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细胞内钙在PC12细胞中P2受体快速和缓慢脱敏中的作用。

Role of intracellular calcium in fast and slow desensitization of P2-receptors in PC12 cells.

作者信息

Khiroug L, Giniatullin R, Talantova M, Nistri A

机构信息

Biophysics Sector, International School for Advanced Studies (SISSA), Trieste, Italy.

出版信息

Br J Pharmacol. 1997 Apr;120(8):1552-60. doi: 10.1038/sj.bjp.0701060.

Abstract
  1. Combined whole-cell patch clamp recording and confocal laser scanning microscopy of [Ca2+]i transients were performed on single PC12 cells to study any correlation between membrane currents induced by ATP and elevation in [Ca2+]i. ATP was applied by pressure from micropipettes near the recorded PC12 cells continuously superfused at a fast rate. 2. Brief (20 ms) pulses of ATP elicited monophasic inward currents and [Ca2+]i increases. Long applications (2 s) of ATP (5 mM) evoked peak currents which rapidly faded during the pulse and were followed by a large rebound current, interpreted as due to rapid desensitization and recovery of P2-receptors. The associated [Ca2+]i increase grew monotonically to a peak reached only after the occurrence of the current rebound, indicating that it is unlikely this cation has a role in fast desensitization. 3. Both membrane currents and [Ca2+]i transients were linearly dependent on holding membrane potential, suggesting that Ca2+ influx is the predominant cause of [Ca2+]i elevation. This view was supported by experiments carried out in Ca(2+)-free solution. 4. Brief pulses of ATP applied after a desensitizing pulse (2 s) of the same elicited smaller inward currents and [Ca2+]i rises indicating a role for [Ca2+]i in controlling slow desensitization of P2-receptors. 5. This notion was confirmed in experiments with various [Ca2+]i chelators which differentially affected slow desensitization in relation to their buffering capacity, while sparing fast receptor desensitization. 6. These results suggest a role for [Ca2+]i in slow rather than fast desensitization of P2-receptors, thus proposing this divalent cation as an intracellular factor able to provide an efficient and reversible control over receptor activity induced by ATP.
摘要
  1. 对单个PC12细胞进行全细胞膜片钳记录与共聚焦激光扫描显微镜同步观察细胞内钙离子浓度([Ca2+]i)变化,以研究ATP诱导的膜电流与[Ca2+]i升高之间的关系。ATP通过靠近记录的PC12细胞的微量移液器施加压力,细胞在快速灌流中持续被灌流。2. 短暂(20毫秒)的ATP脉冲引发单相内向电流和[Ca2+]i升高。长时间施加(2秒)ATP(5毫摩尔)会诱发峰值电流,该电流在脉冲期间迅速衰减,随后出现大的反弹电流,这被解释为P2受体快速脱敏和恢复的结果。相关的[Ca2+]i升高单调增加至峰值,该峰值仅在电流反弹后才达到,表明该阳离子不太可能在快速脱敏中起作用。3. 膜电流和[Ca2+]i瞬变均与膜电位呈线性相关,这表明钙离子内流是[Ca2+]i升高的主要原因。在无钙溶液中进行的实验支持了这一观点。4. 在脱敏脉冲(2秒)后施加短暂的ATP脉冲会引发较小的内向电流和[Ca2+]i升高,这表明[Ca2+]i在控制P2受体的缓慢脱敏中起作用。5. 这一观点在使用各种[Ca2+]i螯合剂的实验中得到证实,这些螯合剂根据其缓冲能力对缓慢脱敏有不同影响,同时不影响快速受体脱敏。6. 这些结果表明[Ca2+]i在P2受体的缓慢而非快速脱敏中起作用,从而提出这种二价阳离子作为一种细胞内因子,能够对ATP诱导的受体活性提供有效且可逆的控制。

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Fading and rebound of currents induced by ATP in PC12 cells.ATP诱导的PC12细胞电流的衰减和反弹。
Br J Pharmacol. 1996 Nov;119(5):1045-53. doi: 10.1111/j.1476-5381.1996.tb15776.x.

引用本文的文献

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Quantal release of ATP from clusters of PC12 cells.PC12细胞簇中ATP的量子释放。
J Physiol. 2004 Oct 15;560(Pt 2):505-17. doi: 10.1113/jphysiol.2004.068924. Epub 2004 Aug 26.

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