Browse > Article

Effects of Plasminogen on Sperm-Oocyte Interaction during In Vitro Fertilization in the Pig  

Sa, Soo-Jin (School of Biosciences, University of Nottingham, Sutton Bonington Campus)
Kim, Tae-Shin (College of Animal Life Sciences, Kangwon National University)
Park, Soo-Bong (National Institute of Animal Science)
Lee, Dong-Seok (College of Natural Sciences, Kyungpook National University)
Park, Chun-Keun (School of Biosciences, University of Nottingham, Sutton Bonington Campus)
Publication Information
Abstract
Plasminogen activators (PAs) are serine protease that cleave plasminogen to form the active protease plasmin. PA/plasmin system playa role in mammalian fertilization and motility and acrosome reaction of sperm. The present study was undertaken to identify PAs in porcine gametes and investigate a possible role of plasminogen in in vitro fertilization in the pig. When boar spermatozoa were preincubated in a fertilization medium (mTBM) for 0, 2, 4 or 6 h, the activity of tPA-PAI ($110{\sim}117\;kDa$), tPA ($62{\sim}70\;kDa$), and uPA ($34{\sim}38\;kDa$) was observed in the sperm incubation medium and sperm sample. PA activities in the sperm incubation medium significantly (p<0.05) increased according to increasing incubation times, while PA activities in sperm significantly (p<0.05) decreased at the same times. In addition, the rate of acrosome reaction in spermatozoa increased by increasing culture times. When oocytes were separated from porcine cumulus-oocytes complexes at 0, 22 or 44 h of maturation culture, no PA activities were observed in cumulus free-oocyte just after aspiration from follicles. However, the activity of tPA-PAI ($108{\sim}113\;kDa$) and tPA ($75{\sim}83\;kDa$) was observed at 22 h of in vitro culture and significantly (p<0.05) increased as the duration of the culture increased. On the other hand, when porcine oocytes were activated by sperm penetration or calcium ionophore, plasminogen significantly (p<0.05) increased ZP dissolution time (sec) in activated oocytes by sperm penetration. These results suggest that supplementation of plasminogen to fertilization medium may playa positive role in the improvement of in vitro fertilization ability in the pig.
Keywords
Plasminogen activators; Gametes; Fertilization medium; Pig;
Citations & Related Records
연도 인용수 순위
  • Reference
1 Bray BA, Hsu KC, Wigger HJ, Le Roy EC (1975). Association of fibrinogen and microfibrils with trophoblast basement membrane. Connect Tissue Res 3:55-71   DOI   ScienceOn
2 Cannon MJ, Menino AR Jr (1998). Changes in the Bovine zona pellucida induced by plasmin or embryonic plasminogen activator. Mol Hum Reprod 51:330-338   DOI   ScienceOn
3 Ioannis AT, David AC, Ioannis AZ, Gary JK (2004). Effect of plasmin on movement characteristics of ejaculated bull spermatozoa. Theriogenology 62:553-561   DOI   ScienceOn
4 Kruithof EKO, Tran-Thang C, Ransjin A, Bachmann F (1984). Demonstration of a fast acting inhibitor of plasminogen activators in human plasma. Blood 64:907-913
5 Liu K, Liu YX, Du Q, Zhou HM, Lin X, Hu ZY, Zhang GY, Zhang GH (1996). Preliminary studies on the role of plasminogen activator in seminal plasma of human and rhesus monkey. Mol Hum Reprod 2:99-104   DOI   ScienceOn
6 Smokovitis A, Kokolis N, Alexaki-Tzivanidou E (1988). The plasminogen activator activity is markedly increased mainly at the area of the rupture of the follicular wall at the time of ovulation. Anim Reprod Sci 10:285-294
7 Vassalli JD, Sappino AP, Belin D (1991). Review: The plasminogen activator/plasmin system. J Clin Invest 88:1067-1072   DOI
8 Wagner O, Binder B (1986). Purification of an active plasminogen activator inhibitor immunologically related to the endothelial type plasminogen activator inhibitor from the conditioned media of human melanoma cell line. J Biol Chem 261:14474-14481
9 Smokovitis A, Kokolis N, Alexopoulos C, Alexaki E, Eleftheriou E (1987). Plasminogen activator activity, plasminogen activator inhibition and plasmin inhibition in spermatozoa and seminal plasma of man and various animal species. Effect of plasmin on sperm motility. Fibrinolysis 1:253-257   DOI   ScienceOn
10 Colgin DC, Murdoch WJ (1997). Evidence for a role of the ovarian surface epithelium in the ovulatory mechanism of the sheep: Secretion of urokinase- type plasminogen activator. Anim Reprod Sci 47:197-204   DOI   ScienceOn
11 Bicsak TA, Hsueh AJ (1989). Rat oocyte tissue plasminogen activator is a catalytically efficient enzyme in the absence of fibrin endogenous potentiation of enzyme activity. J Biol Chem 264:630-634
12 Lee SL, Wei YH (1994). The involvement of extracellular proteinases and proteinase inhibitors in mammalian fertilization. Biotechnol Appl Biochem 19:31-40
