TY - JOUR
T1 - NAADP mobilizes calcium from acidic organelles through two-pore channels
AU - Calcraft, Peter J.
AU - Ruas, Margarida
AU - Pan, Zui
AU - Cheng, Xiaotong
AU - Arredouani, Abdelilah
AU - Hao, Xuemei
AU - Tang, Jisen
AU - Rietdorf, Katja
AU - Teboul, Lydia
AU - Chuang, Kai Ting
AU - Lin, Peihui
AU - Xiao, Rui
AU - Wang, Chunbo
AU - Zhu, Yingmin
AU - Lin, Yakang
AU - Wyatt, Christopher N.
AU - Parrington, John
AU - Ma, Jianjie
AU - Evans, A. Mark
AU - Galione, Antony
AU - Zhu, Michael X.
PY - 2009/5/28
Y1 - 2009/5/28
N2 - Ca 2+ mobilization from intracellular stores represents an important cell signalling process that is regulated, in mammalian cells, by inositol-1,4,5-trisphosphate (InsP 3), cyclic ADP ribose and nicotinic acid adenine dinucleotide phosphate (NAADP). InsP 3 and cyclic ADP ribose cause the release of Ca 2+ from sarcoplasmic/endoplasmic reticulum stores by the activation of InsP 3 and ryanodine receptors (InsP 3 Rs and RyRs). In contrast, the nature of the intracellular stores targeted by NAADP and the molecular identity of the NAADP receptors remain controversial, although evidence indicates that NAADP mobilizes Ca 2+ from lysosome-related acidic compartments. Here we show that two-pore channels (TPCs) comprise a family of NAADP receptors, with human TPC1 (also known as TPCN1) and chicken TPC3 (TPCN3) being expressed on endosomal membranes, and human TPC2 (TPCN2) on lysosomal membranes when expressed in HEK293 cells. Membranes enriched with TPC2 show high affinity NAADP binding, and TPC2 underpins NAADP-induced Ca 2+ release from lysosome-related stores that is subsequently amplified by Ca 2+-induced Ca 2+ release by InsP 3 Rs. Responses to NAADP were abolished by disrupting the lysosomal proton gradient and by ablating TPC2 expression, but were only attenuated by depleting endoplasmic reticulum Ca 2+ stores or by blocking InsP 3 Rs. Thus, TPCs form NAADP receptors that release Ca 2+ from acidic organelles, which can trigger further Ca 2+ signals via sarcoplasmic/endoplasmic reticulum. TPCs therefore provide new insights into the regulation and organization of Ca 2+ signals in animal cells, and will advance our understanding of the physiological role of NAADP.
AB - Ca 2+ mobilization from intracellular stores represents an important cell signalling process that is regulated, in mammalian cells, by inositol-1,4,5-trisphosphate (InsP 3), cyclic ADP ribose and nicotinic acid adenine dinucleotide phosphate (NAADP). InsP 3 and cyclic ADP ribose cause the release of Ca 2+ from sarcoplasmic/endoplasmic reticulum stores by the activation of InsP 3 and ryanodine receptors (InsP 3 Rs and RyRs). In contrast, the nature of the intracellular stores targeted by NAADP and the molecular identity of the NAADP receptors remain controversial, although evidence indicates that NAADP mobilizes Ca 2+ from lysosome-related acidic compartments. Here we show that two-pore channels (TPCs) comprise a family of NAADP receptors, with human TPC1 (also known as TPCN1) and chicken TPC3 (TPCN3) being expressed on endosomal membranes, and human TPC2 (TPCN2) on lysosomal membranes when expressed in HEK293 cells. Membranes enriched with TPC2 show high affinity NAADP binding, and TPC2 underpins NAADP-induced Ca 2+ release from lysosome-related stores that is subsequently amplified by Ca 2+-induced Ca 2+ release by InsP 3 Rs. Responses to NAADP were abolished by disrupting the lysosomal proton gradient and by ablating TPC2 expression, but were only attenuated by depleting endoplasmic reticulum Ca 2+ stores or by blocking InsP 3 Rs. Thus, TPCs form NAADP receptors that release Ca 2+ from acidic organelles, which can trigger further Ca 2+ signals via sarcoplasmic/endoplasmic reticulum. TPCs therefore provide new insights into the regulation and organization of Ca 2+ signals in animal cells, and will advance our understanding of the physiological role of NAADP.
UR - http://www.scopus.com/inward/record.url?scp=67349287016&partnerID=8YFLogxK
U2 - 10.1038/nature08030
DO - 10.1038/nature08030
M3 - Article
C2 - 19387438
AN - SCOPUS:67349287016
SN - 0028-0836
VL - 459
SP - 596
EP - 600
JO - Nature
JF - Nature
IS - 7246
ER -