DOI QR코드

DOI QR Code

Modification of Gene Expression of Connexins in the Rat Corpus Epididymis by Estradiol Benzoate or Flutamide Exposure at the Early Neonatal Age

  • Lee, Ki-Ho (Dept. of Biochemistry and Molecular Biology, College of Medicine, Eulji University)
  • Received : 2015.04.03
  • Accepted : 2015.05.20
  • Published : 2015.06.30

Abstract

Cell-cell direct communication through channel-forming molecules, connexin (Cx), is essential for a tissue to exchange signaling molecules between neighboring cells and establish unique functional characteristics during postnatal development. The corpus epididymis is a well-known androgen-responsive tissue and involves in proper sperm maturation. In the present research, it was attempted to determine if expression of Cx isoforms in the corpus epididymis in the adult is modulated by exposure to estrogenic or anti-androgenic compound during the early postnatal period. The neonatal male rats at 7 days of age were subcutaneously injected by estradiol benzoate (EB) at low-dose ($0.015{\mu}g/kg$ body weight) or high-dose ($1.5{\mu}g/kg$ body weight) or flutamide (Flu) at low-dose ($500{\mu}g/kg$ body weight) or high-dose (50 mg/kg body weight). The corpus epididymis collected at 4 months of age was subjected to evaluate expressional changes of Cx isoforms by quantitative real-time PCR. Treatment of low-dose EB resulted in increases of Cx32, Cx37, and Cx45 transcript levels, while exposure to high-dose EB decreased expression of Cx26, Cx30.3, Cx31, Cx31.1, Cx32, Cx40, Cx43, and Cx45. Treatments of Flu caused significant decreases of expression of all examined Cx isoforms, except Cx37 and Cx43 shown no expressional change with high-dose Flu treatment. These findings imply that expression of most Cx isoforms present in the corpus epididymis would be transcriptionally regulated by actions of androgen and/or estrogen during postnatal period.

Keywords

References

  1. Arroteia KF, Garcia PV, Barbieri MF, Justino ML, Pereira LAV (2012) The epididymis: embryology, structure, function and its role in fertilization and infertility. In: Pereira LAV (ed). Embryology-Updates and Highlights on Classic Topics. In Tech, Croatia, pp 41-66.
  2. Bruzzone R, White TW, Paul DL (1996) Connections with connexins: the molecular basis of direct intercellular signaling. Eur J Biochem 238:1-27. https://doi.org/10.1111/j.1432-1033.1996.0001q.x
  3. Cyr DG (2011) Connexins and pannexins: coordinating cellular communication in the testis and epididymis. Spermatogenesis 1:325-338. https://doi.org/10.4161/spmg.1.4.18948
  4. Goodenough DA, Goliger JA, Paul DL (1996) Connexins, connexons, and intercellular communication. Annu Rev Biochem 65:475-502. https://doi.org/10.1146/annurev.bi.65.070196.002355
  5. Gorowska E, Zarzycka M, Chojnacka K, Bilinska B, Hejmej A (2014) Postnatal exposure to flutamide affects CDH1 and CTNNB1 gene expression in adult pig epididymis and prostate and alters metabolism of testosterone. Andrology 2:186-197. https://doi.org/10.1111/j.2047-2927.2013.00172.x
  6. Goyal HO, Robateau A, Braden TD, Williams CS, Srivastava KK, Ali K (2003). Neonatal estrogen exposure of male rats alters reproductive functions at adulthood. Biol Reprod 68:2081-2091. https://doi.org/10.1095/biolreprod.102.010637
  7. Han SY, Lee K-H (2013) The expression patterns of connexin isoforms in the rat caput epididymis during postnatal development. J Ani Sci Tech 55:245-255.
  8. Hess RA, Fernandes SA, Gomes GR, Oliveira CA, Lazari MF, Porto CS (2011) Estrogen and its receptors in efferent ductules and epididymis. J Androl 32:600-613. https://doi.org/10.2164/jandrol.110.012872
  9. Kaushik MC, Misro MM, Sehgal N, Nandan D (2010) Effect of chronic oestrogen administration on androgen receptor expression in reproductive organs and pituitary of adult male rat. Andrologia 42:193-205. https://doi.org/10.1111/j.1439-0272.2009.00979.x
  10. Lee K-H (2013) Differential expression of multiple connexins in rat corpus and cauda epididymis at various postnatal stages. J Ani Sci Tech 55:521-530. https://doi.org/10.5187/JAST.2013.55.6.521
  11. Lee K-H (2014) Expressional modulation of connexin isoforms in the initial segment of male rat treated with estradiol benzoate or flutamide. Balsaenggwa Saengsig 18:293-300.
  12. Lee K-H (2015) Exogenous exposure to estradiol benzoate or flutamide at the weaning age alters expression of connexin isoforms in the initial segment of male rat. Balsaenggwa Saengsig 19:43-51.
  13. Meșe G. Richard G, White TW (2007) Gap junctions: basic structure and function. J Invest Dermatol 127:2516-2524. https://doi.org/10.1038/sj.jid.5700770
  14. Pujol A, Bayard F (1979) Androgen receptors in the rat epididymis and their hormonal control. J Reprod Fert 56:217-222. https://doi.org/10.1530/jrf.0.0560217
  15. Robaire B, Hermo L (1988) Efferent ducts, epididymis, and vas deferens: structure, functions, and their regulation. In: Knobil E et al (eds.). The Physiology of Reproduction. Raven Press, New York, NY, pp 999-1080.
  16. Robaire B, Hinton BT, Orgebin-Crist MC (2006) The epididymis. In: Knobil E and Neil J (eds.). The Physiology of Reproduction, Elsevier, New York, NY pp 1071-1148.
  17. Seo H-H, Seon C-W, Choi I, Cheon Y-P, Cheon T-H, Lee K-H (2010) Expressional profiling of connexin isoforms in the initial segment of the male reproductive tract during postnatal development. Reprod Dev Biol 34:103-109.