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Physaria fendleri 和 Ricinus communis 卵磷脂:胆固醇酰基转移酶样磷脂酶选择性地从磷脂酰胆碱中切割羟酰链。

Physaria fendleri and Ricinus communis lecithin:cholesterol acyltransferase-like phospholipases selectively cleave hydroxy acyl chains from phosphatidylcholine.

机构信息

Department of Agricultural, Food and Nutritional Science, 410 Agriculture/Forestry Centre, University of Alberta, Edmonton, Alberta, T6G 2P5, Canada.

Agriculture and Agri-Food Canada, Lethbridge Research and Development Centre, Lethbridge, Alberta, T1J 4B1, Canada.

出版信息

Plant J. 2021 Jan;105(1):182-196. doi: 10.1111/tpj.15050. Epub 2020 Nov 27.

Abstract

Production of hydroxy fatty acids (HFAs) in transgenic crops represents a promising strategy to meet our demands for specialized plant oils with industrial applications. The expression of Ricinus communis (castor) OLEATE 12-HYDROXYLASE (RcFAH12) in Arabidopsis has resulted in only limited accumulation of HFAs in seeds, which probably results from inefficient transfer of HFAs from their site of synthesis (phosphatidylcholine; PC) to triacylglycerol (TAG), especially at the sn-1/3 positions of TAG. Phospholipase As (PLAs) may be directly involved in the liberation of HFAs from PC, but the functions of their over-expression in HFA accumulation and distribution at TAG in transgenic plants have not been well studied. In this work, the functions of lecithin:cholesterol acyltransferase-like PLAs (LCAT-PLAs) in HFA biosynthesis were characterized. The LCAT-PLAs were shown to exhibit homology to LCAT and mammalian lysosomal PLA , and to contain a conserved and functional Ser/His/Asp catalytic triad. In vitro assays revealed that LCAT-PLAs from the HFA-accumulating plant species Physaria fendleri (PfLCAT-PLA) and castor (RcLCAT-PLA) could cleave acyl chains at both the sn-1 and sn-2 positions of PC, and displayed substrate selectivity towards sn-2-ricinoleoyl-PC over sn-2-oleoyl-PC. Furthermore, co-expression of RcFAH12 with PfLCAT-PLA or RcLCAT-PLA, but not Arabidopsis AtLCAT-PLA, resulted in increased occupation of HFA at the sn-1/3 positions of TAG as well as small but insignificant increases in HFA levels in Arabidopsis seeds compared with RcFAH12 expression alone. Therefore, PfLCAT-PLA and RcLCAT-PLA may contribute to HFA turnover on PC, and represent potential candidates for engineering the production of unusual fatty acids in crops.

摘要

在转基因作物中生产羟基脂肪酸 (HFAs) 是满足我们对具有工业应用的特种植物油脂需求的一种很有前景的策略。在拟南芥中表达蓖麻 (castor) OLEATE 12-HYDROXYLASE (RcFAH12) 导致 HFA 在种子中的积累非常有限,这可能是由于 HFA 从其合成部位(磷脂酰胆碱;PC)向三酰基甘油 (TAG) 的转移效率低下所致,尤其是在 TAG 的 sn-1/3 位置。磷脂酶 A (PLAs) 可能直接参与从 PC 中释放 HFA,但它们在转基因植物中 HFA 积累和分布到 TAG 中的过表达功能尚未得到很好的研究。在这项工作中,研究了卵磷脂:胆固醇酰基转移酶样 PLA (LCAT-PLA) 在 HFA 生物合成中的作用。LCAT-PLA 与 LCAT 和哺乳动物溶酶体 PLA 具有同源性,并含有保守且功能的 Ser/His/Asp 催化三联体。体外测定表明,来自 HFA 积累植物种Physaria fendleri (PfLCAT-PLA) 和蓖麻 (RcLCAT-PLA) 的 LCAT-PLA 可以在 PC 的 sn-1 和 sn-2 位置切割酰基链,并对 sn-2-油酰基-PC 具有底物选择性超过 sn-2-ricinoleoyl-PC。此外,RcFAH12 与 PfLCAT-PLA 或 RcLCAT-PLA 的共表达,而不是与拟南芥 AtLCAT-PLA 的共表达,导致 HFA 在 TAG 的 sn-1/3 位置的占有率增加,并且与 RcFAH12 单独表达相比,在拟南芥种子中的 HFA 水平略有增加,但意义不大。因此,PfLCAT-PLA 和 RcLCAT-PLA 可能有助于 PC 上 HFA 的周转,并且是在作物中工程生产不寻常脂肪酸的潜在候选物。

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