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April 1, 20260 citationsOpen Access

Purification, characterization and sequence analyses of the extracellular giant hemoglobin from Oligobrachia mashikoi

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TNTaro NakagawaSOSeiko OnodaMKMasaaki Kanemori

Key Points

  • The research aims to purify and characterize a giant hemoglobin from Oligobrachia mashikoi and analyze its molecular features.
  • Purified hemoglobin using one-step gel-filtration
  • Measured P50 values and cooperativity (n values)
  • Separated globin chains using tricine SDS-PAGE
  • Cloned and sequenced cDNA of B1 globin and other globin genes
  • Constructed phylogenetic trees for hemoglobins from Pogonophora and related taxa
  • Purified hemoglobin had a molecular mass of approximately 440 kDa
  • P50 values were significantly lower than human hemoglobin
  • Identified four types of globin chains: A1, A2, B1, and B2
  • Cloned and sequenced complete cDNA for B1 globin and full-length sequenced A1, A2, B2 globin genes
  • Produced phylogenetic trees showing relationships among hemoglobins of Pogonophora, Vestimentifera, and Annelida

Abstract

We purified an extracellular hemoglobin with the molecular mass of ca. 440 kDa from the whole homogenates of Oligobrachia mashikoi (phylum Pogonophora) by a one-step gel-filtration. The preparation was pure to be crystallized. The P50 values of the hemoglobin and the fresh blood prepared from O. mashikoi were about 0.82 Torr and 0.9 Torr, respectively, which were much lower than the P50 value of human hemoglobin. However, the n values of the hemoglobin and the blood were about 1.2 and 1.1, respectively. Using the improved tricine SDS-PAGE, we could separate O. mashikoi hemoglobin into four kinds of the globin chains, A1, A2, B1 and B2, and succeeded for the first time in cloning and sequencing of the complete cDNA encoding B1 globin gene, in addition to A1, A2 and B2 globin genes in full length. We found that all globin genes have the extracellular signal sequences in each molecule and the distal His of the B1 globin chain is replaced to Gln. Finally, we constructed phylogenetic trees of the hemoglobins from Pogonophora, Vestimentifera and Annelida. © 2005 Zoological Society of Japan.

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Cite This Study

Nakagawa et al. (2005) studied this question.

synapsesocial.com/papers/69cd7ae65652765b073a867chttps://doi.org/10.24517/00010214
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