首页> 外文期刊>Frontiers in Physiology >The Balance of HCO 3 - Secretion vs. Reabsorption in the Endometrial Epithelium Regulates Uterine Fluid pH
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The Balance of HCO 3 - Secretion vs. Reabsorption in the Endometrial Epithelium Regulates Uterine Fluid pH

机译: HCO 3 - 子宫内膜上皮分泌与再吸收的关系调节子宫液的pH

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Uterine fluid contains a high concentration of HCO 3 - which plays an essential role in sperm capacitation and fertilization. In addition, the HCO 3 - concentration in uterine fluid changes periodically during the estrous cycle. It is well-known that the endometrial epithelium contains machineries involving the apical SLC26 family anion exchangers for secreting HCO 3 - into the uterine fluid. In the present study, we find for the first time that the electroneutral Na~(+)/ HCO 3 - cotransporter NBCn1 is expressed at the apical membrane of the endometrial epithelium. The protein abundance of the apical NBCn1 and that of the apical SLC26A4 and SLC26A6 are reciprocally regulated during the estrous cycle in the uterus. NBCn1 is most abundant at diestrus, whereas SLC26A4/A6 are most abundant at proestrus/estrus. In the ovariectomized mice, the expression of uterine NBCn1 is inhibited by β-estradiol, but stimulated by progesterone, whereas that of uterine SLC26A4/A6 is stimulated by β-estradiol. In vivo perfusion studies show that the endometrial epithelium is capable of both secreting and reabsorbing HCO 3 - . Moreover, the activity for HCO 3 - secretion by the endometrial epithelium is significantly higher at estrus than it is at diestrus. The opposite is true for HCO 3 - reabsorption. We conclude that the endometrial epithelium simultaneously contains the activity for HCO 3 - secretion involving the apical SLC26A4/A6 and the activity for HCO 3 - reabsorption involving the apical NBCn1, and that the acid-base homeostasis in the uterine fluid is regulated by the finely-tuned balance of the two activities.
机译:子宫液中含有高浓度的HCO 3-在精子获能和受精中起重要作用。另外,在发情周期中,子宫液中的HCO 3-浓度周期性地变化。众所周知,子宫内膜上皮包含涉及顶端SLC26家族阴离子交换剂的机制,这些机制可将HCO 3-分泌到子宫液中。在本研究中,我们首次发现电中性Na〜(+)/ HCO 3-共转运蛋白NBCn1在子宫内膜上皮的顶膜表达。在子宫的发情周期中,顶端NBCn1和顶端SLC26A4和SLC26A6的蛋白质丰度相互调节。 NBCn1在发情期最丰富,而SLC26A4 / A6在发情期/发情期最丰富。在切除卵巢的小鼠中,子宫NBCn1的表达受到β-雌二醇的抑制,但受孕酮刺激,而子宫SLC26A4 / A6的表达受到β-雌二醇的刺激。体内灌注研究表明,子宫内膜上皮能够分泌和吸收HCO 3-。而且,发情期子宫内膜上皮分泌HCO 3-的活性明显高于发情期。对于HCO 3-重吸收则相反。我们得出的结论是,子宫内膜上皮细胞同时含有涉及顶端SLC26A4 / A6的HCO 3-分泌活性和涉及顶端NBCn1的HCO 3-重吸收活性,并且子宫液中的酸碱稳态由精细调节。调整两个活动的平衡。

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