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两亲性小分子模拟内源性转录因子的结合模式和功能。

Amphipathic small molecules mimic the binding mode and function of endogenous transcription factors.

作者信息

Buhrlage Sara J, Bates Caleb A, Rowe Steven P, Minter Aaron R, Brennan Brian B, Majmudar Chinmay Y, Wemmer David E, Al-Hashimi Hashim, Mapp Anna K

机构信息

Department of Chemistry, University of Michigan, Ann Arbor, MI 48109, USA.

出版信息

ACS Chem Biol. 2009 May 15;4(5):335-44. doi: 10.1021/cb900028j.

DOI:10.1021/cb900028j
PMID:19348463
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2744096/
Abstract

Small molecules that reconstitute the binding mode(s) of a protein and in doing so elicit a programmed functional response offer considerable advantages in the control of complex biological processes. The development challenges of such molecules are significant, however. Many protein-protein interactions require multiple points of contact over relatively large surface areas. More significantly, several binding modes can be superimposed upon a single sequence within a protein, and a true small molecule replacement must be preprogrammed for such multimodal binding. This is the case for the transcriptional activation domain or TAD of transcriptional activators as these motifs utilize a poorly characterized multipartner binding profile in order to stimulate gene expression. Here we describe a unique class of small molecules that exhibit both function and a binding profile analogous to natural transcriptional activation domains. Of particular note, the small molecules are the first reported to bind to the KIX domain within the CREB binding protein (CBP) at a site that is utilized by natural activators. Further, a comparison of functional and nonfunctional small molecules indicates that an interaction with CBP is a key contributor to transcriptional activity. Taken together, the evidence suggests that the small molecule TADs mimic both the function and mechanism of their natural counterparts and thus present a framework for the broader development of small molecule transcriptional switches.

摘要

能够重构蛋白质结合模式并引发程序性功能反应的小分子,在控制复杂生物过程方面具有显著优势。然而,这类分子的研发面临诸多挑战。许多蛋白质-蛋白质相互作用需要在相对较大的表面积上有多个接触点。更重要的是,几种结合模式可能叠加在蛋白质内的单个序列上,而真正的小分子替代物必须针对这种多模式结合进行预编程。转录激活因子的转录激活结构域(TAD)就是这种情况,因为这些基序利用了特征不明确的多伙伴结合模式来刺激基因表达。在此,我们描述了一类独特的小分子,它们兼具功能且具有与天然转录激活结构域类似的结合模式。特别值得注意的是,这些小分子是首个被报道在天然激活因子所利用的位点与CREB结合蛋白(CBP)内的KIX结构域结合的分子。此外,对功能性和非功能性小分子的比较表明,与CBP的相互作用是转录活性的关键因素。综合来看,这些证据表明小分子TAD模拟了其天然对应物的功能和机制,从而为小分子转录开关的更广泛研发提供了一个框架。

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