• Title of article

    A novel ribotoxin with ribonuclease activity that specifically cleaves a single phosphodiester bond in rat 28S ribosomal RNA and inactivates ribosome

  • Author/Authors

    Xu، نويسنده , , Hong and He، نويسنده , , Wen-Jun and Liu، نويسنده , , Wang-Yi، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2004
  • Pages
    11
  • From page
    30
  • To page
    40
  • Abstract
    A unique ribonuclease named Biota orientalis ribonuclease (Biota orientalis RNase) is purified to homogeneity from mature seeds of oriental arborvitae (Biota orientalis). The molecular mass of Biota orientalis RNase is about 13 kDa. When the concentration of Mg2+ is 25 mM in the incubation buffer, the ribonuclease specifically cleaves the phosphodiester bond between C4453 and A4454 in region K (a region in domain VII) of 28S RNA in rat ribosome, resulting in inactivation of ribosome. Thus, it is a ribotoxin similar to α-sarcin. The region around C4453–A4454 in rat 28S rRNA is named “Biota orientalis RNase region.” Rat ribosome treated by Biota orientalis RNase produces a small RNA fragment (S-fragment) that contains 333 nucleotides from the 3′-terminus of rat 28S rRNA. The distance between the cleavage-sites of α-sarcin (G4325) and Biota orientalis RNase (C4453) is 128 nucleotides. Under restricted conditions (25 mM Mg2+), the substrate specificity of Biota orientalis RNase is extremely high: it acts only on the “Biota orientalis RNase region” of the largest RNA in ribosomes from certain eukaryotes. The ribosome specifically damaged by Biota orientalis RNase is unable to EF-1α-dependently bind aminoacyl-tRNA, whereas the formation of the EF-2/GDP/ribosome complex is not affected. It is proposed that Biota orientalis RNase inactivates ribosome at least partially by interfering with the EF-1α-dependent binding of aminoacyl-tRNA to ribosome. Biota orientalis RNase might be a useful tool in studying the structure/function of ribosome.
  • Keywords
    Rat 28S rRNA , specific cleavage , Ribotoxin , C4453–A4454 cleavage-site , Elongation factor , Biota orientalis RNase
  • Journal title
    Archives of Biochemistry and Biophysics
  • Serial Year
    2004
  • Journal title
    Archives of Biochemistry and Biophysics
  • Record number

    1626180