Mussel defensins are synthesised and processed in granulocytes then released into the plasma after bacterial

G Mitta1, F Vandenbulcke, F Hubert

  • 1Défense et Résistance chez les Invertébrés Marins (DRIM), IFREMER-CNRS-Université de Montpellier 2, France.

Journal of Cell Science
|November 24, 1999
PubMed

Insights

Mediterranean mussels possess Mytilus galloprovincialis defensin 1 (MGD1), an antibacterial peptide. Bacterial challenges increase MGD1 levels in plasma and trigger its release from hemocytes.

Area of Science:

  • Marine biology
  • Immunology
  • Biochemistry

Background:

  • Mytilus galloprovincialis defensin 1 (MGD1) is a 4 kDa antibacterial peptide from Mediterranean mussels.
  • MGD1 belongs to the arthropod defensin family.

Purpose of the Study:

  • To identify and characterize MGD1 and a new isoform, MGD2, in mussel hemocytes.
  • To investigate the expression, localization, and release of MGDs in response to bacterial challenge.

Main Methods:

  • cDNA sequencing
  • Northern blot analysis
  • Immunocytochemistry (optical and ultrastructural levels)

Main Results:

  • MGD1 and MGD2 precursors are synthesized with signal peptides and carboxyl-terminal extensions.
  • MGD transcripts are abundant in hemocytes.
  • Defensins are localized in specific hemocyte granulocyte subclasses and enterocyte granular structures.
  • Bacterial challenge increases plasma MGD1 concentration and triggers peptide release from hemocytes.

Conclusions:

  • Mussels express MGD1 and MGD2, primarily in hemocytes.
  • MGDs are stored in specific granular structures within hemocytes.
  • Hemocytes release MGDs into the plasma upon bacterial challenge, indicating a role in innate immunity.

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