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"Metallomics and the Cell" provides in an authoritative and timely
manner in 16 stimulating chapters, written by 37 internationally
recognized experts from 9 nations, and supported by more than 3000
references, several tables, and 110 illustrations, mostly in color,
a most up-to-date view of the "metallomes" which, as defined in the
"omics" world, describe the entire set of biomolecules that
interact with or are affected by each metal ion. The most relevant
tools for visualizing metal ions in the cell and the most suitable
bioinformatic tools for browsing genomes to identify metal-binding
proteins are also presented. Thus, MILS-12 is of relevance for
structural and systems biology, inorganic biological chemistry,
genetics, medicine, diagnostics, as well as teaching, etc.
Metallomics and the Cell provides in an authoritative and timely
manner in 16 stimulating chapters, written by 37 internationally
recognized experts from 9 nations, and supported by more than 3000
references, several tables, and 110 illustrations, mostly in color,
a most up-to-date view of the "metallomes" which, as defined in the
"omics" world, describe the entire set of biomolecules that
interact with or are affected by each metal ion. The most relevant
tools for visualizing metal ions in the cell and the most suitable
bioinformatic tools for browsing genomes to identify metal-binding
proteins are also presented. Thus, MILS-12 is of relevance for
structural and systems biology, inorganic biological chemistry,
genetics, medicine, diagnostics, as well as teaching, etc.
A unique selection of papers on the most recent progress in the
modelling of biological molecules containing metal ions. New
approaches and techniques in this field are allowing researchers to
discuss structures, electronic properties and reaction mechanisms
of metalloproteins on the basis of computational studies. The book
discusses different approaches in the development of new force
fields and their application to the computation of the structures,
electronic properties and dynamics of bioinorganic compounds as
well as quantum mechanical and integrated QM/MM methods for
understanding the function of metalloenzymes and the calculation of
electrostatic interactions.
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