Department of Chemistry, The University of Manchester, Manchester M13 9PT, UK.
Manchester Institute of Biotechnology, The University of Manchester, 131 Princess St, Manchester M1 7DN, UK.
Mar Drugs. 2020 Nov 23;18(11):582. doi: 10.3390/md18110582.
It is known that at least some fluorophores can act as 'surrogate' substrates for solute carriers (SLCs) involved in pharmaceutical drug uptake, and this promiscuity is taken to reflect at least a certain structural similarity. As part of a comprehensive study seeking the 'natural' substrates of 'orphan' transporters that also serve to take up pharmaceutical drugs into cells, we have noted that many drugs bear structural similarities to natural products. A cursory inspection of common fluorophores indicates that they too are surprisingly 'drug-like', and they also enter at least some cells. Some are also known to be substrates of efflux transporters. Consequently, we sought to assess the structural similarity of common fluorophores to marketed drugs, endogenous mammalian metabolites, and natural products. We used a set of some 150 fluorophores along with standard fingerprinting methods and the Tanimoto similarity metric. Results: The great majority of fluorophores tested exhibited significant similarity (Tanimoto similarity > 0.75) to at least one drug, as judged via descriptor properties (especially their aromaticity, for identifiable reasons that we explain), by molecular fingerprints, by visual inspection, and via the "quantitative estimate of drug likeness" technique. It is concluded that this set of fluorophores does overlap with a significant part of both the drug space and natural products space. Consequently, fluorophores do indeed offer a much wider opportunity than had possibly been realised to be used as surrogate uptake molecules in the competitive or trans-stimulation assay of membrane transporter activities.
已知至少有一些荧光团可以作为涉及药物摄取的溶质载体(SLC)的“替代”底物,这种混杂性被认为至少反映了一定的结构相似性。作为一项全面研究的一部分,该研究旨在寻找“孤儿”转运体的“天然”底物,这些转运体也将药物摄取到细胞中,我们注意到许多药物与天然产物具有结构相似性。对常见荧光团的粗略检查表明,它们也非常“类似药物”,并且它们也至少进入一些细胞。有些也已知是外排转运体的底物。因此,我们试图评估常见荧光团与市售药物、内源性哺乳动物代谢物和天然产物的结构相似性。我们使用了大约 150 种荧光团以及标准指纹方法和 Tanimoto 相似性度量。结果:大多数测试的荧光团都表现出与至少一种药物的显著相似性(Tanimoto 相似性>0.75),这是通过描述符性质(特别是其芳香性来判断的,我们解释了其中的一些原因)、分子指纹、视觉检查以及“药物相似性的定量估计”技术来判断的。结论是,这组荧光团确实与药物空间和天然产物空间的很大一部分重叠。因此,荧光团确实提供了比人们可能意识到的更广泛的机会,可以作为竞争性或跨刺激膜转运体活性测定中的替代摄取分子。