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双孔通道:NAADP 的调节作用及其在触发钙信号中的定制作用。

Two-pore channels: Regulation by NAADP and customized roles in triggering calcium signals.

机构信息

Department of Cell and Developmental Biology, University College London, UK.

出版信息

Cell Calcium. 2010 Jun;47(6):480-90. doi: 10.1016/j.ceca.2010.05.001.

Abstract

NAADP is a potent regulator of cytosolic calcium levels. Much evidence suggests that NAADP activates a novel channel located on an acidic (lysosomal-like) calcium store, the mobilisation of which results in further calcium release from the endoplasmic reticulum. Here, we discuss the recent identification of a family of poorly characterized ion channels (the two-pore channels) as endo-lysosomal NAADP receptors. The generation of calcium signals by these channels is likened to those evoked by depolarisation during excitation-contraction coupling in muscle. We discuss the idea that two-pore channels can mediate a trigger release of calcium which is then amplified by calcium-induced calcium release from the endoplasmic reticulum. This is similar to the activation of voltage-sensitive calcium channels and subsequent mobilisation of sarcoplasmic reticulum calcium stores in cardiac tissue. We suggest that two-pore channels may physically interact with ryanodine receptors to account for more direct release of calcium from the endoplasmic reticulum in analogy with the conformational coupling of voltage-sensitive calcium channels and ryanodine receptors in skeletal muscle. Interaction of two-pore channels with other calcium release channels likely occurs between stores "trans-chatter" and possibly within the same store "cis-chatter". We also speculate that trafficking of two-pore channels through the endo-lysosomal system facilitates interactions with calcium entry channels. Strategic placing of two-pore channels thus provides a versatile means of generating spatiotemporally complex cellular calcium signals.

摘要

NAADP 是细胞溶质钙水平的有效调节剂。大量证据表明,NAADP 激活位于酸性(溶酶体样)钙库上的新型通道,其动员导致内质网中进一步释放钙。在这里,我们讨论了最近发现的一类特征不明显的离子通道(双孔通道)作为内体溶酶体 NAADP 受体。这些通道产生的钙信号类似于肌肉兴奋-收缩偶联期间去极化引起的那些。我们讨论了这样一种观点,即双孔通道可以介导触发释放钙,然后通过内质网中钙诱导的钙释放进行放大。这类似于电压敏感钙通道的激活以及随后的肌浆网钙库在心脏组织中的动员。我们认为,双孔通道可能与肌浆网钙释放通道发生物理相互作用,以解释内质网中钙的更直接释放,类似于电压敏感钙通道和骨骼肌中肌浆网钙释放通道的构象偶联。双孔通道与其他钙释放通道之间的相互作用可能发生在“跨池 chatter”之间,并且可能发生在同一池中“顺池 chatter”。我们还推测,双孔通道通过内体溶酶体系统的运输有助于与钙进入通道相互作用。因此,双孔通道的战略性放置提供了一种产生时空复杂细胞钙信号的多功能手段。

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