Literature DB >> 25830864

Single Molecule Investigation of Glycine-Chlorite Interaction by Cross-Correlated Scanning Probe Microscopy and Quantum Mechanics Simulations.

Daniele Moro1, Gianfranco Ulian1, Giovanni Valdrè1.   

Abstract

In this work, we studied the interaction of glycine with the (001) surface of chlorite mineral at a single molecule level by cross-correlating scanning probe microscopy (SPM) and ab initio quantum mechanics (QM) investigations. Chlorite mineral is particularly interesting and peculiar for the interaction with organic molecules because it presents an alternated stacking of brucite-like (hydrophobic) and talc-like (hydrophilic) layers of different polarities. Brucite-like is positive, whereas talc-like is negative. The experimental atomic force microscopy (AFM) observations show that glycine is stably and selectively adsorbed on the brucite-like layer, organized in monolayers with different patterns. The sizes of single molecules of glycine measured by AFM are in agreement with those calculated by QM. Glycine molecules were found to align both at the edges and on the terraces of the brucitic surface. QM simulations confirmed the AFM observations that glycine molecule is adsorbed with high adsorption energy preferentially with its plane parallel to the (001) brucite-like surface. QM also provided the geometry conformation of the molecule and the bonding scheme between glycine and brucite surface. This kind of data can be very helpful both to biotechnological applications of this substrate and to depict some important processes that might have been occurred in prebiotic environments.

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Year:  2015        PMID: 25830864     DOI: 10.1021/acs.langmuir.5b00161

Source DB:  PubMed          Journal:  Langmuir        ISSN: 0743-7463            Impact factor:   3.882


  2 in total

1.  Anisotropy and directional elastic behavior data obtained from the second-order elastic constants of portlandite Ca(OH)2 and brucite Mg(OH)2.

Authors:  Gianfranco Ulian; Giovanni Valdrè
Journal:  Data Brief       Date:  2018-10-30

2.  Phosphorylated cofilin-2 is more prone to oxidative modifications on Cys39 and favors amyloid fibril formation.

Authors:  Marcello Pignataro; Giulia Di Rocco; Lidia Lancellotti; Fabrizio Bernini; Khaushik Subramanian; Elena Castellini; Carlo Augusto Bortolotti; Daniele Malferrari; Daniele Moro; Giovanni Valdrè; Marco Borsari; Federica Del Monte
Journal:  Redox Biol       Date:  2020-08-25       Impact factor: 11.799

  2 in total

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