The discovery of protein sequences belonging to the widespread 'truncated hemoglobin' family has been followed in the last few years by extensive analyses of their three- dimensional structures. Truncated hemoglobins can be classi. fied in three main groups, in light of their overall structural properties. The three groups adopt a 2- on- 2 alpha- helical sandwich fold, based on four main alpha-helices of the classical 3- on- 3 a- helical sandwich found in vertebrate and invertebrate globins. Each of the three groups displays sequence and structure specific features. Among these, a protein matrix tunnel system is typical of group I, a Trp residue at the G8 topological site is conserved in groups II and III, and residue TyrB10 is almost invariant in the three groups. Despite sequence variability in the heme distal site region, a strongly intertwined, but varied, network of hydrogen bonds stabilizes the heme ligand in the three protein groups. Fine mechanisms of ligand recognition and stabilization may vary based on groupspecific distal site residues and on diff. ering ligand diff. usion pathways to the heme. Taken together, the structural considerations here presented underline that ` truncated hemoglobins' result from careful editing of the 3- on- 3 a- helical globin sandwich fold, rather than from simple 'truncation' events. Thus, ` 2/ 2Hb' appears the most proper term to concisely address this protein family.

Protein structure in the truncated (2/2) hemoglobin family

Nardini M;Bolognesi M
2007

Abstract

The discovery of protein sequences belonging to the widespread 'truncated hemoglobin' family has been followed in the last few years by extensive analyses of their three- dimensional structures. Truncated hemoglobins can be classi. fied in three main groups, in light of their overall structural properties. The three groups adopt a 2- on- 2 alpha- helical sandwich fold, based on four main alpha-helices of the classical 3- on- 3 a- helical sandwich found in vertebrate and invertebrate globins. Each of the three groups displays sequence and structure specific features. Among these, a protein matrix tunnel system is typical of group I, a Trp residue at the G8 topological site is conserved in groups II and III, and residue TyrB10 is almost invariant in the three groups. Despite sequence variability in the heme distal site region, a strongly intertwined, but varied, network of hydrogen bonds stabilizes the heme ligand in the three protein groups. Fine mechanisms of ligand recognition and stabilization may vary based on groupspecific distal site residues and on diff. ering ligand diff. usion pathways to the heme. Taken together, the structural considerations here presented underline that ` truncated hemoglobins' result from careful editing of the 3- on- 3 a- helical globin sandwich fold, rather than from simple 'truncation' events. Thus, ` 2/ 2Hb' appears the most proper term to concisely address this protein family.
2007
INFM
MYCOBACTERIUM-TUBERCULOSIS HEMOGLOBIN
PATHOGEN CAMPYLOBACTER-JEJUNI
SYNECHOCYSTIS SP PCC-6803
LIGAND-BINDING PROPERTIES
VERTEBRATE GLOBIN FAMILY
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/123276
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