Scientia Agricultura Sinica ›› 2013, Vol. 46 ›› Issue (9): 1939-1945.doi: 10.3864/j.issn.0578-1752.2013.09.022

• VETERINARY SCIENCE • Previous Articles     Next Articles

Expression of Ghrelin and GHS-R1a mRNA in the Bovine Oocytes During in Vitro Maturation

 MI  Yan, ZHANG  Ling-Li, LI  Hai-Jun, DU  Chen-Guang, CAO  Gui-Fang   

  1. 1.College of Veterinary, Inner Mongolia Agricultural University, Hohhot 010018
    2.Vocational and Technical College, Inner Mongolia Agricultural University, Baotou 014109, Inner Mongolia
  • Received:2012-12-04 Online:2013-05-01 Published:2013-03-18

Abstract: 【Objective】 The aim of this study was to investigate the possibility of Ghrelin and GHS-R1a mRNA expression in bovine oocytes produced in vitro and the relationship between FSH and the expression of Ghrelin and GHS-R1a mRNA. 【Method】Relative real time RT-PCR technology was applied to detect the pattern of Ghrelin and GHS-R1a mRNA expression in oocytes, and the effect of different concentrations FSH and the combination of FSH and FSH binding inhibitor on the expression of Ghrelin and GHS-R1a mRNA were observed. 【Result】 Relative real time RT-PCR experiments confirmed that the Ghrelin and GHS-R1a mRNA levels in oocyte varied depending on the developmental stage, with the significant decrease of Ghrelin and GHS-R1a mRNA expression at 8 h in oocyte maturation process. And addition of FSH inhibited the expression of Ghrelin and GHS-R1a mRNA within oocytes, and this inhibition effect could be attenuated by FSH binding inhibitor. 【Conclusion】 The expression of Ghrelin and GHS-R1a mRNA could be declined with the rising of FSH concentration during in vitro maturation of bovine oocytes.

Key words: bovine , oocytes , in vitro maturation , FSH , Ghrelin , GHS-R1a

[1]Kojima M, Hosoda H, Date Y, Nakazato M, Matsuo H, Kangawa K. Ghrelin is a growth-hormone-releasing acylated peptide from stomach. Nature, 1999, 402(6762): 656-660.

[2]李海军, 靳木子, 张睿彪, 杜晨光, 刘东军, 仓明. 卵丘细胞凋亡与增殖对牛卵母细胞体外发育的影响. 中国农业科学, 2011, 44(8): 1702-1709.

Li H J, Jin M Z, Zhang R B, Du C G, Liu D J, Cang M. Effect of cumulus cell apoptosis and proliferation on bovine oocyte development in vitro. Scientia Agricultura Sinica, 2011, 44(8): 1702-1709. (in Chinese)

[3]Caminos J E, Tena-Sempere M, Gaytan F,  Sanchez-Criado J E, Barreiro M L, Nogueiras R, Casanueva F F, Aguilar E, Diéguez C. Expression of ghrelin in the cyclic and pregnant rat ovary. Endocrinology, 2003, 144(4): 1594-1602.

[4]Kawamura K, Sato N, Fukuda J, Kodama H, Kumagai J, Tanikawa H, Nakamura A, Honda Y, Sato T, Tanaka T. Ghrelin inhibits the development of mouse preimplantation embryos in vitro. Endocrinology, 2003, 144(6): 2623-2633.

[5]Gaytan F, Barreiro M L, Chopin L K, Herington A C, Morales C, Pinilla L, Casanueva F F, Aguilar E, Diéguez C, Tena-Sempere M. Immunolocalization of ghrelin and its functional receptor, the type 1a growth hormone secretagogue receptor, in the cyclic human ovary. Journal of Clinical Endocrinology and Metabolism, 2003, 88(2): 879-887.

[6]Du C G, Xilingaowa, Cao G F, Wang C, Li H J, Zhao Y, Siqingaowa, Cao J. Expression of the orexigenic peptide ghrelin in the sheep ovary. Domestic Animal Endocrinology, 2009, 36(2): 89-98.

[7]旭日干, 张锁链, 薛晓先, 度洪武, 庞也非, 斯琴. 屠宰母牛卵巢卵母细胞的体外受精与早期发生. 内蒙古大学学报: 自然科学版, 1989, 20: 407-414.

Xu R G, Zhang S L, Xue X X, Du H W, Pang Y F, Si Q. In vitro fertilization and early embryonic development of oocytes from bovine ovaries. Journal of Inner Mongolia University: Natural Science, 1989, 20: 407-414. (in Chinese)

[8]Wadia P R, Mahale S D, Nandedkar T D. Effect of the human follicle-stimulating hormone- binding inhibitor and its N-terminal fragment on follicle-stimulating hormone-induced progesterone secretion by granulosa cells in vitro. Journal of Biosciences, 2007, 32(6): 1185-1194.

