Bag Seema, Tulsan Rekha, Sood Abha, Datta Silpi, Török Marianna
Department of Chemistry, University of Massachusetts Boston, 100 Morrissey Blvd., Boston, MA 02125, USA.
Curr Comput Aided Drug Des. 2013 Mar;9(1):2-14.
One of the most promising methods of unveiling the pharmacology of marketed drugs is to screen them against new biological targets. In an attempt to find inhibitors for acetylcholinesterase (AChE), the Drug Bank Database and natural alkaloids with other known medicinal values were screened through a four-point pharmacophore built in this study. The development of the pharmacophore was based on a structurally diverse set of reported AChE inhibitors and was validated using a separate set of known inhibitors. The developed pharmacophore indicated that the presence of one H-acceptor motif, one H-donor motif, one positively charged group and one aromatic ring is needed for AChE inhibition. Selected hits were further investigated by molecular docking and in vitro testing. The assays revealed that the majority of these compounds showed reasonable inhibition, indicating that the developed pharmacophore can indeed reliably screen molecules for potential AChE inhibitors. It appears that several commercially available marketed drugs have further potential as AChE inhibitors. To extend our study the same compounds have been tested in the fibrillogenesis inhibition of amyloidβ (Aβ) peptide to explore the possibility of their dual-function therapeutic activity in Alzheimer's disease.
揭示上市药物药理学的最有前景的方法之一是针对新的生物学靶点对其进行筛选。为了寻找乙酰胆碱酯酶(AChE)抑制剂,利用本研究构建的四点药效团对药物银行数据库和具有其他已知药用价值的天然生物碱进行了筛选。药效团的开发基于一组结构多样的已报道的AChE抑制剂,并使用另一组已知抑制剂进行了验证。所开发的药效团表明,AChE抑制需要一个氢受体基序、一个氢供体基序、一个带正电荷的基团和一个芳香环。通过分子对接和体外试验对筛选出的命中化合物进行了进一步研究。分析表明,这些化合物中的大多数表现出合理的抑制作用,表明所开发的药效团确实能够可靠地筛选出潜在的AChE抑制剂分子。似乎有几种市售药物具有作为AChE抑制剂的进一步潜力。为了扩展我们的研究,已对相同的化合物进行了淀粉样β(Aβ)肽纤维生成抑制试验,以探索它们在阿尔茨海默病中具有双功能治疗活性的可能性。