A role for cyclic nucleotide-gated channels in the capacitation of mammalian sperm.

A Cisneros-Mejorado, D Sánchez
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Abstract

In their transit through the female genital tract, mammalian sperm acquire the ability to fertilize the egg in a process called capacitation. During this event the intracellular levels of cAMP and cGMP increase, suggesting that cyclic nucleotide-gated (CNG) channels, which have been identified in mammalian sperm, play a functional role in their physiology. Here we report an electrophysiological characterization of the effect of cyclic nucleotides on mouse sperm. Using the patch-clamp technique in the whole-cell configuration, we show that macroscopic ionic currents are augmented by the addition of both, 8Br-cAMP and 8Br-cGMP to non-capacitated mouse sperm. Although cyclic nucleotide regulates the activity of CNG channels, disparate effects of cyclic nucleotides may also occur. Addition of L-cis-diltiazem (50 microM), a specific inhibitor of CNG channels, partially blocked currents elicited by cGMP, suggesting that CNG channels play a role in the fertilization capability of mammalian sperm.

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环核苷酸门控通道在哺乳动物精子获能中的作用。
哺乳动物的精子在通过雌性生殖道的过程中获得了使卵子受精的能力,这一过程被称为获能。在此过程中,细胞内cAMP和cGMP水平增加,表明在哺乳动物精子中发现的环核苷酸门控(CNG)通道在其生理中发挥了功能作用。在这里,我们报告了环核苷酸对小鼠精子影响的电生理表征。在全细胞结构中使用膜片钳技术,我们发现在非失能小鼠精子中添加8Br-cAMP和8Br-cGMP可以增强宏观离子电流。虽然环核苷酸调节CNG通道的活性,但环核苷酸也可能产生不同的影响。添加CNG通道特异性抑制剂l -顺式地尔硫卓(50 μ m)可部分阻断cGMP引发的电流,提示CNG通道在哺乳动物精子的受精能力中发挥作用。
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