The Gymnothorax unicolor hemoglobin system is characterized by two components, called cathodic and anodic on the basis of their isoelectric point, which were separated by ion-exchange chromatography. The oxygen-binding properties of the purified components were studied in the absence and presence of chloride and/or GTP or ATP in the pH range 6.5-8.0. Stripped cathodic hemoglobin showed a small reverse Bohr effect, high oxygen affinity, and low co-operativity; the addition of chloride only caused a small decrease in oxygen affinity. In the presence of GTP or ATP, the oxygen affinity was dramatically reduced, the co-operativity increased, and the reverse Bohr effect abolished. Stripped anodic hemoglobin is characterized by both low oxygen affinity and co-operativity, and displayed a normal Bohr effect; the addition of chloride increased co-operativity, whereas ATP and GTP significantly modulated oxygen affinity at acidic pH values, enhancing the Bohr effect and giving rise to the Root effect. The complete amino-acid sequences of the alpha and beta chains of both hemoglobins were established; the molecular basis of the functional properties of the hemoglobins is discussed in the light of the primary structure and compared with those of other fish hemoglobins.

The hemoglobin system of the brown moray Gymnothorax unicolor. Structure/function relationships.

Tamburrini M;Verde C;di Prisco G;
2001

Abstract

The Gymnothorax unicolor hemoglobin system is characterized by two components, called cathodic and anodic on the basis of their isoelectric point, which were separated by ion-exchange chromatography. The oxygen-binding properties of the purified components were studied in the absence and presence of chloride and/or GTP or ATP in the pH range 6.5-8.0. Stripped cathodic hemoglobin showed a small reverse Bohr effect, high oxygen affinity, and low co-operativity; the addition of chloride only caused a small decrease in oxygen affinity. In the presence of GTP or ATP, the oxygen affinity was dramatically reduced, the co-operativity increased, and the reverse Bohr effect abolished. Stripped anodic hemoglobin is characterized by both low oxygen affinity and co-operativity, and displayed a normal Bohr effect; the addition of chloride increased co-operativity, whereas ATP and GTP significantly modulated oxygen affinity at acidic pH values, enhancing the Bohr effect and giving rise to the Root effect. The complete amino-acid sequences of the alpha and beta chains of both hemoglobins were established; the molecular basis of the functional properties of the hemoglobins is discussed in the light of the primary structure and compared with those of other fish hemoglobins.
2001
Istituto di Biochimica delle Proteine - IBP - Sede Napoli
268
4104
4111
Pesce
Emoglobina
Struttura
Funzione
Effetto Bohr/Root
Questo lavoro ha sicuramente dato un notevole contributo alla conoscenza che possediamo della struttura e della funzione dell’emoglobina e dei suoi meccanismi di regolazione. L’emoglobina è una proteina regolata allostericamente ( da organofosfati, pH e cloruri) che in molti pesci presenta un forte effetto Bohr e Root. Sebbene sia stata determinata la struttura cristallografica di alcune proteine con effetto Root il meccanismo molecolare alla base di questa proprietà è ancora sconosciuto. La pubblicazione di lavori in cui sono delucidate alcune proprietà strutturali e funzionali di emoglobine con effetto Root, costituiscono un grande valore di cui l’intera comunità scientifica può avvalersi per la comprensione di questo meccanismo e più in generale della regolazione allosterica. Impact Factor 2.849
10
info:eu-repo/semantics/article
262
Tamburrini, M; Verde, C; Olianas, A; Giardina, B; Corda, M; Sanna, Mt; Fais, A; Deiana, Am; di Prisco, G; Pellegrini, M
01 Contributo su Rivista::01.01 Articolo in rivista
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/122372
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