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燕麦中抗菌化合物的合成和抗病性需要一种丝氨酸羧肽酶样酰基转移酶。

A serine carboxypeptidase-like acyltransferase is required for synthesis of antimicrobial compounds and disease resistance in oats.

作者信息

Mugford Sam T, Qi Xiaoquan, Bakht Saleha, Hill Lionel, Wegel Eva, Hughes Richard K, Papadopoulou Kalliopi, Melton Rachel, Philo Mark, Sainsbury Frank, Lomonossoff George P, Roy Abhijeet Deb, Goss Rebecca J M, Osbourn Anne

机构信息

John Ines Centre, Norwich NR4 7UH, United Kingdom.

出版信息

Plant Cell. 2009 Aug;21(8):2473-84. doi: 10.1105/tpc.109.065870. Epub 2009 Aug 14.

Abstract

Serine carboxypeptidase-like (SCPL) proteins have recently emerged as a new group of plant acyltransferases. These enzymes share homology with peptidases but lack protease activity and instead are able to acylate natural products. Several SCPL acyltransferases have been characterized to date from dicots, including an enzyme required for the synthesis of glucose polyesters that may contribute to insect resistance in wild tomato (Solanum pennellii) and enzymes required for the synthesis of sinapate esters associated with UV protection in Arabidopsis thaliana. In our earlier genetic analysis, we identified the Saponin-deficient 7 (Sad7) locus as being required for the synthesis of antimicrobial triterpene glycosides (avenacins) and for broad-spectrum disease resistance in diploid oat (Avena strigosa). Here, we report on the cloning of Sad7 and show that this gene encodes a functional SCPL acyltransferase, SCPL1, that is able to catalyze the synthesis of both N-methyl anthraniloyl- and benzoyl-derivatized forms of avenacin. Sad7 forms part of an operon-like gene cluster for avenacin synthesis. Oat SCPL1 (SAD7) is the founder member of a subfamily of monocot-specific SCPL proteins that includes predicted proteins from rice (Oryza sativa) and other grasses with potential roles in secondary metabolism and plant defense.

摘要

丝氨酸羧肽酶样(SCPL)蛋白最近作为一类新的植物酰基转移酶出现。这些酶与肽酶具有同源性,但缺乏蛋白酶活性,而是能够酰化天然产物。迄今为止,已从双子叶植物中鉴定出几种SCPL酰基转移酶,包括野生番茄(Solanum pennellii)中合成可能有助于抗虫的葡萄糖聚酯所需的一种酶,以及拟南芥中与紫外线防护相关的芥子酸酯合成所需的酶。在我们早期的遗传分析中,我们确定皂苷缺陷7(Sad7)位点是二倍体燕麦(Avena strigosa)中抗菌三萜糖苷(燕麦 avenacins)合成和广谱抗病性所必需的。在这里,我们报告了Sad7的克隆,并表明该基因编码一种功能性SCPL酰基转移酶SCPL1,它能够催化燕麦 avenacin的N-甲基邻氨基苯甲酰基和苯甲酰基衍生形式的合成。Sad7是燕麦 avenacin合成的一个类似操纵子的基因簇的一部分。燕麦SCPL1(SAD7)是单子叶植物特异性SCPL蛋白亚家族的创始成员,该亚家族包括来自水稻(Oryza sativa)和其他禾本科植物的预测蛋白,它们在次生代谢和植物防御中可能发挥作用。

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