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Slo3,一种来自哺乳动物精母细胞的新型pH敏感钾通道。

Slo3, a novel pH-sensitive K+ channel from mammalian spermatocytes.

作者信息

Schreiber M, Wei A, Yuan A, Gaut J, Saito M, Salkoff L

机构信息

Department of Anatomy, Washington University School of Medicine, St. Louis, Missouri 63110, USA.

出版信息

J Biol Chem. 1998 Feb 6;273(6):3509-16. doi: 10.1074/jbc.273.6.3509.

Abstract

Potassium channels have evolved to play specialized roles in both excitable and inexcitable tissues. Here we describe the cloning and expression of Slo3, a novel potassium channel abundantly expressed in mammalian spermatocytes. Slo3 represents a new and unique type of potassium channel regulated by both intracellular pH and membrane voltage. Reverse transcription-polymerase chain reaction, Northern analysis, and in situ hybridization show that Slo3 is primarily expressed in testis in both mouse and human. Because of its sensitivity to both pH and voltage, Slo3 could be involved in sperm capacitation and/or the acrosome reaction, essential steps in fertilization where changes in both intracellular pH and membrane potential are known to occur. The protein sequence of mSlo3 (the mouse Slo3 homologue) is similar to Slo1, the large conductance, calcium- and voltage-gated potassium channel. These results suggest that Slo channels comprise a multigene family, defined by a combination of sensitivity to voltage and a variety of intracellular factors. Northern analysis from human testis indicates that a Slo3 homologue is present in humans and conserved with regard to sequence, transcript size, and tissue distribution. Because of its high testis-specific expression, pharmacological agents that target human Slo3 channels may be useful in both the study of fertilization as well as in the control or enhancement of fertility.

摘要

钾通道已进化到在可兴奋和不可兴奋组织中发挥特定作用。在此我们描述了Slo3的克隆和表达,Slo3是一种在哺乳动物精母细胞中大量表达的新型钾通道。Slo3代表了一种新型且独特的钾通道,受细胞内pH值和膜电压的双重调节。逆转录-聚合酶链反应、Northern印迹分析和原位杂交表明,Slo3在小鼠和人类的睾丸中均主要表达。由于其对pH值和电压均敏感,Slo3可能参与精子获能和/或顶体反应,这是受精过程中的关键步骤,已知在此过程中细胞内pH值和膜电位都会发生变化。mSlo3(小鼠Slo3同源物)的蛋白质序列与Slo1相似,Slo1是一种大电导、钙和电压门控钾通道。这些结果表明,Slo通道构成了一个多基因家族,其定义为对电压和多种细胞内因子的敏感性组合。来自人类睾丸的Northern印迹分析表明,人类存在Slo3同源物,且在序列、转录本大小和组织分布方面保守。由于其在睾丸中的高特异性表达,靶向人类Slo3通道的药物制剂可能在受精研究以及生育控制或增强方面都有用处。

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