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环状二磷酸核糖从花椰菜小花内质网中动员钙离子。

Mobilization of Ca2+ by cyclic ADP-ribose from the endoplasmic reticulum of cauliflower florets.

作者信息

Navazio L, Mariani P, Sanders D

机构信息

The Plant Laboratory, Department of Biology, University of York, P.O. Box 373, York YO10 5YW, United Kingdom.

出版信息

Plant Physiol. 2001 Apr;125(4):2129-38. doi: 10.1104/pp.125.4.2129.

Abstract

The NAD+ metabolite cADP-Rib (cADPR) elevates cytosolic free Ca2+ in plants and thereby plays a central role in signal transduction pathways evoked by the drought and stress hormone abscisic acid. cADPR is known to mobilize Ca2+ from the large vacuole of mature cells. To determine whether additional sites for cADPR-gated Ca2+ release reside in plant cells, microsomes from cauliflower (Brassica oleracea) inflorescences were subfractionated on sucrose density gradients, and the distribution of cADPR-elicited Ca2+ release was monitored. cADPR-gated Ca2+ release was detected in the heavy-density fractions associated with rough endoplasmic reticulum (ER). cADPR-dependent Ca2+ release co-migrated with two ER markers, calnexin and antimycin A-insensitive NADH-cytochrome c reductase activity. To investigate the possibility that contaminating plasma membrane in the ER-rich fractions was responsible for the observed release, plasma membrane vesicles were purified by aqueous two-phase partitioning, everted with Brij-58, and loaded with Ca2+: These vesicles failed to respond to cADPR. Ca2+ release evoked by cADPR at the ER was fully inhibited by ruthenium red and 8-NH2-cADPR, a specific antagonist of cADPR-gated Ca2+ release in animal cells. The presence of a Ca2+ release pathway activated by cADPR at higher plant ER reinforces the notion that, alongside the vacuole, the ER participates in Ca2+ signaling.

摘要

烟酰胺腺嘌呤二核苷酸(NAD⁺)代谢产物环ADP核糖(cADPR)可提高植物细胞质中的游离Ca²⁺水平,因此在干旱和胁迫激素脱落酸引发的信号转导途径中发挥核心作用。已知cADPR可从成熟细胞的大液泡中动员Ca²⁺。为了确定植物细胞中是否存在其他cADPR门控Ca²⁺释放位点,对来自花椰菜(Brassica oleracea)花序的微粒体进行蔗糖密度梯度分级分离,并监测cADPR引发的Ca²⁺释放的分布情况。在与糙面内质网(ER)相关的高密度级分中检测到了cADPR门控的Ca²⁺释放。cADPR依赖性Ca²⁺释放与两种内质网标记物——钙联蛋白和抗霉素A不敏感的NADH-细胞色素c还原酶活性共同迁移。为了研究富含内质网的级分中污染的质膜是否是观察到的释放的原因,通过水相两相分配法纯化质膜囊泡,用Brij-58外翻,并装载Ca²⁺:这些囊泡对cADPR没有反应。内质网上cADPR引发的Ca²⁺释放被钌红和8-NH₂-cADPR完全抑制,8-NH₂-cADPR是动物细胞中cADPR门控Ca²⁺释放的特异性拮抗剂。高等植物内质网上存在由cADPR激活的Ca²⁺释放途径,这进一步强化了内质网与液泡一起参与Ca²⁺信号传导的观点。

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