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Cyclic Adenosine Diphosphate Ribose Activates Ryanodine Receptors, whereas NAADP Activates Two-pore Domain Channels*

机译:环状腺苷二磷酸核糖激活Ryanodine受体,而NAADP激活两孔域通道*

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摘要

The mechanism by which cyclic adenosine diphosphate ribose (cADPR) and nicotinic acid adenine dinucleotide phosphate (NAADP) mobilize intracellular Ca2+ stores remains controversial. It is open to question whether cADPR regulates ryanodine receptors (RyRs) directly, as originally proposed, or indirectly by promoting Ca2+ uptake into the sarco/endoplasmic reticulum by sarco/endoplasmic reticulum Ca2+-ATPases. Conversely, although we have proposed that NAADP mobilizes endolysosomal Ca2+ stores by activating two-pore domain channels (TPCs), others suggest that NAADP directly activates RyRs. We therefore assessed Ca2+ signals evoked by intracellular dialysis from a patch pipette of cADPR and NAADP into HEK293 cells that stably overexpress either TPC1, TPC2, RyR1, or RyR3. No change in intracellular Ca2+ concentration was triggered by cADPR in either wild-type HEK293 cells (which are devoid of RyRs) or in cells that stably overexpress TPC1 and TPC2, respectively. By contrast, a marked Ca2+ transient was triggered by cADPR in HEK293 cells that stably expressed RyR1 and RyR3. The Ca2+ transient was abolished following depletion of endoplasmic reticulum stores by thapsigargin and block of RyRs by dantrolene but not following depletion of acidic Ca2+ stores by bafilomycin. By contrast, NAADP failed to evoke a Ca2+ transient in HEK293 cells that expressed RyR1 or RyR3, but it induced robust Ca2+ transients in cells that stably overexpressed TPC1 or TPC2 and in a manner that was blocked following depletion of acidic stores by bafilomycin. We conclude that cADPR triggers Ca2+ release by activating RyRs but not TPCs, whereas NAADP activates TPCs but not RyRs.
机译:环状腺苷二磷酸核糖(cADPR)和烟酸腺嘌呤二核苷酸磷酸(NAADP)动员细胞内Ca2 +储存的机制仍存在争议。如最初提出的那样,cADPR是否直接调节雷诺丁受体(RyRs)还是通过促进肌钙蛋白/内质网Ca2 + -ATPase促进钙离子吸收进入肌钙质/内质网而间接受到质疑。相反,尽管我们已经提出NAADP通过激活两孔结构域通道(TPC)来动员溶酶体Ca2 +存储,但其他人则建议NAADP直接激活RyRs。因此,我们评估了从cADPR和NAADP的移液管到稳定过表达TPC1,TPC2,RyR1或RyR3的HEK293细胞的细胞内透析引起的Ca2 +信号。在野生型HEK293细胞(不含RyRs)或稳定过量表达TPC1和TPC2的细胞中,cADPR不会触发细胞内Ca2 +浓度的变化。相反,在稳定表达RyR1和RyR3的HEK293细胞中,cADPR触发了明显的Ca2 +瞬变。 thapsigargin耗尽了内质网存储,丹特罗消除了RyRs,Ca2 +瞬变被消除了,而巴氟霉素耗尽了酸性Ca2 +存储,则消除了Ca2 +瞬变。相比之下,NAADP未能在表达RyR1或RyR3的HEK293细胞中引起Ca2 +瞬变,但在稳定过量表达TPC1或TPC2的细胞中诱导了强大的Ca2 +瞬变,并以一种方式被杆状霉素耗尽酸性存储后被阻断。我们得出的结论是,cADPR通过激活RyRs而非TPC触发Ca2 +释放,而NAADP激活TPC而不是RyRs。

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