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本文引用的文献

1
ORM Expression Alters Sphingolipid Homeostasis and Differentially Affects Ceramide Synthase Activity.ORM 表达改变鞘脂稳态并对神经酰胺合酶活性产生不同影响。
Plant Physiol. 2016 Oct;172(2):889-900. doi: 10.1104/pp.16.00965. Epub 2016 Aug 9.
2
Network Analysis of a Comprehensive Knowledge Repository Reveals a Dual Role for Ceramide in Alzheimer's Disease.对一个综合知识库的网络分析揭示了神经酰胺在阿尔茨海默病中的双重作用。
PLoS One. 2016 Feb 5;11(2):e0148431. doi: 10.1371/journal.pone.0148431. eCollection 2016.
3
Glucosylceramides are critical for cell-type differentiation and organogenesis, but not for cell viability in Arabidopsis.葡糖神经酰胺对于拟南芥中的细胞类型分化和器官发生至关重要,但对细胞活力并非如此。
Plant J. 2015 Oct;84(1):188-201. doi: 10.1111/tpj.13000.
4
An Arabidopsis neutral ceramidase mutant ncer1 accumulates hydroxyceramides and is sensitive to oxidative stress.拟南芥中性神经酰胺酶突变体ncer1积累羟基神经酰胺并对氧化应激敏感。
Front Plant Sci. 2015 Jun 19;6:460. doi: 10.3389/fpls.2015.00460. eCollection 2015.
5
A systematic simulation of the effect of salicylic acid on sphingolipid metabolism.水杨酸对鞘脂代谢影响的系统模拟
Front Plant Sci. 2015 Mar 25;6:186. doi: 10.3389/fpls.2015.00186. eCollection 2015.
6
The Arabidopsis ceramidase AtACER functions in disease resistance and salt tolerance.拟南芥神经酰胺酶AtACER在抗病性和耐盐性方面发挥作用。
Plant J. 2015 Mar;81(5):767-80. doi: 10.1111/tpj.12769.
7
Coordinated regulation of the orosomucoid-like gene family expression controls de novo ceramide synthesis in mammalian cells.类orosomucoid基因家族表达的协同调控控制哺乳动物细胞中神经酰胺的从头合成。
J Biol Chem. 2015 Jan 30;290(5):2822-30. doi: 10.1074/jbc.M114.595116. Epub 2014 Dec 17.
8
Loss of ceramide kinase in Arabidopsis impairs defenses and promotes ceramide accumulation and mitochondrial H2O2 bursts.拟南芥中神经酰胺激酶的缺失会损害防御反应,促进神经酰胺积累和线粒体过氧化氢爆发。
Plant Cell. 2014 Aug;26(8):3449-67. doi: 10.1105/tpc.114.127050. Epub 2014 Aug 22.
9
Arabidopsis 56-amino acid serine palmitoyltransferase-interacting proteins stimulate sphingolipid synthesis, are essential, and affect mycotoxin sensitivity.拟南芥 56 个氨基酸丝氨酸棕榈酰转移酶相互作用蛋白可刺激神经鞘脂合成,是必需的,并且影响真菌毒素敏感性。
Plant Cell. 2013 Nov;25(11):4627-39. doi: 10.1105/tpc.113.116145. Epub 2013 Nov 8.
10
Orm proteins integrate multiple signals to maintain sphingolipid homeostasis.ORM 蛋白整合多种信号以维持神经酰胺代谢平衡。
J Biol Chem. 2013 Jul 12;288(28):20453-63. doi: 10.1074/jbc.M113.472860. Epub 2013 Jun 4.

血清类黏蛋白与丝氨酸棕榈酰转移酶的小亚基相互作用,对拟南芥鞘脂稳态和应激反应有贡献。

Orosomucoid Proteins Interact with the Small Subunit of Serine Palmitoyltransferase and Contribute to Sphingolipid Homeostasis and Stress Responses in Arabidopsis.

