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受限的丹磺酰衍生物揭示了高度保守的胸苷酸合成酶的细菌特异性。

Constrained dansyl derivatives reveal bacterial specificity of highly conserved thymidylate synthases.

作者信息

Calò Sanuele, Tondi Donatella, Ferrari Stefania, Venturelli Alberto, Ghelli Stefano, Costi Maria Paola

机构信息

Dipartimento di Scienze Farmaceutiche, Università degli Studi di Modena e Reggio Emilia via Campi 183, 41100 Modena, Italy.

出版信息

Chembiochem. 2008 Mar 25;9(5):779-90. doi: 10.1002/cbic.200700524.

Abstract

The elucidation of the structural/functional specificities of highly conserved enzymes remains a challenging area of investigation, and enzymes involved in cellular replication are important targets for functional studies and drug discovery. Thymidylate synthase (TS, ThyA) governs the synthesis of thymidylate for use in DNA synthesis. The present study focused on Lactobacillus casei TS (LcTS) and Escherichia coli TS (EcTS), which exhibit 50 % sequence identity and strong folding similarity. We have successfully designed and validated a chemical model in which linear, but not constrained, dansyl derivatives specifically complement the LcTS active site. Conversely, chemically constrained dansyl derivatives showed up to 1000-fold improved affinity for EcTS relative to the inhibitory activity of linear derivatives. This study demonstrates that the accurate design of small ligands can uncover functional features of highly conserved enzymes.

摘要

阐明高度保守酶的结构/功能特异性仍是一个具有挑战性的研究领域,参与细胞复制的酶是功能研究和药物发现的重要靶点。胸苷酸合成酶(TS,ThyA)控制着用于DNA合成的胸苷酸的合成。本研究聚焦于干酪乳杆菌TS(LcTS)和大肠杆菌TS(EcTS),它们具有50%的序列同一性和很强的折叠相似性。我们成功设计并验证了一种化学模型,其中线性而非受限的丹磺酰衍生物特异性地补充LcTS活性位点。相反,化学受限的丹磺酰衍生物相对于线性衍生物的抑制活性,对EcTS的亲和力提高了多达1000倍。这项研究表明,小配体的精确设计可以揭示高度保守酶的功能特征。

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