Aatto Laaksonen
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Aatto Laaksonen is a Professor at Stockholm University in Sweden. His research focuses on the modeling of NMR spectra for ionic liquids, biosensing technologies, and the molecular interactions of ionic liquids with gold electrodes. He has contributed to recent studies on the solubility of pharmaceuticals in ionic liquid solutions and has explored electrostatic features of SARS-CoV-2 variants.
Recent Grants
Grant: Close
Modeling hard, porous, soft and biological materials - across spatial and temporal scales: from first-principles to finite elements.
Open Date: 2014-01-01
Close Date: 2017-12-31
Grant: Close
Biomodeling across spatial and temporal scales
Open Date: 2011-01-01
Close Date: 2013-12-31
Articles (18)
Unusual bending patterns of spermidine3+ bound to DNA double helix
Natural polyamines play a fundamental role in the cell cycle. Despite being recognized as the most abundant organic counterions of DNA in the cell nucleus, their interactions with DNA have not been fully characterized. In a recent work [S. Perepelytsya, T. Vasiliu, A. Laaksonen, L. Engelbrecht, G. Brancato, and F. Mocci, J. Molec. Liq.389, 122828 (2023)], we have shown how the interactions between spermidine3+ and the DNA double helix induce significant conformational variations in the polyamine molecule. Specifically, we found that DNA induces conformations that are not observed in solution. Following that study, we present here a detailed investigation of the most compact conformation of the polyamine, analyzing its connection to the interaction with the DNA duplex. The analysis reveals that anomalous bent conformations of the spermidine3+ molecule result from the interaction of all three amino groups of the polyamine with the DNA phosphate groups on the minor groove side of the double helix. The changes in dihedral angles of the bent spermidine3+ molecule can be explained in terms of conformational transformations of six- and seven-membered rings, analogous to cyclohexane and cycloheptane. The analysis of the position of spermidine3+ molecule along the DNA surface reveals a sequence specificity of this binding mode with a marked preference for the narrow minor groove of A-tracts. The formation of the anomalous bent conformations of spermidine3+ in the complex with the DNA double helix is expected to be of paramount importance in understanding the mechanisms underlying DNA’s biological function.
Year:
2024
Collaborators (5)
Luigi Stagi
University of Sassari
Francesca Mocci
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CARLO MARIA CARBONARO
Associate Professor
University of Cagliari
CLAUDIO MELIS
Assistant professor
University of Cagliari
Faiz Ullah Shah
Associate Professor
Luleå tekniska universitet

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