Loss of SLC9A3 decreases CFTR protein and causes obstructed azoospermia in mice.

Mutations in the cystic fibrosis transmembrane conductance regulator (CFTR) gene cause cystic fibrosis (CF) and are associated with congenital bilateral absence of the vas deferens (CBAVD), which is the major cause of infertility in male patients with CF. However, most Taiwanese patients with CBAVD...

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Main Authors: Ya-Yun Wang, Ying-Hung Lin, Yi-No Wu, Yen-Lin Chen, Yung-Chih Lin, Chiao-Yin Cheng, Han-Sun Chiang
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2017-04-01
Series:PLoS Genetics
Online Access:http://europepmc.org/articles/PMC5398719?pdf=render
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spelling doaj-bc904cd41cb14ba59a3e3fbe4c4778982020-11-25T02:30:16ZengPublic Library of Science (PLoS)PLoS Genetics1553-73901553-74042017-04-01134e100671510.1371/journal.pgen.1006715Loss of SLC9A3 decreases CFTR protein and causes obstructed azoospermia in mice.Ya-Yun WangYing-Hung LinYi-No WuYen-Lin ChenYung-Chih LinChiao-Yin ChengHan-Sun ChiangMutations in the cystic fibrosis transmembrane conductance regulator (CFTR) gene cause cystic fibrosis (CF) and are associated with congenital bilateral absence of the vas deferens (CBAVD), which is the major cause of infertility in male patients with CF. However, most Taiwanese patients with CBAVD do not carry major CFTR mutations. Some patients have a single copy deletion of the solute carrier family 9 isoform 3 (SLC9A3) gene. SLC9A3 is a Na+/H+ exchanger, and depleted Slc9a3 in male mice causes infertility due to the abnormal dilated lumen of the rete testis and efferent ductules. Furthermore, SLC9A3 interacts with CFTR in the pancreatic duct and functions as a genetic modifier of CF. However, SLC9A3 function and its relation to CFTR expression in the male reproductive tract in vivo remain elusive. In the present study, we found that CFTR expression was dramatically decreased in the epididymis and vas deferens of Slc9a3 knockout mice. Adult Slc9a3-/- mice showed not only significantly decreased epididymis and vas deferens weight but also increased testis weight. Furthermore, Slc9a3-/- mice developed obstructive azoospermia because of abnormal abundant secretions and calcification in the lumen of the reproductive tract. Ultrastructural analysis of the epithelium in Slc9a3-/-epididymis and vas deferens displayed disorganized and reduced number of stereocilia and numerous secretory apparatuses. Our data revealed that interdependence between SLC9A3 and CFTR is critical for maintaining a precise microenvironment in the epithelial cytoarchitecture of the male reproductive tract. The Slc9a3-deficient mice with impaired male excurrent ducts in this study provide proof for our clinical findings that some Taiwanese of CBAVD carry SLC9A3 deletion but without major CFTR mutations.http://europepmc.org/articles/PMC5398719?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Ya-Yun Wang
Ying-Hung Lin
Yi-No Wu
Yen-Lin Chen
Yung-Chih Lin
Chiao-Yin Cheng
Han-Sun Chiang
spellingShingle Ya-Yun Wang
Ying-Hung Lin
Yi-No Wu
Yen-Lin Chen
Yung-Chih Lin
Chiao-Yin Cheng
Han-Sun Chiang
Loss of SLC9A3 decreases CFTR protein and causes obstructed azoospermia in mice.
PLoS Genetics
author_facet Ya-Yun Wang
Ying-Hung Lin
Yi-No Wu
Yen-Lin Chen
Yung-Chih Lin
Chiao-Yin Cheng
Han-Sun Chiang
author_sort Ya-Yun Wang
title Loss of SLC9A3 decreases CFTR protein and causes obstructed azoospermia in mice.
title_short Loss of SLC9A3 decreases CFTR protein and causes obstructed azoospermia in mice.
title_full Loss of SLC9A3 decreases CFTR protein and causes obstructed azoospermia in mice.
title_fullStr Loss of SLC9A3 decreases CFTR protein and causes obstructed azoospermia in mice.
title_full_unstemmed Loss of SLC9A3 decreases CFTR protein and causes obstructed azoospermia in mice.
title_sort loss of slc9a3 decreases cftr protein and causes obstructed azoospermia in mice.
publisher Public Library of Science (PLoS)
series PLoS Genetics
issn 1553-7390
1553-7404
publishDate 2017-04-01
description Mutations in the cystic fibrosis transmembrane conductance regulator (CFTR) gene cause cystic fibrosis (CF) and are associated with congenital bilateral absence of the vas deferens (CBAVD), which is the major cause of infertility in male patients with CF. However, most Taiwanese patients with CBAVD do not carry major CFTR mutations. Some patients have a single copy deletion of the solute carrier family 9 isoform 3 (SLC9A3) gene. SLC9A3 is a Na+/H+ exchanger, and depleted Slc9a3 in male mice causes infertility due to the abnormal dilated lumen of the rete testis and efferent ductules. Furthermore, SLC9A3 interacts with CFTR in the pancreatic duct and functions as a genetic modifier of CF. However, SLC9A3 function and its relation to CFTR expression in the male reproductive tract in vivo remain elusive. In the present study, we found that CFTR expression was dramatically decreased in the epididymis and vas deferens of Slc9a3 knockout mice. Adult Slc9a3-/- mice showed not only significantly decreased epididymis and vas deferens weight but also increased testis weight. Furthermore, Slc9a3-/- mice developed obstructive azoospermia because of abnormal abundant secretions and calcification in the lumen of the reproductive tract. Ultrastructural analysis of the epithelium in Slc9a3-/-epididymis and vas deferens displayed disorganized and reduced number of stereocilia and numerous secretory apparatuses. Our data revealed that interdependence between SLC9A3 and CFTR is critical for maintaining a precise microenvironment in the epithelial cytoarchitecture of the male reproductive tract. The Slc9a3-deficient mice with impaired male excurrent ducts in this study provide proof for our clinical findings that some Taiwanese of CBAVD carry SLC9A3 deletion but without major CFTR mutations.
url http://europepmc.org/articles/PMC5398719?pdf=render
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