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« Previous AbstractMid-IR evanescent-field fiber sensor with enhanced sensitivity for volatile organic compounds    Next Abstract"Isolation and structural characterization of two water-borne pheromones from Euplotes crassus, a ciliate commonly known to carry membrane-bound pheromones" »

IUBMB Life


Title:"Molecular cold-adaptation: comparative analysis of two homologous families of psychrophilic and mesophilic signal proteins of the protozoan ciliate, Euplotes"
Author(s):Alimenti C; Vallesi A; Pedrini B; Wuthrich K; Luporini P;
Address:"Dipartimento di Biologia Molecolare Cellulare e Animale, University of Camerino, Camerino (MC), Italy"
Journal Title:IUBMB Life
Year:2009
Volume:61
Issue:8
Page Number:838 - 845
DOI: 10.1002/iub.228
ISSN/ISBN:1521-6551 (Electronic) 1521-6543 (Linking)
Abstract:"Unique opportunities are provided by phylogenetically closely related organisms thriving in stably cold, or temperate milieus to study adaptive modifications of structurally homologous molecules. These modifications are of keen interest in basic science as well as in biotechnology. This review highlights structural and functional specificities that differentiate two homologous families of psychrophilic and mesophilic water-borne proteins (designated as pheromones) that signal mitotic growth and sexual mating in two marine species of the protozoan ciliate Euplotes, i.e., E. nobilii, which is distributed in Antarctic and Arctic waters, and E. raikovi, which inhabits temperate waters. The two protein families show strict conservation of a common three-helix bundle in a compact core of the molecular structure, which provides long-lasting integrity and biological activity to these molecules in their natural environment. In the psychrophilic pheromone family, cold-adaptation appears to have been achieved by superimposing an integrated complex of structural modifications on this conserved scaffold. Functionally most relevant appear to be extensions of polypeptide segments devoid of regular secondary structures, a specific distribution of polar and hydrophobic amino acids, the presence of solvent-exposed clusters of negatively charged amino acid side chains, and a unique role of aromatic residues in anchoring the molecular architecture. Due to these modifications, the psychrophilic pheromones are an example of an elegant combination of high stability of the three-dimensional structures with sufficient structural plasticity for efficient functioning at their physiologically low temperatures"
Keywords:"Adaptation, Biological/*physiology Amino Acid Sequence Animals Base Sequence *Cold Temperature Euplotes/*chemistry *Models, Molecular Molecular Sequence Data Pheromones/*chemistry/genetics *Protein Conformation Sequence Alignment Sequence Analysis, DNA;"
Notes:"MedlineAlimenti, Claudio Vallesi, Adriana Pedrini, Bill Wuthrich, Kurt Luporini, Pierangelo eng Research Support, Non-U.S. Gov't Review England 2009/07/22 IUBMB Life. 2009 Aug; 61(8):838-45. doi: 10.1002/iub.228"

 
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Citation: El-Sayed AM 2024. The Pherobase: Database of Pheromones and Semiochemicals. <http://www.pherobase.com>.
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