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从 DNA 结合分子文库中发现异常基因转录抑制剂:抑制 LEF-1 介导的基因转录和致癌转化。

Discovery of inhibitors of aberrant gene transcription from Libraries of DNA binding molecules: inhibition of LEF-1-mediated gene transcription and oncogenic transformation.

机构信息

Department of Chemistry, The Skaggs Institute for Chemical Biology, The Scripps Research Institute, 10550 North Torrey Pines Road, La Jolla, California 92037, usa.

出版信息

J Am Chem Soc. 2009 Mar 11;131(9):3342-8. doi: 10.1021/ja809083d.

Abstract

The screening of a >9000 compound library of synthetic DNA binding molecules for selective binding to the consensus sequence of the transcription factor LEF-1 followed by assessment of the candidate compounds in a series of assays that characterized functional activity (disruption of DNA-LEF-1 binding) at the intended target and site (inhibition of intracellular LEF-1-mediated gene transcription) resulting in a desired phenotypic cellular change (inhibit LEF-1-driven cell transformation) provided two lead compounds: lefmycin-1 and lefmycin-2. The sequence of screens defining the approach assures that activity in the final functional assay may be directly related to the inhibition of gene transcription and DNA binding properties of the identified molecules. Central to the implementation of this generalized approach to the discovery of DNA binding small molecule inhibitors of gene transcription was (1) the use of a technically nondemanding fluorescent intercalator displacement (FID) assay for initial assessment of the DNA binding affinity and selectivity of a library of compounds for any sequence of interest, and (2) the technology used to prepare a sufficiently large library of DNA binding compounds.

摘要

对 >9000 种合成 DNA 结合分子的化合物库进行筛选,以选择性结合转录因子 LEF-1 的共有序列,然后在一系列评估候选化合物的实验中评估其功能活性(破坏 DNA-LEF-1 结合)在预期的靶标和部位(抑制细胞内 LEF-1 介导的基因转录),从而导致所需的表型细胞变化(抑制 LEF-1 驱动的细胞转化),得到了两种先导化合物:lefmycin-1 和 lefmycin-2。定义该方法的筛选序列可确保最终功能测定中的活性可能与基因转录抑制和鉴定分子的 DNA 结合特性直接相关。发现转录基因的 DNA 结合小分子抑制剂的这种通用方法的实施关键在于:(1) 使用技术要求不高的荧光嵌入剂置换 (FID) 测定法,最初评估对任何感兴趣序列的化合物库的 DNA 结合亲和力和选择性;以及 (2) 用于制备足够大的 DNA 结合化合物库的技术。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3a5c/2787879/d15047b5f286/nihms95829f1.jpg

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