作者信息

Li Jian, Yin Jian, Rong Chan, Li Kai-En, Wu Jian-Xin, Huang Li-Qun, Zeng Hong-Yun, Sahu Sunil Kumar, Yao Nan

机构信息

State Key Laboratory of Biocontrol, Guangdong Provincial Key Laboratory of Plant Resources, School of Life Sciences, Sun Yat-sen University, Guangzhou 510275, P.R. China.

State Key Laboratory of Biocontrol, Guangdong Provincial Key Laboratory of Plant Resources, School of Life Sciences, Sun Yat-sen University, Guangzhou 510275, P.R. China

出版信息

Plant Cell. 2016 Dec;28(12):3038-3051. doi: 10.1105/tpc.16.00574. Epub 2016 Dec 6.

DOI:10.1105/tpc.16.00574
PMID:27923879
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC5240739/
Abstract

Serine palmitoyltransferase (SPT), a pyridoxyl-5'-phosphate-dependent enzyme, catalyzes the first and rate-limiting step in sphingolipid biosynthesis. In humans and yeast, orosomucoid proteins (ORMs) negatively regulate SPT and thus play an important role in maintaining sphingolipid levels. Despite the importance of sphingoid intermediates as bioactive molecules, the regulation of sphingolipid biosynthesis through SPT is not well understood in plants. Here, we identified and characterized the Arabidopsis thaliana ORMs, ORM1 and ORM2. Loss of function of both ORM1 and ORM2 (orm1 amiR-ORM2) stimulated de novo sphingolipid biosynthesis, leading to strong sphingolipid accumulation, especially of long-chain bases and ceramides. Yeast two-hybrid, bimolecular fluorescence complementation, and coimmunoprecipitation assays confirmed that ORM1 and ORM2 physically interact with the small subunit of SPT (ssSPT), indicating that ORMs inhibit ssSPT function. We found that orm1 amiR-ORM2 plants exhibited an early-senescence phenotype accompanied by HO production at the cell wall and in mitochondria, active vesicular trafficking, and formation of cell wall appositions. Strikingly, the orm1 amiR-ORM2 plants showed increased expression of genes related to endoplasmic reticulum stress and defenses and also had enhanced resistance to oxidative stress and pathogen infection. Taken together, our findings indicate that ORMs interact with SPT to regulate sphingolipid homeostasis and play a pivotal role in environmental stress tolerance in plants.

摘要

丝氨酸棕榈酰转移酶(SPT)是一种依赖磷酸吡哆醛的酶,催化鞘脂生物合成的第一步和限速步骤。在人类和酵母中,类orosomucoid蛋白(ORMs)对SPT起负调控作用,因此在维持鞘脂水平方面发挥重要作用。尽管鞘氨醇中间体作为生物活性分子很重要,但植物中通过SPT对鞘脂生物合成的调控尚不清楚。在这里,我们鉴定并表征了拟南芥中的ORMs,即ORM1和ORM2。ORM1和ORM2功能丧失(orm1 amiR-ORM2)刺激了鞘脂的从头生物合成,导致鞘脂大量积累,尤其是长链碱基和神经酰胺。酵母双杂交、双分子荧光互补和免疫共沉淀分析证实,ORM1和ORM2与SPT的小亚基(ssSPT)发生物理相互作用,表明ORMs抑制ssSPT的功能。我们发现,orm1 amiR-ORM2植物表现出早衰表型,伴随着细胞壁和线粒体中过氧化氢(HO)的产生、活跃的囊泡运输以及细胞壁附着的形成。引人注目的是,orm1 amiR-ORM2植物中与内质网应激和防御相关的基因表达增加,并且对氧化应激和病原体感染的抗性也增强。综上所述,我们的研究结果表明,ORMs与SPT相互作用以调节鞘脂稳态,并在植物对环境胁迫的耐受性中起关键作用。