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拟南芥GPAT9有助于细胞内甘油脂质的合成,但对表面脂质的合成没有作用。

Arabidopsis GPAT9 contributes to synthesis of intracellular glycerolipids but not surface lipids.

作者信息

Singer Stacy D, Chen Guanqun, Mietkiewska Elzbieta, Tomasi Pernell, Jayawardhane Kethmi, Dyer John M, Weselake Randall J

机构信息

Agricultural Lipid Biotechnology Program, Department of Agricultural, Food and Nutritional Science, University of Alberta, Edmonton, Alberta T6G 2P5, Canada.

USDA-ARS, US Arid-Land Agricultural Research Center, 21881 North Cardon Lane, Maricopa, AZ 85138, USA.

出版信息

J Exp Bot. 2016 Aug;67(15):4627-38. doi: 10.1093/jxb/erw242. Epub 2016 Jun 20.

Abstract

GLYCEROL-3-PHOSPHATE ACYLTRANSFERASE (GPAT) genes encode enzymes involved in glycerolipid biosynthesis in plants. Ten GPAT homologues have been identified in Arabidopsis. GPATs 4-8 have been shown to be involved in the production of extracellular lipid barrier polyesters. Recently, GPAT9 was reported to be essential for triacylglycerol (TAG) biosynthesis in developing Arabidopsis seeds. The enzymatic properties and possible functions of GPAT9 in surface lipid, polar lipid and TAG biosynthesis in non-seed organs, however, have not been investigated. Here we show that Arabidopsis GPAT9 exhibits sn-1 acyltransferase activity with high specificity for acyl-coenzyme A, thus providing further evidence that this GPAT is involved in storage lipid biosynthesis. We also confirm a role for GPAT9 in seed oil biosynthesis and further demonstrate that GPAT9 contributes to the biosynthesis of both polar lipids and TAG in developing leaves, as well as lipid droplet production in developing pollen grains. Conversely, alteration of constitutive GPAT9 expression had no obvious effects on surface lipid biosynthesis. Taken together, these studies expand our understanding of GPAT9 function to include modulation of several different intracellular glycerolipid pools in plant cells.

摘要

甘油-3-磷酸酰基转移酶(GPAT)基因编码参与植物甘油脂生物合成的酶。在拟南芥中已鉴定出10个GPAT同源物。已证明GPAT4 - 8参与细胞外脂质屏障聚酯的产生。最近,据报道GPAT9对于拟南芥发育种子中三酰甘油(TAG)的生物合成至关重要。然而,尚未研究GPAT9在非种子器官的表面脂质、极性脂质和TAG生物合成中的酶学性质和可能功能。在此我们表明,拟南芥GPAT9表现出对酰基辅酶A具有高特异性的sn-1酰基转移酶活性,从而进一步证明该GPAT参与储存脂质生物合成。我们还证实了GPAT9在种子油生物合成中的作用,并进一步证明GPAT9有助于发育叶片中极性脂质和TAG的生物合成,以及发育花粉粒中脂滴的产生。相反,组成型GPAT9表达的改变对表面脂质生物合成没有明显影响。综上所述,这些研究扩展了我们对GPAT9功能的理解,使其包括对植物细胞中几种不同细胞内甘油脂库的调节。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7665/4973736/06cedf2af8f2/exbotj_erw242_f0001.jpg

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