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烟酰胺腺嘌呤二核苷酸磷酸:一种通用的钙离子触发剂。

NAADP: a universal Ca2+ trigger.

作者信息

Guse Andreas H, Lee Hon Cheung

机构信息

The Calcium Signaling Group, Institute of Biochemistry and Molecular Biology I, Cellular Signal Transduction, University Medical Center Hamburg-Eppendorf, Martinistrasse 52, D-20146 Hamburg, Germany.

出版信息

Sci Signal. 2008 Nov 4;1(44):re10. doi: 10.1126/scisignal.144re10.

Abstract

Cells possess multiple calcium ion (Ca2+) stores and multiple messenger molecules to mobilize them. These include d-myo-inositol 1,4,5-trisphosphate (IP(3)), cyclic adenosine diphosphoribose (cADPR), and the most recently identified Ca2+-mobilizing messenger, nicotinic acid adenine dinucleotide phosphate (NAADP), which acts on a wide spectrum of cells, from plant cells to mammalian cells. Accumulating evidence indicates that NAADP targets both acidic (lysosome-like) Ca2+ stores and endoplasmic reticular stores. Recent studies in invertebrate and mammalian cells suggest that NAADP provides an initiating Ca2+ signal, which is amplified by cADPR- or IP(3)-dependent mechanisms (or both) through Ca2+-induced Ca2+ release. Diverse stimuli activate a rapid rise of endogenous NAADP concentration, resulting in severalfold increases of NAADP over basal values within seconds. The enzyme CD38 can catalyze both the synthesis and hydrolysis of NAADP, making it ideal for effecting the rapid metabolism of NAADP. The crystal structure of CD38 and the structures of its various substrate complexes have now been determined, clarifying the mechanism of its multifunctional catalysis. We anticipate that these advances will lead to the unmasking of all the key components of the Ca2+ signaling pathway mediated by NAADP.

摘要

细胞拥有多种钙离子(Ca2+)储存库以及多种用于动员这些储存库的信使分子。这些信使分子包括D-肌醇1,4,5-三磷酸(IP(3))、环腺苷二磷酸核糖(cADPR),以及最近发现的可动员钙离子的信使分子烟酰胺腺嘌呤二核苷酸磷酸(NAADP),它作用于从植物细胞到哺乳动物细胞等广泛的细胞类型。越来越多的证据表明,NAADP作用于酸性(类溶酶体)钙离子储存库和内质网储存库。对无脊椎动物和哺乳动物细胞的最新研究表明,NAADP提供一个起始钙离子信号,该信号通过钙离子诱导的钙离子释放,由依赖cADPR或IP(3)的机制(或两者)进行放大。多种刺激可激活内源性NAADP浓度的快速升高,导致NAADP在数秒内比基础值增加数倍。酶CD38既能催化NAADP的合成又能催化其水解,使其成为实现NAADP快速代谢的理想酶。现在已经确定了CD38的晶体结构及其各种底物复合物的结构,阐明了其多功能催化的机制。我们预计这些进展将揭示由NAADP介导的钙离子信号通路的所有关键组成部分。

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