[9]Schmittgen T D, Zakrajsek B A. Effect of experimental treatment on housekeeping gene expression validation by real-time, quantitative RT-PCR. Journal of Biochemical and Biophysical Methods, 2000, 46 (122): 69281.

[10]Du C G, Li H J, Cao G F, Xilingaowa, Wang C, Li C. Expression of orexigenic peptide Ghrelin and the type 1a growth hormone secretagogue receptor in sheep oocytes and pre-implantation embryos produced in vitro. Reproduction in Domestic Animals, 2010, 45(1): 92-98.

[11]Miller D W, Harrison J L, Brown Y A, Doyle U, Lindsay A, Adam C  L, Lea R G. Immunohistochemical evidence for an endocrine/ paracrine role for ghrelin in the reproductive tissues of sheep. Reproductive Biology and Endocrinology, 2005, 3: 60.

[12]Tatemoto H, Horiuchi T. Requirement for protein synthesis during the onset in bovine oocyte and its involvement in the autocatalytic amplification of maturation-promoting factor. Molecular Reproduction and Development, 1995, 41(1): 47-53.

[13]Fissore R A, He C L, Vande Woude G F. Potential role of mitogen-activated protein kinase during meiosis resumption in bovine oocyte. Biology of Reproduction, 1996, 55(6): 1261-1270.

[14]严云勤, 李光鹏, 郑小民. 发育生物学原理与胚胎工程. 哈尔滨; 黑龙江科学技术出版社, 1995: 16-35.

Yan Y J, Li G P, Zheng X M. Developmental Biology and Embryo Engineering. Harbin: Heilongjiang Science and Technology Press, 1995: 16-35. (in Chinese)

[15]Suzuki H, Sasaki Y, Shimizu M, Matsuzaki M, Hashizume T, Kuwayama H. Ghrelin and leptin did not improve meiotic maturation of porcine oocytes cultured in vitro. Reproduction in Domestic Animals, 2010, 45(5): 927-930.

[16]Shepperd E, Peng C, Unniappan S. Ghrelinergic system in fish ovaries and ghrelin inhibition of germinal vesicle breakdown in zebra fish oocytes. General and Comparative Endocrinology, 2012, 176(3): 426-431.

[17]Eppig J J, Wigglesworth K, Pendola F, Hirao Y. Murine oocytes suppress expression of luteinizing hormone receptor messenger ribonucleic acid by granulosa cells. Biology of Reproduction, 1997, 56(4): 976-984.

[18]Diaz F J, Wigglesworth K, Eppig J J. Oocytes determine cumulus cell lineage in mouse ovarian follicles. Journal of Cell Science, 2007, 120(8): 1330-1340.

[19]Sommersberg B, Bulling A, Salzer U, Fröhlich U, Garfield R E, Amsterdam A, Mayerhofer A. Gap junction communication and connexin 43 gene expression in a rat granulosa cell line: regulation by follicle-stimulating hormone. Biology of Reproduction, 2000, 63(6): 1661-1668.

[20]Eppig J J. Intercommunication between mammalian oocytes and companion somatic cells. Bioessays, 1991, 13(11): 569-574.

[21]Downs S M, Daniel S A, Eppig J J. Induction of maturation in cumulus cell-enclosed mouse oocytes by follicle-stimulating hormone and epidermal growth factor: evidence for a positive stimulus of somatic cell origin. Journal of Experimental Zoology, 1988, 245(1): 86-96.

[22]Eppig J J. Maintenance of meiotic arrest and the induction of oocyte maturation in mouse oocyte-granulosa cell complexes developed in vitro from preantral follicles. Biology of Reproduction, 1991, 45(6): 824-830.

[23]Ning G, Ouyang H, Wang S, Chen X, Xu B, Yang J, Zhang H, Zhang M, Xia G. 3’, 5’-cyclic adenosine monophosphate response element binding protein up-regulated cytochrome P450 lanosterol 14-demethylase expression involved in follicle-stimulating hormone-induced mouse oocyte maturation. Molecular Endocrinology, 2008, 22(7): 1682-1694.

[24]Atef A, François P, Christian V, Marc-André S. The potential role of gap junction communication between cumulus cells and bovine oocytes during in vitro maturation. Molecular Reproduction and Development, 2005, 71(3): 358-367.

[25]Ali A, Sirard M A. Protein kinases influence bovine oocyte competence during short-term treatment with recombinant human follicle stimulating hormone. Reproduction, 2005, 130(3): 303-310.

[26]Wadia P, Kholkute S, Nandedkar T. Antifertility effect of an octapeptide, a fragment of FSH binding inhibitor, in the common marmoset (Callithrix jacchus). Contraception, 2003, 67(2): 151-160.

[27]Lee D W, Shelden R M, Reichert L E Jr. Identification of low and high molecular weight follicle-stimulating hormone receptor-binding inhibitors in human follicular fluid. Fertility and Sterility, 1990, 53(5): 830-835.
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