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A Role for Cyclic Nucleotide-Gated Channels in the Capacitation of Mammalian Sperm

机译:循环核苷酸门控通道在哺乳动物精子的电容中的作用

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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 potch-clomp 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 muM), 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.
机译:在通过女性生殖道,哺乳动物的精子采集过境施肥在一个叫做获能过程中的卵子的能力。在此次活动中的cAMP和cGMP增加细胞内的水平,这表明环核苷酸门控(CNG)通道,已在哺乳动物精子已经确定,发挥其生理功能的作用。在这里,我们报告的环核苷酸对小鼠精子的影响的电生理特性。利用在全细胞构造中potch-clomp技术中,我们表明,宏观离子电流通过加入两者的增强,8Br-cAMP和8Br-cGMP的非获能小鼠精子。虽然环核苷酸调节CNG通道的活性,也可发生环核苷酸的不同的影响。加入L-顺式地尔硫卓(50 MUM),CNG通道,通过cGMP的引出部分阻断电流的特异性抑制剂,表明CNG通道在哺乳动物精子的受精能力发挥作用的。

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