Literature DB >> 2324001

Proteins in luminal fluid of the ram excurrent ducts: changes in composition and evidence for differential endocytosis.

D N Veeramachaneni1, R P Amann, J S Palmer, B T Hinton.   

Abstract

Rete testis fluid (RTF) and luminal fluid collected by micropuncture at selected epididymal sites were analyzed to characterize the spectrum of proteins and to quantify the net gain or loss of total/bulk protein and androgen-binding protein (ABP) between successive regions within the ductus epididymidis. Based on one-dimensional SDS gel electrophoresis, the spectra of proteins in RTF and fluids from the proximal, central, and distal caput through proximal corpus epididymidis differed from each other. Concentrations of sperm, bulk protein, and ABP increased from the rete testis through the central caput epididymidis. Electron microscopic studies following intraluminal microinjections of RTF proteins conjugated to colloidal gold at specific sites in the excurrent ducts revealed that 145 times more protein-gold was endocytosed in the ductuli efferentes than in any of the four regions of the caput epididymidis. Thus, ductuli efferentes were the major extra-testicular site of endocytosis of bulk protein present in RTF; at least a portion of the uptake was specific. On a per sperm basis, the amount of protein present in the central caput epididymidis was less than 15% of that leaving the testis. Although most of the protein present in RTF (greater than or equal to 86 mg/d) must be absorbed in the ductuli efferentes and the initial segment of the epididymis and replaced by newly secreted proteins (greater than or equal to 34 mg/d), there was negligible loss of ABP in these regions. Net loss of ABP occurred primarily in the distal caput and proximal corpus epididymidis. These studies demonstrate that ABP is spared from endocytosis along with the bulk protein in RTF and conserved for functions in epididymal regions far distal to the site of bulk protein loss.

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Year:  1990        PMID: 2324001

Source DB:  PubMed          Journal:  J Androl        ISSN: 0196-3635


  8 in total

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2.  Difference in abundance of blood and lymphatic capillaries in the murine epididymis.

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4.  Three-dimensional structure of efferent and epididymal ducts in mice.

Authors:  Hiroki Nakata; Shoichi Iseki
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5.  Ex3αERKO male infertility phenotype recapitulates the αERKO male phenotype.

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6.  Protein gene product 9.5 and ubiquitin immunoreactivities in rat epididymis epithelium.

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7.  Role of microRNAs in controlling gene expression in different segments of the human epididymis.

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Review 8.  Essential Roles of Efferent Duct Multicilia in Male Fertility.

Authors:  Mohammed Hoque; Eunice N Kim; Danny Chen; Feng-Qian Li; Ken-Ichi Takemaru
Journal:  Cells       Date:  2022-01-20       Impact factor: 6.600

  8 in total

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