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首页> 外文期刊>Plant signaling & behavior >Extracellular pyridine nucleotides as immune elicitors in arabidopsis
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Extracellular pyridine nucleotides as immune elicitors in arabidopsis

机译:拟南芥中的细胞外吡啶核苷酸作为免疫elictors

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The pyridine nucleotides nicotinamide adenine dinucleotide (NAD) and NAD phosphate (NADP) are coenzymes that function in both metabolic reactions and intracellular signaling. Emerging evidence from animal research indicates that NAD(P) also acts in the extracellular space (ECS). We have shown in the model plant Arabidopsis that (1) exogenous NAD(P) induces immune responses, (2) pathogen infection causes leakage of intracellular NAD(P) into the extracellular fluid at concentrations sufficient to induce immune responses, and (3) removal of extracellular NAD(P) [eNAD(P)] by expressing the human NAD(P)-metabolizing ectoenzyme CD38 partially compromises systemic acquired resistance. Based on these results, we hypothesize that eNAD(P) is a novel damage-associated molecular pattern (DAMP) in plants; during plant-microbe interaction, intracellular NAD(P) is released from dead or dying cells into the ECS where it interacts with the adjacent healthy cells' surface receptors/targets, which in turn activate downstream specific immune signaling pathways. Our recent identification of LecRK-I.8, a lectin receptor kinase, as the first cell surface NADC-binding receptor has provided compelling evidence for this hypothesis. Further identification of cell surface eNAD(P) receptors/targets and their downstream signaling components in Arabidopsis as well as determination of the generality of eNAD(P) signaling in crops will help establish eNAD(P) as a conserved DAMP in plants.
机译:吡啶核苷酸烟酰胺腺嘌呤二核苷酸(NAD)和NAD磷酸盐(NADP)是在代谢反应和细胞内信号传导中起作用的辅酶。来自动物研究的新出现证据表明NAD(P)也在细胞外空间(ECS)中起作用。我们已经显示在模型植物拟南芥中,(1)外源性NAD(P)诱导免疫应答,(2)病原体感染导致细胞内NAD(P)在足以诱导免疫应答的浓度下的细胞外液体,(3)通过表达人NAD(p) - 凝集胞胎酶CD38部分损害全身性获得性,去除细胞外NAD(P)[eNAD(P)]。基于这些结果,我们假设eNAD(P)是植物中的新损伤相关的分子模式(潮湿);在植物微生物相互作用期间,细胞内NAD(P)从死亡或染色细胞释放到其与相邻的健康细胞表面受体/靶标相互作用的ECS中,这反过来激活下游特异性免疫信号传导途径。我们最近识别Lectin受体激酶,作为第一细胞表面NADC结合受体为该假设提供了令人信服的证据。在拟南芥中进一步鉴定细胞表面eNAD(P)受体/靶标的和其下游信号传导组分以及作物中的eNAD(P)信号传导的一般性将有助于建立eNAD(P)作为植物的保守潮湿。

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