on biological activity. Cyclo(RGDf-N(Me)V-) (P5) was found to be even more active than L1 and is one of the most active and selective compounds in inhibiting vitronectin binding to the alpha(V)beta(3) integrin. Its high-resolution, three-dimensional structure in water was determined by NMR techniques, distance geometry calculations, and molecular dynamics calculations, providing more insight into the structure-activity relationship.

摘要

α(V)β(3)整合素受体在人类肿瘤转移和肿瘤诱导的血管生成中起重要作用。未来,通过抗体或含RGD序列的环肽在体内抑制该受体,可能用于选择性地抑制这些疾病。在此,我们研究活性和选择性α(V)β(3)拮抗剂环(RGDfV)(L1)的N-甲基化对其生物活性的影响。发现环(RGDf-N(Me)V-)(P5)比L1活性更强,是抑制玻连蛋白与α(V)β(3)整合素结合的活性和选择性最高的化合物之一。通过核磁共振技术、距离几何计算和分子动力学计算确定了其在水中的高分辨率三维结构,为构效关系提供了更多见解。

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