Fluorescent Silver Nanoclusters Associated with Double-Stranded Poly(dGdC) DNA

被引:1
作者
Reveguk, Zakhar [1 ,2 ]
Improta, Roberto [3 ]
Martinez-Fernandez, Lara [4 ,5 ]
Ramazanov, Ruslan [6 ]
Richter, Shachar [1 ]
Kotlyar, Alexander [2 ]
机构
[1] Tel Aviv Univ, Univ Ctr Nanosci & Nanotechnol, Iby & Aladar Fleischman Fac Engn, Dept Mat Sci & Engn, IL-6997801 Tel Aviv, Israel
[2] Tel Aviv Univ, George S Wise Fac Life Sci, Dept Neurobiol, IL-6997801 Tel Aviv, Israel
[3] Ist Biostrutture & Bioimmagini CNR IBB CNR, Via Amicis 95, I-80145 Naples, Italy
[4] Univ Autonoma Madrid, Fac Ciencias, Dept Quim, Campus Excelencia UAM CSIC, Madrid 28049, Spain
[5] Univ Autonoma Madrid, Inst Adv Res Chem Sci IADCHEM, Cantoblanco, Campus Excelencia UAM CSIC, Madrid 28049, Spain
[6] Univ Helsinki, Dept Chem, FI-00014 Helsinki, Finland
基金
芬兰科学院; 以色列科学基金会;
关键词
DNA; silver nanoclusters; fluorescence; AFM; HRTEM; quantum mechanical calculations; MEDIATED BASE-PAIRS; DENSITY FUNCTIONALS; NUCLEIC-ACIDS; CLUSTERS; SPECTRA; ATOMS; SHAPE;
D O I
10.3390/nano15050397
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Here, we demonstrate through AFM imaging and CD spectroscopy that the binding of silver ions (Ag+) to poly(dGdC), a double-stranded (ds) DNA composed of two identical repeating strands, at a stoichiometry of one Ag+ per GC base pair induces a one-base shift of one strand relative to the other. This results in a ds nucleic acid-Ag+ conjugate consisting of alternating CC and GG base pairs coordinated by silver ions. The proposed organization of the conjugate is supported by the results of our Quantum Mechanical (QM) and Molecular Mechanics (MMs) calculations. The reduction of Ag+ ions followed by the partial oxidation of silver atoms yields a highly fluorescent conjugate emitting at 720 nm. This fluorescent behavior in conjugates of long, repetitive ds DNA (thousands of base pairs) with silver has never been demonstrated before. We propose that the poly(dGdC)-Ag conjugate functions as a dynamic system, comprising various small clusters embedded within the DNA and interacting with one another through energy transfer. This hypothesis is supported by the results of our QM and MMs calculations. Additionally, these DNA-silver conjugates, comprising silver nanoclusters, may possess conductive properties, making them potential candidates for use as nanowires in nanodevices and nanosensors.
引用
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页数:15
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