Literature DB >> 12388089

Expression of multiple connexins in the rat epididymis indicates a complex regulation of gap junctional communication.

Julie Dufresne1, Kenneth W Finnson, Mary Gregory, Daniel G Cyr.   

Abstract

In the epididymis, Cx43 forms gap junctions between principal and basal cells but not between adjacent principal cells. Cx30.3, 31.1, and 32 were identified in adult rat epididymis by RT-PCR, whereas Cx26 was present in young rats. Postnatal development studies indicate that Cx26 mRNA was detectable only in the caput-corpus region of the epididymis and that levels increased by fivefold during the first 4 wk postnatally, when epithelial cells differentiate, and decrease to nondetectable levels thereafter. Cx31.1 and Cx32 mRNA levels were low throughout the epididymis in young rats and began to increase in the second and third weeks postnatally, when Cx26 levels are decreasing. Both Cx26 and Cx32 were localized to the lateral plasma membranes between adjacent epithelial cells of the epididymis. Colocalization studies indicate that Cx26 and Cx32 exist either independently of one another or can colocalize along the lateral plasma membrane of epithelial cells in young rats or between principal cells in the adult rat epididymis. The presence of multiple connexins (Cxs) and their differential regulation suggest that these play different roles in epididymal development.

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Year:  2002        PMID: 12388089     DOI: 10.1152/ajpcell.00111.2002

Source DB:  PubMed          Journal:  Am J Physiol Cell Physiol        ISSN: 0363-6143            Impact factor:   4.249


  15 in total

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Journal:  Biol Reprod       Date:  2015-09-23       Impact factor: 4.285

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8.  Cell-cell interaction underlies formation of fluid in the male reproductive tract of the rat.

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9.  Expressional Modulation of Connexin Isoforms in the Initial Segment of Male Rat treated with Estradiol Benzoate or Flutamide.

Authors:  Ki-Ho Lee
Journal:  Dev Reprod       Date:  2014-12

10.  Self-renewal and differentiation of rat epididymal basal cells using a novel in vitro organoid model†.

Authors:  Laurie Pinel; Daniel G Cyr
Journal:  Biol Reprod       Date:  2021-10-11       Impact factor: 4.161

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