Protein and Gene Structure of a Chlorocruorin Chain of Eudistylia vancouverii

The polychaete annelid, Eudistylia vancouverii, contains as oxygen carrier a hexagonal bilayer (HBL) chlorocruorin. One of the globin chains, chain a1, has 142 amino acids (Mr 16,054.99) and its sequence deviates strongly from other nonvertebrate globin sequences. Unprecedented, it displays a Phe at...

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Published in:Biochemical and biophysical research communications Vol. 281; no. 1; pp. 18 - 24
Main Authors: Dewilde, Sylvia, Van Hauwaert, Marie-Louise, Vinogradov, Serge, Vierstraete, Andy, Vanfleteren, Jacques, Moens, Luc
Format: Journal Article
Language:English
Published: United States Elsevier Inc 16-02-2001
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Summary:The polychaete annelid, Eudistylia vancouverii, contains as oxygen carrier a hexagonal bilayer (HBL) chlorocruorin. One of the globin chains, chain a1, has 142 amino acids (Mr 16,054.99) and its sequence deviates strongly from other nonvertebrate globin sequences. Unprecedented, it displays a Phe at the distal position E7 as well as at position B10, creating a very hydrophobic heme pocket probably responsible for the low oxygen affinity of the native molecule. Phylogenetic analysis of annelid globin chains clearly proves that globin chain a1 belongs to type I of globin chains having a pattern of 3 cysteine residues essential for the aggregation into a HBL structure. The gene coding for globin chain a1 is interrupted by 2 introns at the conserved positions B12.2 and G7.0. Based on protein and gene structure it can therefore be concluded that the globin chains of chlorocruorins are not fundamentally different from other annelid globin chains.
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ISSN:0006-291X
1090-2104
DOI:10.1006/bbrc.2001.4284