首页> 外文OA文献 >Nucleoside triphosphate diphosphohydrolase-1 ectonucleotidase is required for normal vas deferens contraction and male fertility through maintaining P2X1 receptor function.
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Nucleoside triphosphate diphosphohydrolase-1 ectonucleotidase is required for normal vas deferens contraction and male fertility through maintaining P2X1 receptor function.

机译:通过维持P2X1受体功能,正常的输精管收缩和男性生育力需要核苷三磷酸二磷酸水解酶-1胞外核苷酸酶。

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摘要

In this work, we report that Entpd1(-/-) mice, deficient for the ectonucleotidase nucleoside triphosphate diphosphohydrolase-1 (NTPDase1), produce smaller litters (27% reduction) compared with wild-type C57BL6 animals. This deficit is linked to reduced in vivo oocyte fertilization by Entpd1(-/-) males (61 ± 11% versus 88 ± 7% for Entpd1(+/+)). Normal epididymal sperm count, spermatozoa morphology, capacitation, and motility and reduced ejaculated sperm number (2.4 ± 0.5 versus 3.7 ± 0.4 million for Entpd1(+/+)) pointed to vas deferens dysfunction. NTPDase1 was localized by immunofluorescence in the tunica muscularis of the vas deferens. Its absence resulted in a major ATP hydrolysis deficiency, as observed in situ by histochemistry and in primary smooth muscle cell cultures. In vitro, Entpd1(-/-) vas deferens displayed an exacerbated contraction to ATP, a diminished response to its non-hydrolysable analog αβMeATP, and a reduced contraction to electrical field stimulation, suggesting altered P2X1 receptor function with a propensity to desensitize. This functional alteration was accompanied by a 3-fold decrease in P2X1 protein expression in Entpd1(-/-) vas deferens with no variation in mRNA levels. Accordingly, exogenous nucleotidase activity was required to fully preserve P2X1 receptor activation by ATP in vitro. Our study demonstrates that NTPDase1 is required to maintain normal P2X1 receptor functionality in the vas deferens and that its absence leads to impaired peristalsis, reduced spermatozoa concentration in the semen, and, eventually, reduced fertility. This suggests that alteration of NTPDase1 activity affects ejaculation efficacy and male fertility. This work may contribute to unveil a cause of infertility and open new therapeutic potentials.
机译:在这项工作中,我们报告Entpd1(-/-)小鼠,其外切核苷酸酶核苷三磷酸二磷酸水解酶1(NTPDase1)不足,与野生型C57BL6动物相比,产仔数更少(减少了27%)。这种缺陷与Entpd1(-/-)男性体内卵母细胞受精率降低有关(Entpd1(+ / +)为61±11%,而88±7%)。正常的附睾精子计数,精子形态,获能和运动能力以及射精精子数量减少(Entpd1(+ / +)为2.4±0.5对3.7±0.4百万)表明输精管功能障碍。 NTPDase1通过免疫荧光定位在输精管的肌膜中。如通过组织化学和原代平滑肌细胞培养原位观察到的,它的缺乏导致了主要的ATP水解缺陷。在体外,Entpd1(-/-)输精管表现出对ATP的加剧收缩,对其不可水解类似物αβMeATP的反应减弱,对电场刺激的收缩减少,这表明P2X1受体功能改变,具有脱敏倾向。此功能更改伴随Entpd1(-/-)输精管中P2X1蛋白表达降低3倍,而mRNA水平无变化。因此,需要外源核苷酸酶活性以完全保持体外ATP激活P2X1受体。我们的研究表明,NTPDase1是维持输精管正常P2X1受体功能所必需的,缺乏它会导致蠕动受损,精液中精子浓度降低以及最终导致生育力降低。这表明NTPDase1活性的改变会影响射精功效和男性生育能力。这项工作可能有助于揭示不孕的原因并开辟新的治疗潜力。

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