School of Chemistry, University of Leeds, Leeds LS2 9JT, UK.
Bioorg Med Chem Lett. 2012 Jan 1;22(1):278-84. doi: 10.1016/j.bmcl.2011.11.017. Epub 2011 Nov 11.
In optimal cases, bivalent ligands can bind with exceptionally high affinity to their protein targets. However, designing optimised linkers, that orient the two binding groups perfectly, is challenging, and yet crucial in both fragment-based ligand design and in the discovery of bisubstrate enzyme inhibitors. To further our understanding of linker design, a series of novel bivalent S-adenosylmethionine (SAM) analogues were designed with the aim of interacting with the MetJ dimer in a bivalent sense (1:1 ligand/MetJ dimer). A range of ligands was synthesised and analyzed for ability to promote binding of the Escherichia coli methionine repressor, MetJ, to its operator DNA. Binding of bivalent SAM analogues to the MetJ homodimer in the presence of operator DNA was evaluated by fluorescence anisotropy and the effect of linker length and structure was investigated. The most effective bivalent ligand identified had a flexible linker, and promoted the DNA-protein interaction at 21-times lower concentration than the corresponding monovalent control compound.
在理想情况下,双价配体可以与蛋白质靶标具有极高的亲和力结合。然而,设计优化的连接子,使其完美地定向两个结合基团,是具有挑战性的,在片段基配体设计和双底物酶抑制剂的发现中至关重要。为了进一步了解连接子设计,设计了一系列新型的双价 S-腺苷甲硫氨酸 (SAM) 类似物,旨在以双价的方式与 MetJ 二聚体相互作用(1:1 配体/MetJ 二聚体)。合成了一系列配体,并分析了它们促进大肠杆菌甲硫氨酸阻遏物 MetJ 与其操纵子 DNA 结合的能力。通过荧光各向异性评估了双价 SAM 类似物在存在操纵子 DNA 的情况下与 MetJ 同源二聚体的结合,并且研究了连接子长度和结构的影响。鉴定出的最有效的双价配体具有柔性连接子,并且以比相应的单价对照化合物低 21 倍的浓度促进 DNA-蛋白相互作用。