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TPC2 Is a Novel NAADP-sensitive Ca2+ Release Channel Operating as a Dual Sensor of Luminal pH and Ca2+

机译:TPC2是一种新颖的NAADP敏感的Ca2 +释放通道可作为发光pH和Ca2 +的双重传感器

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摘要

Nicotinic acid adenine dinucleotide phosphate (NAADP) is a molecule capable of initiating the release of intracellular Ca2+ required for many essential cellular processes. Recent evidence links two-pore channels (TPCs) with NAADP-induced release of Ca2+ from lysosome-like acidic organelles; however, there has been no direct demonstration that TPCs can act as NAADP-sensitive Ca2+ release channels. Controversial evidence also proposes ryanodine receptors as the primary target of NAADP. We show that TPC2, the major lysosomal targeted isoform, is a cation channel with selectivity for Ca2+ that will enable it to act as a Ca2+ release channel in the cellular environment. NAADP opens TPC2 channels in a concentration-dependent manner, binding to high affinity activation and low affinity inhibition sites. At the core of this process is the luminal environment of the channel. The sensitivity of TPC2 to NAADP is steeply dependent on the luminal [Ca2+] allowing extremely low levels of NAADP to open the channel. In parallel, luminal pH controls NAADP affinity for TPC2 by switching from reversible activation of TPC2 at low pH to irreversible activation at neutral pH. Further evidence earmarking TPCs as the likely pathway for NAADP-induced intracellular Ca2+ release is obtained from the use of Ned-19, the selective blocker of cellular NAADP-induced Ca2+ release. Ned-19 antagonizes NAADP-activation of TPC2 in a non-competitive manner at 1 μm but potentiates NAADP activation at nanomolar concentrations. This single-channel study provides a long awaited molecular basis for the peculiar mechanistic features of NAADP signaling and a framework for understanding how NAADP can mediate key physiological events.
机译:烟酸腺嘌呤二核苷酸磷酸(NAADP)是一种能够引发许多基本细胞过程所需的细胞内Ca 2 + 释放的分子。最近的证据将两孔通道(TPC)与NAADP诱导的从溶酶体样酸性细胞器释放的Ca 2 + 关联。但是,尚无直接证明TPC可以作为NAADP敏感的Ca 2 + 释放通道。有争议的证据还提出,赖氨酸受体是NAADP的主要靶标。我们显示,TPC2是主要的溶酶体靶向同工型,是对Ca 2 + 有选择性的阳离子通道,这将使其能够充当Ca 2 + 释放通道。蜂窝环境。 NAADP以浓度依赖的方式打开TPC2通道,与高亲和力激活和低亲和力抑制位点结合。该过程的核心是通道的腔环境。 TPC2对NAADP的敏感性主要取决于内腔[Ca 2 + ],从而允许极低水平的NAADP打开通道。平行地,管腔pH值通过从低pH值下TPC2的可逆活化转变为中性pH值下不可逆的活化来控制NAADP对TPC2的亲和力。通过使用Ned-19(细胞NAADP诱导的Ca 2+的选择性阻滞剂)获得了进一步的证据,将TPC指定为NAADP诱导的细胞内Ca 2 + 释放的可能途径。 sup>发布。 Ned-19在1μm下以非竞争性方式拮抗TPC2的NAADP激活,但在纳摩尔浓度下增强了NAADP的激活。这项单通道研究为NAADP信号的独特机制特征提供了人们期待已久的分子基础,并为理解NAADP如何介导关键生理事件提供了框架。

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