Verde C., Carratore V., Riccio A., Tamburrini M., Parisi E., di Prisco G.
CNR
The Arctic fish Anarhichas minor, a benthic sedentary species, displays high emoglobin multiplicity. The three major hemoglobins (Hb 1, Hb 2, and Hb 3) show important functional differences in pH and organophosphate regulation, subunit cooperativity, and response of oxygen binding to temperature. Hb 1 and Hb 2 display a low, effector-enhanced Bohr effect and no Root effect. In contrast, Hb 3 displays pronounced Bohr and Root effects, accompanied by strong organophosphate regulation. Hb 1 has the beta (beta(1)) chain in common with Hb 2; Hb 3 and Hb 2 share the alpha (alpha(2)) chain. The amino acid sequences have been established. Several substitutions in crucial positions were observed, such as Cys in place of C-terminal His in the beta(1) chain of Hb 1 and Hb 2. In Hb 3, Val E11 of the beta(2) chain is replaced by Ile. Homology modeling revealed an unusual structure of the Hb 3 binding site of inositol hexakisphoshate. Phylogenetic analysis indicated that only Hb 2 displays higher overall similarity with the major Antarctic hemoglobins. The oxygen transport system of A. minor differs remarkably from those of Antarctic Notothenioidei, indicating distinct evolutionary pathways in the regulatory mechanisms of the fish respiratory system in the two polar environments.
Evoluzione, Emoglobina, Artico, Antartide, Effetto Bohr/Root
Di Prisco Guido, Verde Vincenza, Parisi Elio, Tamburrini Maurizio, Carratore Vitale
ID: 8616
Year: 2002
Type: Articolo in rivista
Creation: 2009-06-16 00:00:00.000
Last update: 2009-06-16 00:00:00.000
CNR institutes
External IDs
CNR OAI-PMH: oai:it.cnr:prodotti:8616