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Vangelis Daskalakis

Publications and source records attributed to Vangelis Daskalakis.

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Time-Dependent Atomistic Simulations of the CP29 Light-Harvesting Complex

Light harvesting as the first step in photosynthesis is of prime importance for life on earth. For a theoretical description of photochemical processes during light harvesting, spectral densities are key quantities. They serve as input functions for modeling the excitation energy transfer dynamics and spectroscopic properties. Herein, a recently developed procedure is applied to determine the spectral densities of the pigments in the minor antenna complex CP29 of photosystem II which has recently gained attention because of its active role in non-photochemical quenching processes in higher plants. To this end, the density functional based tight binding (DFTB) method has been employed to enable simulation of the ground state dynamics in a quantum-mechanics/molecular mechanics (QM/MM) scheme for each chlorophyll pigment. Subsequently, the time-dependent extension of the long-range corrected DFTB approach has been used to obtain the excitation energy fluctuations along the ground-state trajectories also in a QM/MM setting. From these results the spectral densities have been determined and compared for different force fields and to spectral densities from other light-harvesting complexes. In addition, the excitation energy transfer in the CP29 complex has been studied using ensemble-average wave packet dynamics.

physics.chem-ph

The natural polyphenol fortunellin and its structural analogs are inhibitors of the SARS-CoV-2 main proteinase dimerization, as revealed by molecular simulation studies

3CL-Pro (or M-Pro) is the SARS-CoV-2 main protease, acting as a homodimer, is responsible for the cleavage of the large polyprotein 1ab transcript in proteins acting on viral growth and replication. 3CL-Pro has been one of the most studied SARS-CoV-2 proteins and the subject of therapeutic interventions, targeting its catalytic domain. A number of drug candidates have been reported, including some natural products. Here, we investigated in silico, through binding and molecular dynamics simulations, the natural product space for the identification of candidates of 3CL-Pro dimerization inhibitors. We report that fortunellin (acacetin 7-O-neohesperidoside), a natural flavonoid O-glycoside, is a potent inhibitor of 3CL-Pro dimerization. A search of the ZINC natural products database identified another 16 related molecules, including apilin and rhoifolin, with interesting pharmacological properties. We propose that fortunellin and its structural analogs might be the basis of novel pharmaceuticals and dietary supplements against SARS-CoV-2 induced COVID-19 disease.

q-bio.BM