• Title of article

    Characterisation of choline esterases and their tissue and subcellular distribution in mussel (Mytilus edulis)

  • Author/Authors

    Margaret Brown، نويسنده , , Ian M. Davies، نويسنده , , Colin F. Moffat، نويسنده , , John Redshaw، نويسنده , , John A. Craft، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2004
  • Pages
    15
  • From page
    155
  • To page
    169
  • Abstract
    Acetylcholinesterase in mussel is potentially a useful biomarker of exposure to organophosphates (OP) in the marine environment. This study looked at cholinesterase activity in subcellular fractions of various tissues from the common mussel, Mytilus edulis. Measurement of enzyme rates demonstrated that although highest specific activity was found in foot ‘mitochondrial’ fraction, recovery of activity was very low. Gill ‘microsomal’ fraction had the second highest specific activity with a useful level of recovery and therefore was the most suitable tissue fraction for biomarker applications. Comparative studies of alternative alkylthiocholine substrates and competitive inhibitors suggest there is a single cholinesterase enzyme type present in this fraction. Inhibition of alkylcholine hydrolysis by BW284C51, specific to acetylcholinesterase in vertebrates, showed that cholinesterase activity in gill ‘microsomal’ fraction is inhibited by this compound but to a lesser extent than in vertebrate AChE. Inhibition of cholinesterase activity by azamethiphos in gill ‘microsomal’ fraction gave an IC50 of approximately 100 μM and showed both time and concentration dependence. However this indicates a lower potency compared to other animals and it is debatable whether mussel cholinesterase activity is useful as a biomarker of exposure in the field.
  • Keywords
    cholinesterase , mussel , Mytilus edulis , organophosphates , Azamethiphos , biomarkers
  • Journal title
    Marine Environmental Research
  • Serial Year
    2004
  • Journal title
    Marine Environmental Research
  • Record number

    923811