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首页> 外文期刊>The Journal of Physiology >Intracellular calcium changes in mice Leydig cells are dependent on calcium entry through T-type calcium channels.
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Intracellular calcium changes in mice Leydig cells are dependent on calcium entry through T-type calcium channels.

机译:小鼠Leydig细胞的细胞内钙变化取决于钙通过T型钙通道的进入。

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摘要

Luteinizing hormone (LH) regulates testosterone synthesis in Leydig cells by inducing an intracellular increase in cAMP concentration. LH also increases the intracellular calcium concentration ([Ca2+]i), dependent on the presence of Ca2+ in the extracellular medium ([Ca2+]e) for its effect. Despite these evidences, the identity of a pathway for calcium entry has remained elusive and the relationship between cAMP and [Ca2+]i has been questioned. Here we show that mice Leydig cells do have an inward Ca2+ current carried by T-type Ca2+ channels. In 10 mm [Ca2+]e, the currents start to be activated at -60 mV, reaching maximal amplitude of 1.8 +/- 0.3 pA pF(-1) at -20 mV. Currents were not modified by Ba2+ or Sr2+, were suppressed in Ca2+-free external solution, and were blocked by 100 microm nickel or 100 microm cadmium. The Ki for Ni2+ is 2.6 microm and concentrations of Cd2+ smaller than 50 microm have a very small effect on the currents. The calcium currents displayed a window centred at -40 mV. The half-voltage (V0.5) of activation is -30.3 mV, whereas the half-voltage steady-state inactivation is -51.1 mV. The deactivation time constant (taudeactivation) is around 3 ms at -35 mV. Confocal microscopy experiments with Fluo-3 loaded cells reveal that both LH and dibutyryl-cAMP (db-cAMP) increase [Ca2+]i. The db-cAMP induced calcium increase was dependent on Ca2+ influx since it was abolished by removal of extracellular Ca2+ and by 400 microm Ni2+. [Ca2+]i increases in regions close to the plasma membrane and in the cell nucleus. Similar effects are seen when Leydig cells are depolarized by withdrawing K+ from the extracellular solution. Altogether, our studies show that Ca2+ influx through T-type Ca2+ channels in the plasma membrane of Leydig cells plays a crucial role in the intracellular calcium concentration changes that follow binding of LH to its receptor.
机译:黄体生成激素(LH)通过诱导细胞内cAMP浓度增加来调节Leydig细胞中的睾丸激素合成。 LH也会增加细胞内钙的浓度([Ca2 +] i),这取决于细胞外介质([Ca2 +] e)中Ca2 +的存在及其作用。尽管有这些证据,但钙进入途径的身份仍然难以捉摸,并且cAMP和[Ca2 +] i之间的关系也受到质疑。在这里,我们显示小鼠Leydig细胞确实具有由T型Ca2 +通道携带的内向Ca2 +电流。在10 mm [Ca2 +] e中,电流开始在-60 mV时被激活,在-20 mV时达到最大振幅1.8 +/- 0.3 pA pF(-1)。电流未被Ba2 +或Sr2 +修饰,在无Ca2 +的外部溶液中被抑制,并被100微米镍或100微米镉阻塞。 Ni2 +的Ki为2.6微米,而Cd2 +的浓度小于50微米对电流的影响很小。钙电流显示一个以-40 mV为中心的窗口。激活的半电压(V0.5)为-30.3 mV,而稳态的半电压失活为-51.1 mV。失活时间常数(taudeactivation)在-35 mV时约为3 ms。用Fluo-3加载的细胞进行的共聚焦显微镜实验表明LH和二丁酰cAMP(db-cAMP)均增加[Ca2 +] i。 db-cAMP诱导的钙增加依赖于Ca2 +流入,因为它通过去除细胞外Ca2 +和400微米Ni2 +而被取消。 [Ca 2+] i在靠近质膜的区域和细胞核中增加。当Leydig细胞通过从细胞外溶液中抽出K +去极化时,会看到类似的效果。总之,我们的研究表明,在LeHydig细胞质膜中,T2 Ca2 +通道中的Ca2 +流入在LH与其受体结合后的细胞内钙浓度变化中起着至关重要的作用。

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