首页> 外文期刊>The Journal of Physiology >Activation of a Ca2+-permeable cation channel by two different inducers of apoptosis in a human prostatic cancer cell line.
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Activation of a Ca2+-permeable cation channel by two different inducers of apoptosis in a human prostatic cancer cell line.

机译:两种不同的凋亡诱导剂在人前列腺癌细胞系中激活Ca2 +渗透性阳离子通道。

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1. We have combined patch clamp recording with simultaneous [Ca2+]i measurements in single LNCaP cells (a human prostate cancer cell line), to study the activation of Ca2+-permeable channels by two different inducers of apoptosis, ionomycin and serum deprivation. 2. In perforated patch recording, LNCaP cells had a membrane potential of -40 mV and a resting [Ca2+]i of 90 nM. Application of ionomycin at levels that induced apoptosis in these cells (10 microM) produced a biphasic increase in [Ca2+]i. The first rise in [Ca2+]i was due to release of Ca2+ from internal stores and it was associated with a membrane hyperpolarization to -77 mV. The latter was probably due to the activation of high conductance, Ca2+- and voltage-dependent K+ channels (maxi-K). Conversely, the second rise in [Ca2+]i was always preceded by and strictly associated with membrane depolarization and required external Ca2+. Serum deprivation, another inducer of apoptosis, unmasked a voltage-independent Ca2+ permeability as well. 3. A lower concentration of ionomycin (1 microM) did not induce apoptosis, and neither depolarized LNCaP cells nor produced the biphasic increase in [Ca2+]i. However, the first increment in [Ca2+]i due to release from internal Ca2+ stores was evident at this concentration of ionomycin. 4. Simultaneous recordings of [Ca2+]i and ion channel activity in the cell attached configuration of patch clamp revealed a Ca2+-permeable, Ca2+-independent, non-selective cation channel of 23 pS conductance. This channel was activated only during the second increment in [Ca2+]i induced by ionomycin. The absence of serum activated the 23 pS channel as well, albeit at a lower frequency than with ionomycin. 5. Thus, the 23 pS channel can be activated by two unrelated inducers of apoptosis and it could be another Ca2+ influx mechanism in programmed cell death of LNCaP cells.
机译:1.我们将膜片钳记录与同时在单个LNCaP细胞(人前列腺癌细胞系)中的[Ca2 +] i测量相结合,以研究两种不同的凋亡诱导剂,离子霉素和血清剥夺对Ca2 +渗透通道的激活。 2.在穿孔斑块记录中,LNCaP细胞的膜电位为-40 mV,静止的[Ca2 +] i为90 nM。应用离子霉素以诱导这些细胞凋亡的水平(10 microM)产生[Ca2 +] i的双相增加。 [Ca2 +] i的首次上升是由于Ca2 +从内部存储中释放出来,并且与膜超极化至-77 mV有关。后者可能是由于高电导,Ca2 +和电压依赖性K +通道(maxi-K)的激活所致。相反,[Ca2 +] i的第二次上升总是在膜去极化和所需外部Ca2 +之前发生,并与之紧密相关。血清凋亡是细胞凋亡的另一种诱因,它也揭示了电压依赖性Ca2 +渗透性。 3.较低浓度的离子霉素(1 microM)不会诱导细胞凋亡,也不会使去极化的LNCaP细胞也不会引起[Ca2 +] i的双相增加。但是,在此浓度的离子霉素下,由于从内部Ca2 +储存释放而导致的[Ca2 +] i的首次增加是明显的。 4.在膜片钳的细胞附着构型中同时记录[Ca2 +] i和离子通道活性,揭示了电导率为23 pS的可渗透Ca2 +的,独立于Ca2 +的非选择性阳离子通道。该通道仅在离子霉素诱导的[Ca2 +] i的第二次增加期间被激活。血清的缺乏也激活了23 pS通道,尽管其频率低于离子霉素。 5.因此,23 pS通道可以由两种不相关的凋亡诱导剂激活,并且可能是LNCaP细胞程序性细胞死亡中的另一种Ca2 +内流机制。

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