Pitt Samantha J, Lam Andy K M, Rietdorf Katja, Galione Antony, Sitsapesan Rebecca
School of Medicine, University of St Andrews, St Andrews KY16 9TF, UK.
Department of Pharmacology, University of Oxford, Mansfield Road, Oxford OX1 3QT, UK.
Sci Signal. 2014 May 20;7(326):ra46. doi: 10.1126/scisignal.2004854.
NAADP potently triggers Ca2+ release from acidic lysosomal and endolysosomal Ca2+ stores. Human two-pore channels (TPC1 and TPC2), which are located on these stores, are involved in this process, but there is controversy over whether TPC1 and TPC2 constitute the Ca2+ release channels. We therefore examined the single-channel properties of human TPC1 after reconstitution into bilayers of controlled composition. We found that TPC1 was permeable not only to Ca2+ but also to monovalent cations and that permeability to protons was the highest (relative permeability sequence: H+ >> K+ > Na(+) ≥ Ca2+). NAADP or Ca2+ activated TPC1, and the presence of one of these ligands was required for channel activation. The endolysosome-located lipid phosphatidylinositol 3,5-bisphosphate [PI(3,5)P2] had no effect on TPC1 open probability but significantly increased the relative permeability of Na+ to Ca2+ and of H+ to Ca2+. Furthermore, our data showed that, although both TPC1 and TPC2 are stimulated by NAADP, these channels differ in ion selectivity and modulation by Ca2+ and pH. We propose that NAADP triggers H+ release from lysosomes and endolysomes through activation of TPC1, but that the Ca2+ -releasing ability of TPC1 will depend on the ionic composition of the acidic stores and may be influenced by other regulators that affect TPC1 ion permeation.
NAADP能有效触发酸性溶酶体和内溶酶体钙库释放Ca2+。位于这些钙库上的人类双孔通道(TPC1和TPC2)参与了这一过程,但关于TPC1和TPC2是否构成Ca2+释放通道存在争议。因此,我们在重构到成分可控的双层膜后研究了人类TPC1的单通道特性。我们发现TPC1不仅对Ca2+有通透性,对单价阳离子也有通透性,并且对质子的通透性最高(相对通透性顺序:H+ >> K+ > Na(+) ≥ Ca2+)。NAADP或Ca2+可激活TPC1,通道激活需要其中一种配体的存在。位于内溶酶体的脂质磷脂酰肌醇3,5-二磷酸[PI(3,5)P2]对TPC1的开放概率没有影响,但显著增加了Na+对Ca2+以及H+对Ca2+的相对通透性。此外,我们的数据表明,尽管TPC1和TPC2都受到NAADP的刺激,但这些通道在离子选择性以及受Ca2+和pH的调节方面存在差异。我们提出,NAADP通过激活TPC1触发溶酶体和内溶酶体释放H+,但TPC1的Ca2+释放能力将取决于酸性钙库的离子组成,并且可能受到影响TPC1离子通透的其他调节因子的影响。