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Tytuł artykułu

Molekularne podstawy procesu kapacytacji plemnikow ssakow

Autorzy

Warianty tytułu

Języki publikacji

PL

Abstrakty

EN

Słowa kluczowe

Wydawca

-

Rocznik

Tom

56

Numer

06

Opis fizyczny

s.372-375,bibliogr.

Twórcy

autor
  • Instytut Zootechniki, 32-083 Balice k. Krakowa

Bibliografia

  • 1. Austin C. R.: Observations on the penetration of the sperm into the mammalian egg. Aust. J. Sci. Res. 1951, В 4, 581-596.
  • 2. Awano M., Kawaguchi A., Morisaki M, Mohri H.: Identification of cholesta-7,24-dien-3/3-ol and desmosterol in hamster cauda epididymal spermatozoa. Lipids 1989, 24, 662-664.
  • 3. Benoff S.: The role of cholesterol during capacitation of human spermatozoa. Human Reprod. 1993, 8, 2001-2008.
  • 4. Brooks D. E.: Epididymal functions and their hormonal regulation. Aust. J. Biol. Sci. 1983, 36, 205-221.
  • 5. Carrera A.. Moos J., NingX. R, Gerton G. L., Tesarik J., Kopf G. S., Moss S. B.: Regulation of protein tyrosine phosphorylation in human sperm by a cal- cium/calmodulin-dependent mechanism: identification of A kinase anchor proteins as major substrates for tyrosine phosphorylation. Dev. Biol. 1996, 180, 284-296.
  • 6. Chang M. C: Fertilizing capacity of spermatozoa deposited into the Fallopian tubes. Nature 1951, 168, 697-698.
  • 7. Chen J. S., Doncel G. F, Alvarez C., Acosta A. A.: Expression of mannose-binding sites on human spermatozoa and their role in sperm-zona pellucida binding. J. Androl. 1995, 16, 55-63.
  • 8. Cross N. L.: Human seminal plasma prevents sperm from becoming acroso- mally responsive to the agonist, progesterone: cholesterol is the major inhibitor. Biol. Reprod. 1996, 54, 138-145.
  • 9. Cross N. L.: Role of cholesterol in sperm capacitation. Biol. Reprod. 1998, 59, 7-11.
  • 10. Cross M. L., Razy-Faulkner P: Kontrol of human sperm intracellular pH by cholesterol and its relationship to the response of the acrosome to progesterone. Biol. Reprod. 1997, 56, 1169-1174.
  • 11. de Lamirande E„ Leclerc P, Gagnon C: Capacitation as a regulatory event that primes spermatozoa for the acrosome reaction and fertilization. Mol. Hum. Reprod. 1997, 3, 175-194.
  • 12. Eddy E. M., O’Brien D. A.: The spermatozoon. W: The Physiology of Reproduction, (wyd.) E. Rnobil, J. D. Neill, New York, Raven Press, 1994, s. 29-77.
  • 13. Florman H. M„ Arnoult C„ Kazam I. G., Li С., О 'Toole С. M.B:. A perspective on the control of mammalian fertilization by egg-activated ion channels in sperm: a tale of two channels. Biol. Reprod. 1998, 59, 12-16.
  • 14. Fraser L. R„ Herod J. E.: Expression of capacitation-dependent changes in chlortetracycline fluorescence patterns in mouse spermatozoa requires a suitable glycolysable substrate. J. Reprod. Fertil. 1990, 88, 611-621.
  • 15. Galantino-Homerh., Visconti P. E.. Kopf G. S.: Regulation of protein tyrosine phosphorylation during bovine sperm capacitation by a cyclic-adenosine 3’ 5’-monophosphate-dependent pathway. Biol. Reprod. 1997, 56, 707-719.
  • 16. Go K. J., Wolf D. P: Albumin-mediated changes in sperm sterol content during capacitation. Biol. Reprod. 1985, 32, 145-153.
  • 17. Kątska L., Ryńska В., Smorąg Z: Effect of seminal plasma on the in vitro fertilizability of bull spermatozoa. Anim. Reprod. Sci. 1996, 44, 23-31.
  • 18. Kordan W. StrzeżekJ.: Biochemiczne mechanizmy regulacji ruchu plemników ssaków. Postępy Biologii Komórki 1997, 24, 543-560.
  • 19. Legault Y, Bouthilier M, Bleau G., Chapdelaine A., Roberts K. D.: The sterol and sterol sulfate content of the male hamster reproductive tract. Biol. Reprod. 1979, 20, 1213-1219.
