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Slc26a3 缺乏与小鼠附睾发育不良和精子受精能力受损有关。

Slc26a3 deficiency is associated with epididymis dysplasia and impaired sperm fertilization potential in the mouse.

机构信息

INSERM, U1016, Institut Cochin, Departement of Development, Reproduction and Cancer, Paris, France.

CNRS, UMR8104, Paris, France.

出版信息

Mol Reprod Dev. 2018 Aug;85(8-9):682-695. doi: 10.1002/mrd.23055. Epub 2018 Sep 7.

Abstract

Members of the solute carrier 26 (SLC26) family have emerged as important players in mediating anions fluxes across the plasma membrane of epithelial cells, in cooperation with the cystic fibrosis transmembrane conductance regulator (CFTR) chloride channel. Among them, SLC26A3 acts as a chloride/bicarbonate exchanger, highly expressed in the gastrointestinal, pancreatic and renal tissues. In humans, mutations in the SLC26A3 gene were shown to induce congenital chloride-losing diarrhea (CLD), a rare autosomal recessive disorder characterized by life-long secretory diarrhea. In view of some reports indicating subfertility in some male CLD patients together with SLC26-A3 and -A6 expression in the male genital tract and sperm cells, we analyzed the male reproductive parameters and functions of SLC26A3 deficient mice, which were previously reported to display CLD gastro-intestinal features. We show that in contrast to Slc26a6, deletion of Slc26a3 is associated with severe lesions and abnormal cytoarchitecture of the epididymis, together with sperm quantitative, morphological and functional defects, which altogether compromised male fertility. Overall, our work provides new insight into the pathophysiological mechanisms that may alter the reproductive functions and lead to male subfertility in CLD patients, with a phenotype reminiscent of that induced by CFTR deficiency in the male genital tract.

摘要

溶质载体 26(SLC26)家族成员已成为在与囊性纤维化跨膜电导调节因子(CFTR)氯离子通道合作介导上皮细胞质膜阴离子通量的重要参与者。其中,SLC26A3 作为氯离子/碳酸氢根交换体,在胃肠道、胰腺和肾脏组织中高度表达。在人类中,SLC26A3 基因突变被证明会导致先天性氯丢失性腹泻(CLD),这是一种罕见的常染色体隐性疾病,其特征是终身分泌性腹泻。鉴于一些报道表明,一些 CLD 男性患者存在生育能力低下,同时 SLC26-A3 和 -A6 在男性生殖道和精子细胞中表达,我们分析了 SLC26A3 缺失小鼠的男性生殖参数和功能,此前的研究表明这些小鼠存在 CLD 胃肠道特征。我们发现,与 Slc26a6 不同,Slc26a3 的缺失与附睾的严重病变和异常细胞结构以及精子数量、形态和功能缺陷有关,这共同损害了男性生育能力。总的来说,我们的工作为可能改变生殖功能并导致 CLD 患者男性生育能力低下的病理生理机制提供了新的见解,其表型类似于 CFTR 在男性生殖道中缺乏引起的表型。

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