4.0 Article

Hct-A Is a New Actinoporin Family from the Heteractis Crispa Sea Anemone

Journal

ACTA NATURAE
Volume 6, Issue 4, Pages 89-98

Publisher

RUSSIAN FEDERATION AGENCY SCIENCE & INNOVATION
DOI: 10.32607/20758251-2014-6-4-89-98

Keywords

sea anemone; actinoporins; hemolytic activity; lipid membrane conductivity; structural and functional analysis

Funding

  1. Far Eastern Branch of the Russian Academy of Sciences
  2. Russian Science Foundation [14-25-00037]
  3. Russian Science Foundation [14-25-00037] Funding Source: Russian Science Foundation

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Several new actinoporin isoforms with molecular weights of 18995.5 to 19398.7 Da exhibiting a high hemolytic activity were isolated from the tropical sea anemone Heteractis crispa using a combination of liquid chromatography techniques. The actinoporins were demonstrated to occur as mono-, di-, and trimers in aqueous solutions. The sequences of the genes encoding actinoporins were identified, and the amino acid sequences of the new polypeptides belonging to the Hct-A actinoporin family were obtained. The new acinoporins differ in their isoelectric points, the number and localization of charged amino acid residues at the functionally important N-terminal fragment of the molecule, as well as in the charge of a tetrapeptide (amino acid residues 74-77) involved in an electrostatic interaction with the cytoplasmic membrane. A recombinant actinoporin, rHct-A2, with a molecular weight of 19141 Da, pI of 9.64, and hemolytic activity of 4.0 X 10(4) HU/mg, was obtained. The conductivity of the ion channels formed by rHct-A2 in the BLM was demonstrated to be similar to that of the native actinoporin from H. crispa. The obtained data expand knowledge on the structural and functional relationships of actinoporins and contribute to our understanding of the functioning mechanism of these molecules, which is the basis for the development of compounds with a high biomedical potential. Currently, they are considered as models for obtaining antitumor, antibacterial, and cardiac-stimulating agents.

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