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Calcium release from the endoplasmic reticulum of higher plants elicited by the NADP metabolite nicotinic acid adenine dinucleotide phosphate

机译:NADP代谢产物烟酸腺嘌呤二核苷酸磷酸引起的高等植物内质网中钙的释放

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摘要

Higher plants share with animals a responsiveness to the Ca2+ mobilizing agents inositol 1,4,5-trisphosphate (InsP3) and cyclic ADP-ribose (cADPR). In this study, by using a vesicular 45Ca2+ flux assay, we demonstrate that microsomal vesicles from red beet and cauliflower also respond to nicotinic acid adenine dinucleotide phosphate (NAADP), a Ca2+-releasing molecule recently described in marine invertebrates. NAADP potently mobilizes Ca2+ with a K1/2 = 96 nM from microsomes of nonvacuolar origin in red beet. Analysis of sucrose gradient-separated cauliflower microsomes revealed that the NAADP-sensitive Ca2+ pool was derived from the endoplasmic reticulum. This exclusively nonvacuolar location of the NAADP-sensitive Ca2+ pathway distinguishes it from the InsP3- and cADPR-gated pathways. Desensitization experiments revealed that homogenates derived from cauliflower tissue contained low levels of NAADP (125 pmol/mg) and were competent in NAADP synthesis when provided with the substrates NADP and nicotinic acid. NAADP-induced Ca2+ release is insensitive to heparin and 8-NH2-cADPR, specific inhibitors of the InsP3- and cADPR-controlled mechanisms, respectively. However, NAADP-induced Ca2+ release could be blocked by pretreatment with a subthreshold dose of NAADP, as previously observed in sea urchin eggs. Furthermore, the NAADP-gated Ca2+ release pathway is independent of cytosolic free Ca2+ and therefore incapable of operating Ca2+-induced Ca2+ release. In contrast to the sea urchin system, the NAADP-gated Ca2+ release pathway in plants is not blocked by L-type channel antagonists. The existence of multiple Ca2+ mobilization pathways and Ca2+ release sites might contribute to the generation of stimulus-specific Ca2+ signals in plant cells.
机译:高等植物与动物共有对Ca 2 + 动员剂肌醇1,4,5-三磷酸(InsP3)和环状ADP-核糖(cADPR)的响应性。在这项研究中,通过使用囊泡 45 Ca 2 + 通量测定,我们证明了来自红甜菜和花椰菜的微粒体囊泡也对烟酸腺嘌呤二核苷酸磷酸(NAADP)产生响应是最近在海洋无脊椎动物中描述的释放Ca 2 + 的分子。 NAADP有效地从红甜菜中非真空来源的微粒体中以K1 / 2 = 96 nM动员Ca 2 + 。蔗糖梯度分离的花椰菜微粒体的分析表明,NAADP敏感的Ca 2 + 库来自内质网。 NAADP敏感的Ca 2 + 途径的唯一非真空位置将其与InsP3和cADPR门控途径区分开。脱敏实验显示,来自花椰菜组织的匀浆含有低水平的NAADP(125 pmol / mg),并且在提供底物NADP和烟酸的情况下能胜任NAADP的合成。 NAADP诱导的Ca 2 + 释放对肝素和8-NH2-cADPR不敏感,后者分别是InsP3-和cADPR控制机制的特异性抑制剂。然而,如之前在海胆卵中观察到的那样,用亚阈值剂量的NAADP预处理可以阻止NAADP诱导的Ca 2 + 释放。此外,NAADP门控的Ca 2 + 释放途径独立于无胞质的Ca 2 + ,因此不能操作Ca 2 + 诱导的Ca 2 + 释放。与海胆系统相反,NAADP门控的Ca 2 + 释放途径没有被L型通道拮抗剂阻断。 Ca 2 + 动员通路和Ca 2 + 释放位点的存在可能有助于刺激特定Ca 2 + 信号的产生。植物细胞。

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