首页> 外文期刊>The Journal of Physiology >Depletion of calcium stores regulates calcium influx and signal transmission in rod photoreceptors.
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Depletion of calcium stores regulates calcium influx and signal transmission in rod photoreceptors.

机译:钙存储的枯竭可调节杆状光感受器中的钙流入和信号传递。

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摘要

Tonic synapses are specialized for sustained calcium entry and transmitter release, allowing them to operate in a graded fashion over a wide dynamic range. We identified a novel plasma membrane calcium entry mechanism that extends the range of rod photoreceptor signalling into light-adapted conditions. The mechanism, which shares molecular and physiological characteristics with store-operated calcium entry (SOCE), is required to maintain baseline [Ca(2+)](i) in rod inner segments and synaptic terminals. Sustained Ca(2+) entry into rod cytosol is augmented by store depletion, blocked by La(3+) and Gd(3+) and suppressed by organic antagonists MRS-1845 and SKF-96365. Store depletion and the subsequent Ca(2+) influx directly stimulated exocytosis in terminals of light-adapted rods loaded with the activity-dependent dye FM1-43. Moreover, SOCE blockers suppressed rod-mediated synaptic inputs to horizontal cells without affecting presynaptic voltage-operated Ca(2+) entry. Silencing of TRPC1 expression with small interference RNA disrupted SOCE in rods, but had no effect on cone Ca(2+) signalling. Rods were immunopositive for TRPC1 whereas cone inner segments immunostained with TRPC6 channel antibodies. Thus, SOCE modulates Ca(2+) homeostasis and light-evoked neurotransmission at the rod photoreceptor synapse mediated by TRPC1.
机译:补品突触专门用于持续的钙进入和释放递质,使它们可以在较宽的动态范围内分级运行。我们确定了一种新型的质膜钙进入机制,将杆感光细胞信号传导的范围扩展到光适应性条件。该机制具有与储存钙输入(SOCE)共享的分子和生理特征,需要维持杆内部段和突触末端的基线[Ca(2 +)](i)。持续的Ca(2+)进入杆状胞质溶胶通过存储消耗增加,被La(3+)和Gd(3+)阻断,并被有机拮抗剂MRS-1845和SKF-96365抑制。存储耗尽和随后的Ca(2+)涌入直接刺激了细胞的光适应杆的末端,该杆上装有活性依赖染料FM1-43。此外,SOCE阻滞剂抑制杆介导的突触输入到水平细胞,而不会影响突触前电压操作的Ca(2+)进入。沉默与小干扰RNA的TRPC1表达沉默棒中的SOCE,但对锥Ca(2+)信号没有影响。棒对TRPC1免疫阳性,而视锥内部节段则用TRPC6通道抗体免疫染色。因此,SOCE调节由TRPC1介导的杆感光受体突触的Ca(2+)动态平衡和诱发的神经传递。

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