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拟南芥酰基辅酶A结合蛋白ACBP3通过调节超长链脂肪酸代谢参与植物对缺氧的响应。

Arabidopsis acyl-CoA-binding protein ACBP3 participates in plant response to hypoxia by modulating very-long-chain fatty acid metabolism.

作者信息

Xie Li-Juan, Yu Lu-Jun, Chen Qin-Fang, Wang Feng-Zhu, Huang Li, Xia Fan-Nv, Zhu Tian-Ren, Wu Jian-Xin, Yin Jian, Liao Bin, Yao Nan, Shu Wensheng, Xiao Shi

机构信息

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

出版信息

Plant J. 2015 Jan;81(1):53-67. doi: 10.1111/tpj.12692. Epub 2014 Nov 13.

Abstract

In Arabidopsis thaliana, acyl-CoA-binding proteins (ACBPs) are encoded by a family of six genes (ACBP1 to ACBP6), and are essential for diverse cellular activities. Recent investigations suggest that the membrane-anchored ACBPs are involved in oxygen sensing by sequestration of group VII ethylene-responsive factors under normoxia. Here, we demonstrate the involvement of Arabidopsis ACBP3 in hypoxic tolerance. ACBP3 transcription was remarkably induced following submergence under both dark (DS) and light (LS) conditions. ACBP3-overexpressors (ACBP3-OEs) showed hypersensitivity to DS, LS and ethanolic stresses, with reduced transcription of hypoxia-responsive genes as well as accumulation of hydrogen peroxide in the rosettes. In contrast, suppression of ACBP3 in ACBP3-KOs enhanced plant tolerance to DS, LS and ethanol treatments. By analyses of double combinations of OE-1 with npr1-5, coi1-2, ein3-1 as well as ctr1-1 mutants, we observed that the attenuated hypoxic tolerance in ACBP3-OEs was dependent on NPR1- and CTR1-mediated signaling pathways. Lipid profiling revealed that both the total amounts and very-long-chain species of phosphatidylserine (C42:2- and C42:3-PS) and glucosylinositolphosphorylceramides (C22:0-, C22:1-, C24:0-, C24:1-, and C26:1-GIPC) were significantly lower in ACBP3-OEs but increased in ACBP3-KOs upon LS exposure. By microscale thermophoresis analysis, the recombinant ACBP3 protein bound VLC acyl-CoA esters with high affinities in vitro. Further, a knockout mutant of MYB30, a master regulator of very-long-chain fatty acid (VLCFA) biosynthesis, exhibited enhanced sensitivities to LS and ethanolic stresses, phenotypes that were ameliorated by ACBP3-RNAi. Taken together, these findings suggest that Arabidopsis ACBP3 participates in plant response to hypoxia by modulating VLCFA metabolism.

摘要

在拟南芥中,酰基辅酶A结合蛋白(ACBP)由一个包含六个基因(ACBP1至ACBP6)的家族编码,对多种细胞活动至关重要。最近的研究表明,膜锚定的ACBP在常氧条件下通过隔离VII组乙烯反应因子参与氧气感知。在此,我们证明了拟南芥ACBP3参与耐缺氧过程。在黑暗(DS)和光照(LS)条件下淹没后,ACBP3转录显著诱导。ACBP3过表达体(ACBP3-OE)对DS、LS和乙醇胁迫表现出超敏反应,莲座叶中缺氧反应基因的转录减少以及过氧化氢积累。相反,ACBP3基因敲除植株(ACBP3-KO)中ACBP3的抑制增强了植物对DS、LS和乙醇处理的耐受性。通过对OE-1与npr1-5、coi1-2、ein3-1以及ctr1-1突变体的双突变组合分析,我们观察到ACBP3-OE中减弱的耐缺氧性依赖于NPR1和CTR1介导的信号通路。脂质谱分析显示,在LS处理后,ACBP3-OE中磷脂酰丝氨酸(C42:2-和C42:3-PS)以及葡萄糖基肌醇磷酸神经酰胺(C22:0-、C22:1-、C24:0-、C24:1-和C26:1-GIPC)的总量和超长链种类均显著降低,而在ACBP3-KO中则增加。通过微量热泳分析,重组ACBP3蛋白在体外与超长链酰基辅酶A酯具有高亲和力结合。此外,超长链脂肪酸(VLCFA)生物合成的主要调节因子MYB30的敲除突变体对LS和乙醇胁迫表现出增强的敏感性,而ACBP3-RNAi改善了这些表型。综上所述,这些发现表明拟南芥ACBP3通过调节VLCFA代谢参与植物对缺氧的反应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/963e/4309432/98a697c5cdbc/tpj0081-0053-f1.jpg

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