首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >A distinct DGAT with sn-3 acetyltransferase activity that synthesizes unusual reduced-viscosity oils in Euonymus and transgenic seeds
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A distinct DGAT with sn-3 acetyltransferase activity that synthesizes unusual reduced-viscosity oils in Euonymus and transgenic seeds

机译:具有sn-3乙酰转移酶活性的独特DGAT可在卫矛和转基因种子中合成不寻常的降低粘度的油

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摘要

Endosperm and embryo tissues from the seeds of Euonymus alatus (Burning Bush) accumulate high levels of 3-acetyl-1,2-diacyl-sn-glycerols (acTAGs) as their major storage lipids. In contrast, the aril tissue surrounding the seed produces long-chain triacylglycerols (lcTAGs) typical of most other organisms. The presence of the sn-3 acetyl group imparts acTAGs with different physical and chemical properties, such as a 30% reduction in viscosity, compared to lcTAGs. Comparative transcriptome analysis of developing endosperm and aril tissues using pyrosequencing technology was performed to isolate the enzyme necessary for the synthesis of acTAGs. An uncharacterized membrane-bound O-acyltransferase (MBOAT) family member was the most abundant acyltransferase in the endosperm but was absent from the aril. Expression of this MBOAT in yeast resulted in the accumulation of acTAGs but not lcTAG; hence, the enzyme was named EaDAcT (Euonymus alatus diacylglycerol acetyltransferase). Yeast microsomes expressing EaDAcT possessed acetyl-CoA diacylglycerol acetyltransferase activity but lacked long-chain acyl-CoA diacylglycerol acyltransferase activity. Expression of EaDAcT under the control of a strong, seed-specific promoter in Arabidopsis resulted in the accumulation of acTAGs, up to 40 mol % of total TAG in the seed oil. These results demonstrate the utility of deep transcriptional profiling with multiple tissues as a gene discovery strategy for low-abundance proteins. They also show that EaDAcT is the acetyltransferase necessary and sufficient for the production of acTAGs in Euonymus seeds, and that this activity can be introduced into the seeds of other plants, allowing the evaluation of these unusual TAGs for biofuel and other applications.
机译:大叶黄杨(Burning Bush)种子的胚乳和胚组织积累了高水平的3-乙酰基1,2-二酰基-sn-甘油(acTAGs)作为它们的主要脂质。相反,种子周围的假种皮组织会产生大多数其他生物体所特有的长链三酰基甘油(lcTAG)。与lcTAGs相比,sn-3乙酰基的存在使acTAGs具有不同的物理和化学特性,例如粘度降低了30%。使用焦磷酸测序技术对发育中的胚乳和假种皮组织进行了比较转录组分析,以分离合成acTAGs所需的酶。未鉴定的膜结合O-酰基转移酶(MBOAT)家族成员是胚乳中最丰富的酰基转移酶,但假种皮中不存在。该MBOAT在酵母中的表达导致acTAGs的积累,而不是lcTAG的积累。因此,该酶被命名为EaDAcT(Euonymus alatus二酰基甘油乙酰转移酶)。表达EaDAcT的酵母微粒体具有乙酰辅酶A二酰基甘油乙酰转移酶活性,但缺乏长链酰基辅酶A二酰基甘油酰基转移酶活性。在拟南芥中,在强的种子特异性启动子的控制下,EaDAcT的表达导致acTAG的积累,高达种子油中总TAG的40 mol%。这些结果证明了利用多种组织进行深度转录谱分析作为低丰度蛋白的基因发现策略的实用性。他们还表明,EaDAcT是在大叶黄杨种子中产生acTAG所必需和充分的乙酰基转移酶,并且该活性可以引入其他植物的种子中,从而可以评估这些异常的TAG,以用于生物燃料和其他应用。

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