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首页> 外文期刊>Biology of Reproduction: Offical Journal of the Society for the Study of Reproduction >Increased expression of the Na,K-ATPase alpha4 isoform enhances sperm motility in transgenic mice.
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Increased expression of the Na,K-ATPase alpha4 isoform enhances sperm motility in transgenic mice.

机译:Na,K-ATPaseα4同工型的表达增加,可提高转基因小鼠的精子运动能力。

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摘要

The Na,K-ATPase alpha4 (ATP1A4) isoform is specifically expressed in male germ cells and is highly prevalent in spermatozoa. Although selective inhibition of alpha4 activity with ouabain has been shown to affect sperm motility, a more direct analysis of the role of this isoform in sperm movement has not yet been demonstrated. To establish this, we engineered transgenic mice that express the rat alpha4 isoform fused to green fluorescent protein in male germ cells, under the control of the mouse protamine 1 promoter. We showed that the rat Atp1a4 transgene is expressed in mouse spermatozoa and that it is localized to the sperm flagellum. In agreement with increased expression of the alpha4 isoform, sperm from transgenic mice displayed higher alpha4-specific Na,K-ATPase activity and binding of fluorescently labeled ouabain than wild-type mice. In contrast, expression and activity of ATP1A1 (alpha1), the other Na,K-ATPase alpha isoform present in sperm, remained unchanged. Similar to wild-type mice, mice expressing the alpha4 transgene exhibited normal testis and sperm morphology and no differences in fertility. However, compared to wild-type mice, sperm from transgenic mice displayed plasma membrane hyperpolarization and higher total and progressive motility. Other parameters of motility also increased, including straight-line, curvilinear, and average path velocities and amplitude of lateral head displacement. In addition, sperm from the transgenic mice showed enhanced sperm hyperactive motility, but no changes in progesterone-induced acrosome reaction. Altogether, these results provide new genetic evidence for the role of the ATP1A4 isoform in sperm motility, under both noncapacitating and capacitating conditions.
机译:Na,K-ATPaseα4(ATP1A4)亚型在雄性生殖细胞中特异性表达,在精子中高度流行。尽管已显示用哇巴因对α4活性的选择性抑制会影响精子的活动性,但尚未证明对该同工型在精子运动中的作用进行更直接的分析。为了确定这一点,我们设计了在小鼠鱼精蛋白1启动子的控制下表达与雄性生殖细胞中绿色荧光蛋白融合的大鼠alpha4亚型的转基因小鼠。我们显示大鼠Atp1a4转基因在小鼠精子中表达,并且定位于鞭毛。与α4同工型的表达增加一致,来自转基因小鼠的精子显示出比野生型小鼠更高的α4特异性Na,K-ATP酶活性和荧光标记的哇巴因的结合。相反,精子中存在的另一种Na,K-ATPaseα同工型ATP1A1(alpha1)的表达和活性保持不变。与野生型小鼠相似,表达alpha4转基因的小鼠表现出正常的睾丸和精子形态,并且在生育力方面没有差异。然而,与野生型小鼠相比,来自转基因小鼠的精子表现出质膜超极化和更高的总和进行性运动。运动的其他参数也增加了,包括直线,曲线和平均路径速度以及头部横向位移的幅度。此外,来自转基因小鼠的精子表现出增强的精子活力,但孕酮诱导的顶体反应没有变化。总而言之,这些结果为ATP1A4同工型在无能和无能条件下在精子运动中的作用提供了新的遗传证据。

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