  • 20. MackS. R., Everingham J., Zaneveld L. J. D.: Isolation and partial characterization of the plasma membrane form human spermatozoa. J. Exp. Zool. 1986, 240, 127-136.
  • 21. Mahadevan M. M., Miller М. М„ Moutos D. Mr. Absence of glucose decreases human fertilization and sperm movement characteristics in vitro. Hum. Reprod. 1997, 12, 119-123.
  • 22.Okamura N., Tajima Y, Soejima A., MasudaH., Sugita Y.: Sodium bicarbonate in seminal plasma stimulates the motility of mammalian spermatozoa trough the direct activation of adenylate cyclase. J. Biol. Chem. 1985, 260, 9699-9705.
  • 23. Parks J. E., Lynch D. V:. Lipid composition and thermotropic phase behavior of boar, bull, stallion, and rooster sperm membranes. Criobiology 1992, 29, 255-266.
  • 24. Parrish J. J., Susko-Parrish J. L., Winer M. A., First N. L.: Capacitation of bovine sperm by heparin. Biol. Reprod. 1988, 38, 1171-1180.
  • 25. Parrish J. J., Susko-Parrish J. L., Uguz C„ First N. Lr. Differences in the role of cyclic adenosine 3’ 5’-monophosphate during capacitation of bovine sperm by heparin of oviduct fluid. Biol. Reprod. 1994, 51, 1099-1108.
  • 26. Suarez S. S.: Hyperactivated motility in sperm. J. Androl. 1996, 17, 331-335.
  • 27. Takagi K., Ogawa K., Tanaka H., Satake T, Watanabe Y, Chijiwa T, Hidaka Hr. Relaxant effects of various xanthine derivatives: relationship to cyclic nucleotide phosphodiesterase inhibition. Adv. Second Messenger Phospho- protein Res. 1992, 25, 353-362.
  • 28. Therien Manjunath Pr. Phospholipid-binding proteins of bovine seminal vesicles modulate HDL-and heparin-induced capacitation of spermatozoa. Biol. Reprod. 1996, 54 (suppl. 1), 62 (abstract 23).
  • 29. Van Haastert P. J. M., Van Driel R., Jastorff B., Baraniak J., Stec W. J., De Wit R. J. W.: Competitive CAMP antagonists for cAMP-receptor proteins. J. Biol. Chem. 1984, 259, 10020-10024.
  • 30. Visconti P. E., Kopf G. Sr. Regulation of protein phosphorylation during sperm capacitation. Biol. Reprod. 1998, 59, 1-6.
  • 31. Visconti P. E., Moore G. D.. Bailey J. L., Leclerc P, Connors S. A., Pan D., Olds-Clarke P, Kopf G. S.: Capacitation of mouse spermatozoa. II. Protein tyrosine phosphorylation and capacitation are regulated by a cAMP-depen- dent pathway. Development 1995, 121, 1139-1150.
  • 32. Visconti P. E., Ning X. P, Fornes M. W, Alvarez J., Kopf G. Sr. Role of protein phosphorylation in sperm capacitation. Biol. Reprod. 1997,56 (suppl. 1), 35 (abstr. M-27).
  • 33. Vredenbuigh-Wilberg W. L., Parrish J. J:. Intracellular pH of bovine sperm increases during capacitation. Mol. Reprod. Dev. 1995, 40, 490-502.
  • 34. Yanagimach Rr. Mamalian fertilization. W: The Physiology of Reproduction, (wyd.) E. Knobil, J. D. Neil, New York Raven Press, 1994, s. 189-317.
  • 35. Yeagle P. Lr. Cholesterol and the cell membrane. Biochim. Biophys. Acta 1993, 822, 267-287.
  • 36. Zeng Y, Clark E. N., FlormanH. Mr. Sperm membrane potential: hyperpolarization during capacitation regulates zona pellucida-dependent acrosomal secretion. Dev. Biol. 1995, 171, 554-563.
  • 37. Zeng Y. Oberdorf J. A., Florman H. Mr. pH regulation in mouse sperm. Identification of Na+, CL and HC03 dependent and arylaminobenzoate-dependent regulatory mechanisms and characterization of their role in sperm capacitation. Dev. Biol. 1996, 173, 510-520

Typ dokumentu

Bibliografia

Identyfikatory

Identyfikator YADDA

bwmeta1.element.agro-article-fdf9a05c-c3e7-45bd-83b1-e580bcf50175
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