Data di Pubblicazione:
2018
Abstract:
Proteins have coevolved with cellular environments to improve or preserve their functions, maintaining
at the same time the degree of hydrophobicity necessary to fold correctly and enough solubility
to perform their biological roles. Here, we study the Escherichia coli proteome using a Pareto front
analysis in the solubility-hydrophobicity space. The results indicate the existence of a Pareto optimal
front, a triangle whose vertices correspond to archetypal proteins specialized in distinct tasks, such as
regulatory processes, membrane transport, outer-membrane pore formation, catalysis, and binding.
The vertices are further enriched with proteins that occupy different subcellular compartments, namely,
cytoplasmic, inner membrane, outer membrane, and outer membrane bounded periplasmic space.
The combination of various enriching features offers an interpretation of how bacteria use the physicochemical
properties of proteins, both to drive them into their final destination in the cell and to have
their tasks accomplished.
Tipologia CRIS:
03A-Articolo su Rivista
Keywords:
Multidisciplinary
Elenco autori:
Koçillari, Loren; Fariselli, Piero; Trovato, Antonio; Seno, Flavio; Maritan, Amos
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