돼지의 발정 주기 동안 자궁조직에서 Plasminogen Activator(PA)와 HSP-90과의 관계

Relationship between Plasminogen Activator (PA) and HSP-90 in Uterus Tissue during the Porcine Estrous Cycle

  • 구하나 (강원대학교 동물생명과학대학) ;
  • 정희태 (강원대학교 수의과대학) ;
  • 양부근 (강원대학교 동물생명과학대학) ;
  • 박춘근 (강원대학교 동물생명과학대학)
  • Gu, Ha-Na (College of Animal Life Sciences, Kangwon National University) ;
  • Cheong, Hee-Tae (College of Veterinary Medicine, Kangwon National University) ;
  • Yang, Boo-Keun (College of Animal Life Sciences, Kangwon National University) ;
  • Park, Choon-Keun (College of Animal Life Sciences, Kangwon National University)
  • 투고 : 2012.09.11
  • 심사 : 2012.09.18
  • 발행 : 2012.09.30

초록

The present study was performed to identify the relationship between plasminogen activator (PA) and Heat Shock Protein-90 (HSP-90) in porcine uterus tissues during the estrous cycle. Porcine uterus tissues were obtained from preovulatory (Pre-Ov), post-ovulatory (Post-Ov) and early to mid-luteal (Early-mid L) stages. The protein was extracted from uterus tissue by using M-PER Mammalian Protein Extraction Reagent. Proteins were refined by RIPA Buffer and quantified by BCA methods. As results, t-PA expression was significantly (p<0.05) higher from pre-ovulatory(Epithelium tissue: $29,067{\mu}g/{\mu}l$, Myometrium tissue: $30,797{\mu}g/{\mu}l$) compared to the post-ovulatory stage(Epithelium tissue: $54,357{\mu}g/{\mu}l$, Myometrium tissue: $53,270{\mu}g/{\mu}l$) and early to mid-luteal stage(Epithelium tissue: $42,380{\mu}g/{\mu}l$, Myometrium tissue: $43,139{\mu}g/{\mu}l$). On the other hand, the uPA expression indicated higher from early to mid-luteal stage (Epithelium tissue: $0.02198{\mu}g/{\mu}l$, Myometrium tissue: $0.02412{\mu}g/{\mu}l$) than pre-ovulatory stage (Epithelium tissue: $0.01577{\mu}g/{\mu}l$, Myometrium tissue: $0.01531{\mu}g/{\mu}l$) and post-ovulatory stage(Epithelium tissue: $0.01414{\mu}g/{\mu}l$, Myometrium tissue: $0.01429{\mu}g/{\mu}l$). However, expression of u-PA did not differ from each estrous cycle in the epithelium tissue and myometrium tissue(p<0.05). Expression of HSP-90 was differ t-PA and u-PA from pre-ovulatory in Epithelium tissue($25,423{\mu}g/{\mu}l$) and early to mid-luteal stage in epithelium tissue($177,922{\mu}g/{\mu}l$) and myometrium tissue($26,664{\mu}g/{\mu}l$). These results suggest that HSP-90 and u-PA were related with change of uterus cycle according to the reformation of the tissues in porcine uterus.

키워드

참고문헌

  1. Bugge TH, Flick MJ, Daugherty CC, Degen JL (1995): Plasminogen deficiency causes severe thrombosis but is compatible with development and reproduction. Genes & Development 9:794-807. https://doi.org/10.1101/gad.9.7.794
  2. Casslen B, Astedt B (1983): Occurrence of both urokinase and tissue plasminogen activator in the human endometrium. Contraception 28:553-564. https://doi.org/10.1016/0010-7824(83)90106-3
  3. Csermely P, Schnaider T, Soti C, Prohaszka Z, Nardai G (1998): The 90-kDa molecular chaperone family: structure, function, and clinical applications. A comprehensive review. Pharmacology Ther 79:129- 168. https://doi.org/10.1016/S0163-7258(98)00013-8
  4. Ebisch IM, Thomas CM, Wetzels AM, Willemsen WN, Sweep FC, Steegers-Theunissen RP (2008): Review of the role of the plasminogen activator system and vascular endothelial growth factor in subfertility. Fertil Steril 90:2340-2350. https://doi.org/10.1016/j.fertnstert.2007.10.026
  5. Edlich F, Erdmann F, Jarczowski F, Moutty MC, Weiwad M, Fischer G (2007): The Bcl-2 regulator FKBP38- calmodulin-$Ca^{2+}$ is inhibited by Hsp90. J Biol Chem 282:15341-15348. https://doi.org/10.1074/jbc.M611594200
  6. Finlay TH, Katz J, Kirsch L, Levitz M, Nathoo SA, Seiler S (1983): Estrogen-stimulated uptake of plasminogen by the mouse uterus. Endocrinology 112: 856-861. https://doi.org/10.1210/endo-112-3-856
  7. Jimenez Diaz M, Giunta S, Valz-Gianinet J, Pereyra- Alfonso S, Flores V, Miceli D (2000): Proteases with plasminogen activator activity in hamster oviduct. Mol Reprod Dev 55:47-54. https://doi.org/10.1002/(SICI)1098-2795(200001)55:1<47::AID-MRD7>3.0.CO;2-J
  8. Kim KH, Lee YS, Gu HN, Yang BK, Cheong HT, Park CK (2011): Changes in plasminogen activity in uterus tissue during the estrous cycle in the pigs. Reprod Dev Bio 35:463-468.
  9. Kruithof EK (1988): Plasminogen activator inhibitors a review. Enzyme 40:113-121. https://doi.org/10.1159/000469153
  10. McCready J, Sims JD, Chan D, Jay DG (2010): Secretion of extracellular hsp90$\alpha$ via exosomes increases cancer cell motility: a role for plasminogen activation. BMC Cancer 10:294. https://doi.org/10.1186/1471-2407-10-294
  11. Park H, Kim YJ, Hahn JS (2007): A novel class of Hsp- 90 inhibitors isolated by structure-based virtual screening. Bioorg Med Chem Lett 17:6345-6349. https://doi.org/10.1016/j.bmcl.2007.08.069
  12. Park S, Lee YS, Cheong HT, Yang BK, Park CK (2009): Effect of methyl-beta-cyclodextrin on sperm acrosome reaction and embryo cleavage after in vitro fertilization in pig. Annals of Animal Resources Sciences 20:6-12.
  13. Prince T, Neckers L (2011): A network of its own: the unique interactome of the Hsp90 Cochaperone, Sba1/p23. Molecular Cell 43:159-160. https://doi.org/10.1016/j.molcel.2011.07.005
  14. Roldan-Olarte M, Jimenez-Diaz M, Miceli DC (2005): Plasminogen detection in oocytes and plasminogen activator activities in the porcine oviduct during the estrous cycle. Zygote 13:115-123 https://doi.org/10.1017/S0967199405003175
  15. Waza M, Adachi H, Katsuno M, Minamiyama M, Tanaka F, Doyu M, Sobue G (2006): Modulation of Hsp90 function in neurodegenerative disorders: a molecular-targeted therapy against disease-causing protein. J Mol Med 84:635-646. https://doi.org/10.1007/s00109-006-0066-0
  16. Zervos IA, Tsantarliotou MP, Vatzias G, Goulas P, Kokolis NA, Taitzoglou IA (2005): Effects of dietary vitamin A intake on acrosin- and plasminogen-activator activity of ram spermatozoa. Reproduction 129:707-715. https://doi.org/10.1530/rep.1.00182