A new method for concentration of proteins in the calcareous corpuscles separated from the spargana of Spirometra erinacei

  • PARK Yun-Kyu (Department of Parasitology, College of Medicine, Inha University) ;
  • PARK Jae-Hwan (Department of Parasitology and Tropical Medicine, Seoul National University, and Institute of Endemic Diseases, Seoul National University Medical Research Center) ;
  • GUK Sang-Mee (Department of Parasitology and Tropical Medicine, Seoul National University, and Institute of Endemic Diseases, Seoul National University Medical Research Center) ;
  • SHIN Eun-Hee (Department of Parasitology and Tropical Medicine, Seoul National University, and Institute of Endemic Diseases, Seoul National University Medical Research Center) ;
  • CHAI Jong-Yil (Department of Parasitology and Tropical Medicine, Seoul National University, and Institute of Endemic Diseases, Seoul National University Medical Research Center)
  • Published : 2005.09.01

Abstract

Calcareous corpuscles are a characteristic structure found in larval and adult stage cestddes, These corpuscles are known to contain several protein components and to possess protein-binding activity. However, the proteins bound to calcareous corpuscles in situ have not been studied. The present study was undertaken to identify the proteins on calcareous corpuscles. Calcareous corpuscles were purified from the plerocercoids (= spargana) of Spirometra erinacei, and serially dissolved using 0.1 M sulfamic acid solution. Collected supernatants were examined by sodium dodecyl sulfate-polyacrylamide gel electrophoresis (SDS-PAGE) and silver staining. The results showed that only the fraction remaining after the 19th dissolved fraction contained proteins. A total of 20 protein molecules were detected in gel, with major bands at 56, 53, 46, 40, 35, 29, 28, 24.5, 21, 19, 16, 13, 10 and 8 kDa. In particular, the proteins corresponding to the 21 and 16 kDa bands were most abundant. Our results demonstrated for the first time the protein contents of the calcareous corpuscles of spargana. Further studies on the functions of these proteins are required.

Keywords

References

  1. Chowdhury AG, Dasgupta B, Ray HN (1955) 'Kernechtrot' or nuclear fast red in the histochemical detection of calcareous corpuscles in Taenia saginata. Nature 176: 701-702
  2. Chung YB, Kong Y, Cho SY, Yang HJ (2003) Purification and localization of 10 kDa calcareous corpuscle binding protein of Spirometra mansoni plerocercoid. Parasitol Res 89: 235-237
  3. Nieland MU, von Brand T (1969) Electron microscopy of cestode calcareous corpuscle formation. Exp Parasitol 24: 279-289 https://doi.org/10.1016/0014-4894(69)90166-0
  4. Shepherd KM, Wyn-Jones AP (1996) An evaluation method for the simultaneous detection of Cryptosporidium oocysts and Giardia cysts from water. Appl Environ Microbiol 62: 1317-1322
  5. von Brand T, Nylen MU (1970) Organic matrix of cestode calcareous corpuscles. Exp Parasitol 28: 566-576 https://doi.org/10.1016/0014-4894(70)90125-6
  6. von Brand T, Meracado TI, Nylen MU, Scott DB (1960) Observation on function, composition, and structure of cestode calcareous corpuscles. Exp Parasitol 9: 205-214 https://doi.org/10.1016/0014-4894(60)90026-6
  7. von Brand T, Nylen MD, Scott DB, Martin GN (1965) Observations on calcareous corpuscles of larval Echinococcus granuiosus of various geographic origins. Proc Soc Exp Biol Med 120: 383-385
  8. Yang HJ (2000) Separation of calcareous corpuscles from plerocercoids of Spirometra mansoni and their binding proteins. Parasitol Res 86: 781-782 https://doi.org/10.1007/s004360000241