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人类精子获能过程中的膜超极化

Membrane hyperpolarization during human sperm capacitation.

作者信息

López-González I, Torres-Rodríguez P, Sánchez-Carranza O, Solís-López A, Santi C M, Darszon A, Treviño C L

机构信息

Departamento de Genética del Desarrollo y Fisiología Molecular, Instituto de Biotecnología, Universidad Nacional Autónoma de México, Cuernavaca, Morelos 62210, México.

Department of Anatomy and Neurobiology, Washington University School of Medicine, 660 S Euclid Ave, St. Louis, MO 63110, USA.

出版信息

Mol Hum Reprod. 2014 Jul;20(7):619-29. doi: 10.1093/molehr/gau029. Epub 2014 Apr 15.

Abstract

Sperm capacitation is a complex and indispensable physiological process that spermatozoa must undergo in order to acquire fertilization capability. Spermatozoa from several mammalian species, including mice, exhibit a capacitation-associated plasma membrane hyperpolarization, which is necessary for the acrosome reaction to occur. Despite its importance, this hyperpolarization event has not been adequately examined in human sperm. In this report we used flow cytometry to show that a subpopulation of human sperm indeed undergo a plasma membrane hyperpolarization upon in vitro capacitation. This hyperpolarization correlated with two other well-characterized capacitation parameters, namely an increase in intracellular pH and Ca(2+) concentration, measured also by flow cytometry. We found that sperm membrane hyperpolarization was completely abolished in the presence of a high external K(+) concentration (60 mM), indicating the participation of K(+) channels. In order to identify, which of the potential K(+) channels were involved in this hyperpolarization, we used different K(+) channel inhibitors including charybdotoxin, slotoxin and iberiotoxin (which target Slo1) and clofilium (a more specific blocker for Slo3). All these K(+) channel antagonists inhibited membrane hyperpolarization to a similar extent, suggesting that both members of the Slo family may potentially participate. Two very recent papers recorded K(+) currents in human sperm electrophysiologically, with some contradictory results. In the present work, we show through immunoblotting that Slo3 channels are present in the human sperm membrane. In addition, we found that human Slo3 channels expressed in CHO cells were sensitive to clofilium (50 μM). Considered altogether, our data indicate that Slo1 and Slo3 could share the preponderant role in the capacitation-associated hyperpolarization of human sperm in contrast to what has been previously reported for mouse sperm, where Slo3 channels are the main contributors to the hyperpolarization event.

摘要

精子获能是精子为获得受精能力而必须经历的一个复杂且不可或缺的生理过程。包括小鼠在内的几种哺乳动物的精子会表现出与获能相关的质膜超极化,这是顶体反应发生所必需的。尽管其很重要,但这种超极化事件在人类精子中尚未得到充分研究。在本报告中,我们使用流式细胞术表明,人类精子的一个亚群在体外获能时确实会发生质膜超极化。这种超极化与另外两个已充分表征的获能参数相关,即细胞内pH值和Ca(2+)浓度的增加,这两个参数也是通过流式细胞术测量的。我们发现,在高外部K(+)浓度(60 mM)存在的情况下,精子膜超极化完全被消除,表明K(+)通道参与其中。为了确定哪些潜在的K(+)通道参与了这种超极化,我们使用了不同的K(+)通道抑制剂,包括美洲毒素、梭毒素和埃博毒素(靶向Slo1)以及氯非铵(一种对Slo3更具特异性的阻滞剂)。所有这些K(+)通道拮抗剂都以相似的程度抑制膜超极化,表明Slo家族的两个成员都可能参与其中。最近有两篇论文用电生理学方法记录了人类精子中的K(+)电流,结果有些相互矛盾。在本研究中,我们通过免疫印迹表明Slo3通道存在于人类精子膜中。此外,我们发现,在CHO细胞中表达的人类Slo3通道对氯非铵(50 μM)敏感。综合考虑,我们的数据表明,与之前关于小鼠精子的报道不同,Slo1和Slo3可能在人类精子获能相关的超极化中共同发挥主要作用,在小鼠精子中,Slo3通道是超极化事件的主要贡献者。

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Membrane hyperpolarization during human sperm capacitation.人类精子获能过程中的膜超极化
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