Abstract
Double-stranded endonuclease activity was demonstrated for the first time in the excretory/secretory (ES) products of a parasitic nematode, Trichinella spiralis, which can reorganize host muscle cells. The endonuclease introduced double-stranded breaks to the native DNA. The ES double-stranded endonuclease(s) was sequence nonspecific, with a pH optimum below 6, and required divalent cations as a cofactor. Its activity was inhibited by the Zn2+ ion. It was detected mainly in the ES products of the infective-stage larvae of T. spiralis collected at 37 °C and was present in much smaller amounts in samples collected at 43 °C and in the products of T. pseudospiralis, a nonencapsulated species. The activity of endonuclease was blocked by antibodies against ES products. Zymographic analysis showed that the endonuclease activity was associated with at least three molecular forms, designated ≃ 25, 30 and 58 kDa, respectively.
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Mak, C. ho, & Ko, R. C. (1999). Characterization of endonuclease activity from excretory/secretory products of a parasitic nematode, Trichinella spiralis. European Journal of Biochemistry, 260(2), 477–481. https://doi.org/10.1046/j.1432-1327.1999.00174.x
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