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钙调蛋白依赖性机制加速了海蟾蜍胃肌细胞内的钙衰减。

Calcium-calmodulin-dependent mechanisms accelerate calcium decay in gastric myocytes from Bufo marinus.

作者信息

McGeown J G, McCarron J G, Drummond R M, Fay F S

机构信息

School of Biomedical Science, Queen's University of Belfast, UK.

出版信息

J Physiol. 1998 Jan 1;506 ( Pt 1)(Pt 1):95-107. doi: 10.1111/j.1469-7793.1998.095bx.x.

Abstract
  1. [Ca2+] was recorded in voltage-clamped gastric myocytes from Bufo marinus. Repolarization to -110 mV following a 300 ms depolarization to +10 mV led to triphasic [Ca2+]i decay, with a fast-slow-fast pattern. After a conditioning train of repetitive depolarizations the duration of the second, slow phase of decay was shortened, while the rate of decay during the third, faster phase was increased by 34 +/- 6% (mean +/- S.E.M., n = 21) when compared with unconditioned transients. 2. [Ca2+]i decay was biphasic in cells injected with the calmodulin-binding peptide RS20, with a prolonged period of fast decay followed by a slow phase. There was no subsequent increase in decay rate during individual transients and no acceleration of decay following the conditioning train (n = 8). Decline of [Ca2+]i in cells injected with the control peptide NRS20 was triphasic and the decay rate during the third phase was increased by 50 +/- 19% in conditioned transients (n = 6). 3. Cell injection with CK3AA, a pseudo-substrate inhibitor of calmodulin-dependent protein kinase II, prevented the increase in the final rate of decay following the conditioning train (n = 6). In cells injected with an inactive peptide similar to CK3AA, however, there was a 45 +/- 17% increase after the train (n = 5). 4. Inhibition of Ca2+ uptake by the sarcoplasmic reticulum with cyclopiazonic acid or thapsigargin did not prevent acceleration of decay. 5. These results demonstrate that [Ca2+]i decay is accelerated by Ca(2+)-calmodulin and calmodulin-dependent protein kinase II. This does not depend on Ca2+ uptake by the sarcoplasmic reticulum but may reflect upregulation of mitochondrial Ca2+ removal.
摘要
  1. 在电压钳制的海蟾蜍胃肌细胞中记录[Ca2+]。在300毫秒去极化至+10毫伏后复极化至-110毫伏会导致[Ca2+]i呈三相衰减,具有快-慢-快模式。在一系列重复性去极化的预处理后,与未预处理的瞬变相比,第二个慢衰减相的持续时间缩短,而第三个更快衰减相的衰减速率增加了34±6%(平均值±标准误,n = 21)。2. 在注射钙调蛋白结合肽RS20的细胞中,[Ca2+]i衰减是双相的,有一段延长的快速衰减期,随后是一个慢相。在单个瞬变过程中,衰减速率没有随后的增加,并且在预处理序列后衰减也没有加速(n = 8)。注射对照肽NRS20的细胞中[Ca2+]i的下降是三相的,并且在预处理的瞬变中,第三相的衰减速率增加了50±19%(n = 6)。3. 用钙调蛋白依赖性蛋白激酶II的假底物抑制剂CK3AA注射细胞可防止预处理序列后最终衰减速率的增加(n = 6)。然而,在注射与CK3AA类似的无活性肽的细胞中,序列后有45±17%的增加(n = 5)。4. 用环匹阿尼酸或毒胡萝卜素抑制肌浆网对Ca2+的摄取并不能阻止衰减的加速。5. 这些结果表明,[Ca2+]i衰减被Ca(2+)-钙调蛋白和钙调蛋白依赖性蛋白激酶II加速。这并不依赖于肌浆网对Ca2+的摄取,但可能反映了线粒体Ca2+清除的上调。

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The temporal profile of calcium transients in voltage clamped gastric myocytes from Bufo marinus.
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