Harney Allison S, Lee Jiyoun, Manus Lisa M, Wang Peijiao, Ballweg David M, LaBonne Carole, Meade Thomas J
Department of Chemistry, Northwestern University, Evanston, IL 60208, USA.
Proc Natl Acad Sci U S A. 2009 Aug 18;106(33):13667-72. doi: 10.1073/pnas.0906423106. Epub 2009 Aug 3.
A transition metal complex targeted for the inhibition of a subset of zinc finger transcription factors has been synthesized and tested in Xenopus laevis. A Co(III) Schiff base complex modified with a 17-bp DNA sequence is designed to selectively inhibit Snail family transcription factors. The oligonucleotide-conjugated Co(III) complex prevents Slug, Snail, and Sip1 from binding their DNA targets whereas other transcription factors are still able to interact with their target DNA. The attachment of the oligonucleotide to the Co(III) complex increases specificity 150-fold over the unconjugated complex. Studies demonstrate that neither the oligo, or the Co(III) Schiff base complex alone, are sufficient for inactivation of Slug at concentrations that the conjugated complex mediates inhibition. Slug, Snail, and Sip1 have been implicated in the regulation of epithelial-to-mesenchymal transition in development and cancer. A complex targeted to inactivate their transcriptional activity could prove valuable as an experimental tool and a cancer therapeutic.
一种旨在抑制锌指转录因子亚群的过渡金属配合物已被合成并在非洲爪蟾中进行了测试。一种用17个碱基对的DNA序列修饰的钴(III)席夫碱配合物被设计用于选择性抑制蜗牛家族转录因子。寡核苷酸共轭的钴(III)配合物可阻止Slug、Snail和Sip1与其DNA靶点结合,而其他转录因子仍能与它们的靶DNA相互作用。与未共轭的配合物相比,寡核苷酸与钴(III)配合物的结合使特异性提高了150倍。研究表明,在共轭配合物介导抑制作用的浓度下,单独的寡核苷酸或钴(III)席夫碱配合物都不足以使Slug失活。Slug、Snail和Sip1与发育和癌症中上皮-间质转化的调控有关。一种旨在使其转录活性失活的配合物可能作为一种实验工具和癌症治疗方法具有重要价值。