• Title of article

    Expression profiling and comparative analyses of seven midgut serine proteases from the yellow fever mosquito, Aedes aegypti

  • Author/Authors

    Larry J. Brackney، نويسنده , , Doug E. and Isoe، نويسنده , , Jun and W.C. IV، نويسنده , , Black and Zamora، نويسنده , , Jorge and Foy، نويسنده , , Brian D. and Miesfeld، نويسنده , , Roger L. and Olson، نويسنده , , Ken E.، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2010
  • Pages
    9
  • From page
    736
  • To page
    744
  • Abstract
    Aedes aegypti utilizes blood for energy production, egg maturation and replenishment of maternal reserves. The principle midgut enzymes responsible for bloodmeal digestion are endoproteolytic serine-type proteases within the S1.A subfamily. While there are hundreds of serine protease-like genes in the A. aegypti genome, only five are known to be expressed in the midgut. We describe the cloning, sequencing and expression profiling of seven additional serine proteases and provide a genomic and phylogenetic assessment of these findings. Of the seven genes, four are constitutively expressed and three are transcriptionally induced upon blood feeding. The amount of transcriptional induction is strongly correlated among these genes. Alignments reveal that, in general, the conserved catalytic triad, active site and accessory catalytic residues are maintained in these genes and phylogenetic analysis shows that these genes fall within three distinct clades; trypsins, chymotrypsins and serine collagenases. Interestingly, a previously described trypsin consistently arose with other serine collagenases in phylogenetic analyses. These results suggest that multiple gene duplications have arisen within the S1.A subfamily of midgut serine proteases and/or that A. aegypti has evolved an array of proteases with a broad range of substrate specificities for rapid, efficient digestion of bloodmeals.
  • Keywords
    Aedes aegypti , midgut , Serine proteases
  • Journal title
    Journal of Insect Physiology
  • Serial Year
    2010
  • Journal title
    Journal of Insect Physiology
  • Record number

    1415804