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神经元去极化过程中,Ca2+信使合成酶ADP-核糖基环化酶的转位对核Ca2+信号的调节。

Regulation of nuclear Ca2+ signaling by translocation of the Ca2+ messenger synthesizing enzyme ADP-ribosyl cyclase during neuronal depolarization.

作者信息

Bezin Stéphanie, Charpentier Gilles, Lee Hon Cheung, Baux Gérard, Fossier Philippe, Cancela José-Manuel

机构信息

Laboratoire de Neurobiologie Cellulaire et Moléculaire, CNRS, UPR 9040, 1, Avenue de la Terrasse, 91198 Gif-Sur-Yvette Cedex, France.

Laboratoire de Neurobiologie Cellulaire et Moléculaire, CNRS, UPR 9040, 1, Avenue de la Terrasse, 91198 Gif-Sur-Yvette Cedex, France; Université Bordeaux 1 Laboratoire DMPFCS, IECB, 2, Rue Robert Escarpit, 33607 Pessac, France.

出版信息

J Biol Chem. 2008 Oct 10;283(41):27859-27870. doi: 10.1074/jbc.M804701200. Epub 2008 Jul 16.

Abstract

In neurons, voltage-gated Ca(2+) channels and nuclear Ca(2+) signaling play important roles, such as in the regulation of gene expression. However, the link between electrical activity and biochemical cascade activation involved in the generation of the nuclear Ca(2+) signaling is poorly understood. Here we show that depolarization of Aplysia neurons induces the translocation of ADP-ribosyl cyclase, a Ca(2+) messenger synthesizing enzyme, from the cytosol into the nucleus. The translocation is dependent on Ca(2+) influx mainly through the voltage-dependent L-type Ca(2+) channels. We report also that specific nucleoplasmic Ca(2+) signals can be induced by three different calcium messengers, cyclic ADP-ribose, nicotinic acid adenine dinucleotide phosphate (NAADP), both produced by the ADP-ribosyl cyclase, and inositol 1,4,5-trisphosphate (IP(3)). Moreover, our pharmacological data show that NAADP acts on its own receptor, which cooperates with the IP(3) and the ryanodine receptors to generate nucleoplasmic Ca(2+) oscillations. We propose a new model where voltage-dependent L-type Ca(2+) channel-induced nuclear translocation of the cytosolic cyclase is a crucial step in the fine tuning of nuclear Ca(2+) signals in neurons.

摘要

在神经元中,电压门控钙通道和核钙信号传导发挥着重要作用,比如在基因表达调控方面。然而,人们对电活动与核钙信号产生过程中涉及的生化级联激活之间的联系了解甚少。在此我们表明,海兔神经元的去极化会诱导ADP核糖基环化酶(一种合成钙信使的酶)从胞质溶胶转位至细胞核。这种转位主要依赖于通过电压依赖性L型钙通道的钙内流。我们还报告称,三种不同的钙信使,即由ADP核糖基环化酶产生的环ADP核糖、烟酰胺腺嘌呤二核苷酸磷酸(NAADP)以及肌醇1,4,5-三磷酸(IP3),均可诱导特定的核质钙信号。此外,我们的药理学数据表明,NAADP作用于其自身受体,该受体与IP3受体及兰尼碱受体协同作用以产生核质钙振荡。我们提出了一个新模型,即电压依赖性L型钙通道诱导胞质环化酶的核转位是神经元核钙信号精细调节中的关键步骤。

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