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Published on: May 12, 2023
Unraveling the Effects of Purine- and Pyrimidine-Based Ionic Liquids on G-Quadruplex
Dipayan Sarder1, Sanjoy Bandyopadhyay1
1Molecular Modeling Laboratory, Department of Chemistry, Indian Institute of Technology Kharagpur, Kharagpur 721302, India.
Abstract:
Formation of G-quadruplex (GQ) at the termini of the chromosomes found in cancer cells is known to inhibit telomere elongation and hence cell growth. As a consequence, GQ has been identified as a potential target for tumor-suppressing drugs. In recent times, aqueous ionic liquid (IL) solutions have been used as storage media for GQ samples. Hence, it is important and essential to obtain molecular-level insights into the interaction mechanism between GQ and IL components. In this work, we have performed molecular dynamics (MD) simulations of c-kit promoter GQ in aqueous solutions of nucleobase ionic liquids (NBILs) containing 1-ethyl-3-methylimidazolium (Emim+) cations in combination with purine-based adenine (Ade-) and guanine (Gua-) anions, and pyrimidine-based thymine (Thy-) and uracil (Ura-) anions. The calculations revealed contrasting effects of purine and pyrimidine-based ILs on the conformational flexibilities of the GQ. Importantly, greater influence of the pyrimidine-based ILs on the structural integrity of the GQ has been found to be associated with relatively higher propensity of the Emim+ cations to replace water molecules that are not directly bound at the GQ surface in the presence of Thy- and Ura- anions as compared to that in the presence of Ade- and Gua-. It is further observed that in addition to the negatively charged GQ backbone, the Emim+ cations also exhibit strong favorable interaction with the GQ nucleobases due to preferential parallel stacked arrangements between the cation imidazolium rings and the nucleobases. Our analyses suggest that aqueous IL solutions containing purine-based anions can act as good media for the preservation of GQs.
Insights
Ionic liquids with purine anions effectively preserve G-quadruplex (GQ) structures, crucial for cancer drug development. Pyrimidine-based ionic liquids, however, destabilize these important DNA structures.
Area of Science:
- Biochemistry
- Computational Chemistry
- Drug Discovery
Background:
- G-quadruplex (GQ) structures at chromosome ends inhibit cancer cell growth.
- G-quadruplexes are potential targets for anti-cancer drugs.
- Aqueous ionic liquids (ILs) are increasingly used for G-quadruplex storage.
Purpose of the Study:
- To investigate the molecular interactions between G-quadruplexes and aqueous nucleobase ionic liquids (NBILs).
- To understand how different IL components affect G-quadruplex stability and flexibility.
- To identify optimal IL conditions for preserving G-quadruplex structures.
Main Methods:
- Molecular dynamics (MD) simulations were performed on c-kit promoter G-quadruplex.
- Simulations used aqueous solutions of 1-ethyl-3-methylimidazolium (Emim+) cations with purine (Ade-, Gua-) and pyrimidine (Thy-, Ura-) based anions.
- Analysis focused on G-quadruplex conformational flexibility, structural integrity, and cation-nucleobase interactions.
Main Results:
- Purine- and pyrimidine-based ILs exhibited contrasting effects on G-quadruplex flexibility.
- Pyrimidine-based ILs (Thy-, Ura-) showed greater influence on structural integrity compared to purine-based ILs (Ade-, Gua-).
- Emim+ cations preferentially replaced water and interacted favorably with G-quadruplex nucleobases, especially in the presence of pyrimidine anions.
Conclusions:
- Aqueous IL solutions containing purine-based anions are suitable for preserving G-quadruplex structures.
- Understanding IL-G-quadruplex interactions is crucial for developing G-quadruplex-targeting cancer therapies.
- The choice of IL anion significantly impacts G-quadruplex stability.
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