Supramolecular polymer formation by cyclic dinucleotides and intercalators affects dinucleotide enzymatic processing

Author:

Nakayama Shizuka1,Zhou Jie12,Zheng Yue12,Szmacinski Henryk3,Sintim Herman O12

Affiliation:

1. Department of Chemistry & Biochemistry, University of Maryland, College Park, MD 20742, USA

2. Department of Chemistry, Purdue University, 560 Oval Drive, West Lafayette, IN 47907, USA

3. Department of Biochemistry & Molecular Biology, Center for Fluorescence Spectroscopy, University of Maryland School of Medicine, 725 West Lombard St, Baltimore, MD 21201, USA

Abstract

Background: Cyclic dinucleotides form supramolecular aggregates with intercalators, and this property could be utilized in nanotechnology and medicine. Methods & results: Atomic force microscopy and electrophoretic mobility shift assays were used to show that cyclic diguanylic acid (c-di-GMP) forms G-wires in the presence of intercalators. The average fluorescence lifetime of thiazole orange, when bound to c-di-GMP was greater than when bound to DNA G-quadruplexes or dsDNA. The stability of c-di-GMP supramolecular polymers is dependent on both the nature of the cation present and the intercalator. C-di-GMP or cyclic diadenylic acid/intercalator complexes are more resistant to cleavage by YybT, a phosphodiesterase, than the uncomplexed nucleotides. Conclusion: Cleavage of bacterial cyclic dinucleotides could be slowed down via complexation with small molecules and that this could be utilized for diverse applications in nanotechnology and medicine.

Publisher

Future Science Ltd

Subject

Biotechnology

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