13 Zhang X, Rutled J, Khamsi F, Armstrong DT (1992). Release of tissue-type plasminogen activator by activated rat eggs and its posbsible role in fertilization. Mol Reprod Dev 32:28-32   DOI   ScienceOn
14 Bruse C, Bergqvist A, Carlstrom K, Fianu-Jonasson A, Lecander I, Astedt B (1998). Fibrinolytic factors in endometriotic tissue, endometrium, peritoneal fluid, and plasma from women with endometriosis and in endometrium and peritoneal fluid from healthy women. Fertil Steril 70:821-826   DOI   ScienceOn
15 Dyk AR, Menino AR Jr (1991). Electrophoretic characterization of the plasminogen activator produced by bovine blastocysts. J Reprod Fertil 93:483-489   DOI   ScienceOn
16 Liu YX, Hsueh AJ (1987). Plasminogen activator activity in cumulus-oocyte complexes of gonadotropin- treated rats during the periovultory period. Biol Reprod 36:1055-1062   DOI   ScienceOn
17 Zaneveld LJD, De Jonge CJ (1991). Mammalian sperm acrosomal enzymes and the acrosome reaction. In: A comparative overview of mammalian fertilization. Dunbar BS, O'Rand MG (Eds). New York: Plenum Press pp 63-79
18 Huarte J, Belin D, Vassalli J-D (1985). Plasminogen activator in mouse and rat oocytes: Induction during meiotic maturation. Cell 43:551-558   DOI   ScienceOn
19 Karakji EG, Tang BK (1995). Growth hormone releasing factor and vasoactive intestinal peptide stimulate rat granulosa cell plasminogen activator activity in vitro during follicular development. Mol Cell Endocrinol 107:105-112   DOI   ScienceOn
20 Stutz A, Conne B, Huarte J, Gubler R, Volkel V, Flandin P, Vassalli JD (1998). Masking, unmasking, and regulated polyadenylation cooperate in the translational control of a dormant mRNA in mouse oocytes. Genes Dev 12:2535-2548   DOI   ScienceOn
21 DasGupta S, Mills CL, Fraser LR (1993). $Ca^{2+}$-related changes in the capacitation state of human spermatozoa assessed with a chlortetracycline fluorescence assay. J Reprod Fertil 99:135-143   DOI   ScienceOn
22 Mullertz S (1988). Fibrinolysis: general aspects characteristic features and perspectives. Fibrinolysis 1: 3-12
23 Hart DA, Rehemtulla A (1988). Plasminogen activator and their inhibitors: Regulators of extracellular proteolysis and cell function. Com. Biochem Physiol 90:691-708   DOI
24 Kobayashi T, Matsuda Y, Park J, Hara I, Kaneko S, Fujimoto Y, Nozawa S, Akihama S (1992). Trypsin- like arginine amidases including plasminogen and plasmin in human seminal plasma by affinity adsorption and elution. Arch Androl 28:165-170   DOI
25 Benau DA, Storey BT (1987). Characterization of the mouse sperm plasma membrane zona-binding site sensitive to trypsin inhibitors. Biol Reprod 36: 282-292   DOI   ScienceOn
26 Canipari R, Epifano O, Siracusa G, Salustir A (1995). Mouse oocytes inhibit plasminogen activator production by ovarian cumulus and granulosa cells. Dev Biol 167:371-378   DOI   ScienceOn
27 Rehemtulla A, Arndt A, DA (1990). Induction of plasminogen activator inhibitor type 2 expression during differentiation of human K562 cells towards a macrophage phenotype. Biochem Cell Biol 68:1337-1343   DOI   ScienceOn
28 Abeydeera LR, Day BN (1997). In vitro penetration of pig oocytes in a modified Tris-buffered medium: Effect of BSA, caffeine and calcium. Theriogenology 48:537-544   DOI   ScienceOn
29 Taitzoglou IA, Chapman DA, Zervos IA, Killian GJ (2004). Effect of plasmin on movement characteristics of ejaculated bull spermatozoa. Theriogenology 62:553-561   DOI   ScienceOn
30 Kim NH, Menino AR Jr (1995). Effects of stimulators of protein kinase A and C and modulators of phosphorylation on plasminogen activator activity in porcine oocyte-cumulus cell complexes during in vitro maturation. Mol Reprod Dev 40:364-370   DOI   ScienceOn
31 Moller CC, Wassarman PM (1989). Characterization of a proteinase that cleaves zona pellucida glycoprotein ZP2 following activation of mouse eggs. Dev Biol 132:103-112   DOI   ScienceOn
32 Petters RM, Wells KD (1993). Culture of pig embryos. J Reprod Fertil 48:61-73
33 Huarte J, Vassalli J-D, Belin D, Sakkas D (1993). Involvement of the plasminogen activator/plasmin proteolytic cascade in fertilization. Dev Biol 157:539-546   DOI   ScienceOn
34 Smokovitis A, Rekkas C, Vainas E, Kokolis N, Taitzoglou I (1992). The effect of chromosomal anomalies on the plasminogen activator activity, plasminogen activator inhibition and plasmin inhibition in spermatozoa and seminal plasma. I. Chromosomal chimaerism XX/XY in the ram. Anim Reprod Sci 29:241-254   DOI   ScienceOn
35 Strickland S, Huarte J, Belin D, Vassalli A, Rickles RJ, Vassalli JD (1988). Antisense RNA directed against the 3' noncoding region prevents dormant m- RNA activation in mouse oocytes. Science 241:680-684   DOI