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首页> 外文期刊>The FASEB Journal >Epididymal protein Rnase10 is required for post-testicular sperm maturation and male fertility
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Epididymal protein Rnase10 is required for post-testicular sperm maturation and male fertility

机译:睾丸后精子成熟和男性生育需要附睾蛋白Rnase10

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Eutherian spermatozoa are dependent on the environment of the proximal epididymis to complete their maturation; however, no specific epididymal factors that mediate this process have so far been identified. Here, we show that targeted disruption of the novel gene Rnase10 encoding a secreted proximal epididymal protein in the mouse results in a binding defect in spermatozoa and their inability to pass through the uterotubal junction in the female. The failure to gain the site of fertilization in the knockout spermatozoa is associated with a gradual loss of ADAM3 and ADAM6 proteins during epididymal transit. In the distal epididymis, these spermatozoa appear to lack calcium-dependent associations with the immobilizing glutinous extracellular material and are released as single, vigorously motile cells that display no tendency for head-to-head agglutination and lack affinity to the oviductal epithelium. In sperm-egg binding assay, they are unable to establish a tenacious association with the zona pellucida, yet they are capable of fertilization. Furthermore, these sperm show accelerated capacitation resulting in an overall in vitro fertilizing ability superior to that of wild-type sperm. We conclude that the physiological role of sperm adhesiveness is in the mechanism of restricted sperm entry into the oviduct rather than in sperm-egg interaction.—Krutskikh, A., Poliandri, A., Cabrera-Sharp, V., Dacheux, J. L., Poutanen, M., Huhtaniemi, I. Epididymal protein Rnase10 is required for post-testicular sperm maturation and male fertility.
机译:Eutherian精子依赖于近端附睾的环境来完成其成熟。然而,到目前为止,尚未发现介导该过程的特定附睾因子。在这里,我们表明,小鼠中编码分泌的近端附睾蛋白的新型基因Rnase10的靶向破坏导致精子的结合缺陷,并使它们无法通过女性的子宫输卵管交界处。剔除精子中无法获得受精部位的原因与附睾转运过程中ADAM3和ADAM6蛋白的逐渐丧失有关。在远端附睾中,这些精子似乎与固定的粘液性细胞外物质缺乏钙依赖性结合,并以单一的有活力的细胞释放,没有头对头凝集的趋势,并且对输卵管上皮没有亲和力。在精卵结合试验中,它们无法与透明带建立牢固的联系,但能够受精。此外,这些精子表现出加速的获能能力,从而产生了优于野生型精子的总体体外受精能力。我们得出的结论是,精子粘附的生理作用是受限制的精子进入输卵管的机制,而不是精卵相互作用。—Krutskikh,A.,Poliandri,A.,Cabrera-Sharp,V.,Dacheux,JL, Poutanen,M.,Huhtaniemi,I.睾丸后精子成熟和男性生育需要附睾蛋白Rnase10。

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