亚麻荠磷脂酰胆碱:二酰基甘油胆碱磷酸转移酶催化的相互转化不区分底物

IF 1.8 4区 医学 Q4 BIOCHEMISTRY & MOLECULAR BIOLOGY Lipids Pub Date : 2021-08-31 DOI:10.1002/lipd.12322
Kamil Demski, Simon Jeppson, Sten Stymne, Ida Lager
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引用次数: 1

摘要

磷脂酰胆碱:二酰基甘油胆碱磷酸转移酶(PDCT)通过二酰基甘油(DAG)和磷脂酰胆碱(PtdCho)的相互转化来调节种子油(三酰基甘油,TAG)的脂肪酸组成。PtdCho是多不饱和脂肪酸生物合成的底物,也是许多不寻常脂肪酸的底物。在PDCT的作用下,这些脂肪酸可以通过酰基辅酶a:DAG和磷脂:二酰基甘油酰基转移酶的作用转移到DAG池中,用于TAG的生物合成。尽管PDCT酶在调节种子油成分中具有重要作用,但其生化特性一直缺乏。我们在表达Camelina PDCT而缺乏产生TAG能力的酵母株的微粒体制剂中表征了Camelina sativa PDCT。茶树PDCT对PtdCho和DAG的sn-1,2对映体具有特异性,不能利用神经酰胺。相互转化在孵育15分钟内达到平衡,表明只有不同的DAG和PtdCho池可用于交换。然而,参与交易的DAG和PtdCho的池大小并不是固定的,而是随着外源DAG或PtdCho的加入而增加。亚麻荠PDCT在PtdCho和DAG底物中对二油基、二亚油基和二亚麻油基的选择性基本相同,表明未发生特定不饱和底物的单向转移。尽管植物PtdCho中的芥子酸含量较低,但亚麻荠PDCT对芥子酰dag具有良好的活性,在种子油中积累了大量的芥子酸。
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Camelina sativa phosphatidylcholine:diacylglycerol cholinephosphotransferase-catalyzed interconversion does not discriminate between substrates

Phosphatidylcholine:diacylglycerol cholinephosphotransferases (PDCT) regulate the fatty acid composition of seed oil (triacylglycerol, TAG) by interconversion of diacylglycerols (DAG) and phosphatidylcholine (PtdCho). PtdCho is the substrate for polyunsaturated fatty acid biosynthesis, as well as for a number of unusual fatty acids. By the action of PDCT, these fatty acids can be transferred into the DAG pool to be utilized in TAG biosynthesis by the action of acyl-CoA:DAG and phospholipid:diacylglycerol acyltransferases. Despite its importance in regulating seed oil composition, biochemical characterization of PDCT enzymes has been lacking. We characterized Camelina sativa PDCT in microsomal preparations of a yeast strain expressing Camelina PDCT and lacking the capacity of producing TAG. Camelina PDCT was specific for PtdCho and the sn-1,2 enantiomer of DAG and could not utilize ceramide. The interconversion reaches equilibrium within 15 min of incubation, indicating that only distinct pools of DAG and PtdCho were available for exchange. However, the pool sizes of DAG and PtdCho involved in the exchange were not fixed but increased with the amount of exogenous DAG or PtdCho added. Camelina PDCT showed about the same selectivity for di-oleoyl, di-linoleoyl, and di-linolenoyl species in both PtdCho and DAG substrates, suggesting that no unidirectional transfer of particular unsaturated substrates occurred. Camelina PDCT had a good activity with erucoyl-DAG as a substrate despite low erucic acid levels in PtdCho in plant species accumulating a high amount of this fatty acid in the seed oil.

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来源期刊
Lipids
Lipids 生物-生化与分子生物学
CiteScore
4.20
自引率
5.30%
发文量
33
审稿时长
4-8 weeks
期刊介绍: Lipids is a journal of the American Oil Chemists'' Society (AOCS) that focuses on publishing high-quality peer-reviewed papers and invited reviews in the general area of lipid research, including chemistry, biochemistry, clinical nutrition, and metabolism. In addition, Lipids publishes papers establishing novel methods for addressing research questions in the field of lipid research.
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