Neissa J, Pérez-Arnaiz C, Porto V, Busto N, Borrajo E, Leal J M, López-Quintela M A, García B, Dominguez F
Department of Physiology and Centro de Investigaciones en Medicina Molecular y Enfermedades Crónicas (CIMUS) , University of Santiago de Compostela , E-15782 Santiago de Compostela , Spain . Email:
Department of Chemistry , University of Burgos , E-9001 Burgos , Spain . Email:
Chem Sci. 2015 Dec 1;6(12):6717-6724. doi: 10.1039/c5sc02022k. Epub 2015 Jul 14.
Essential processes for living cells such as transcription and replication depend on the formation of specific protein-DNA recognition complexes. Proper formation of such complexes requires suitable fitting between the protein surface and the DNA surface. By adopting doxorubicin (DOX) as a model probe, we report here that Ag atomic quantum clusters (Ag-AQCs) inhibit the intercalation of DOX into DNA and have considerable influence on the interaction of DNA-binding proteins such as topoisomerase IV, DNA gyrase and the restriction enzyme HindIII. Ag-AQCs at nanomolar concentrations inhibit enzyme activity. The inhibitory effect of Ag-AQCs is dose-dependent and occurs by intercalation into DNA. All these effects, not observed in the presence of Ag ions, can explain the powerful bactericidal activity of Ag-AQCs, extending the knowledge of silver bactericidal properties. Lastly, we highlight the interest of the interaction of Ag clusters with living organisms, an area that should be further explored due to the potential consequences that it might have, both beneficial and harmful.
诸如转录和复制等活细胞的基本过程依赖于特定蛋白质 - DNA识别复合物的形成。此类复合物的正确形成需要蛋白质表面与DNA表面之间的合适契合。通过采用阿霉素(DOX)作为模型探针,我们在此报告银原子量子簇(Ag - AQC)抑制DOX嵌入DNA,并对诸如拓扑异构酶IV、DNA促旋酶和限制性内切酶HindIII等DNA结合蛋白的相互作用有相当大的影响。纳摩尔浓度的Ag - AQC会抑制酶活性。Ag - AQC的抑制作用呈剂量依赖性,并且是通过嵌入DNA而发生的。所有这些在银离子存在时未观察到的效应,可以解释Ag - AQC强大的杀菌活性,扩展了对银杀菌特性的认识。最后,我们强调了Ag簇与活生物体相互作用的重要性,鉴于其可能产生的有益和有害潜在后果,这一领域应进一步探索。