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基于结构的植物III型聚酮合酶工程改造:一种非天然九酮萘并吡喃酮的合成

Structure-based engineering of a plant type III polyketide synthase: formation of an unnatural nonaketide naphthopyrone.

作者信息

Abe Ikuro, Morita Hiroyuki, Oguro Satoshi, Noma Hisashi, Wanibuchi Kiyofumi, Kawahara Nobuo, Goda Yukihiro, Noguchi Hiroshi, Kohno Toshiyuki

机构信息

School of Pharmaceutical Sciences, University of Shizuoka, Shizuoka 422-8526, Japan.

出版信息

J Am Chem Soc. 2007 May 9;129(18):5976-80. doi: 10.1021/ja070375l. Epub 2007 Apr 17.

Abstract

Pentaketide chromone synthase (PCS) from Aloe arborescens is a novel plant-specific type III polyketide synthase (PKS) that produces 5,7-dihydroxy-2-methylchromone from five molecules of malonyl-CoA. On the basis of the crystal structures of wild-type and M207G mutant PCS, the F80A/Y82A/M207G triple mutant was constructed and shown to produce an unnatural novel nonaketide naphthopyrone by sequential condensations of nine molecules of malonyl-CoA. This is the first demonstration of the formation of a nonaketide by the structurally simple type III PKS. A homology model predicted that the active-site cavity volume of the triple mutant is increased to 4 times that of the wild-type PCS.

摘要

来自木立芦荟的五酮色酮合酶(PCS)是一种新型的植物特异性III型聚酮合酶(PKS),它利用五分子丙二酰辅酶A生成5,7-二羟基-2-甲基色酮。基于野生型和M207G突变体PCS的晶体结构,构建了F80A/Y82A/M207G三重突变体,并证明其通过九分子丙二酰辅酶A的顺序缩合产生一种非天然的新型九酮萘并吡喃。这是首次证明结构简单的III型PKS形成九酮化合物。同源模型预测,三重突变体的活性位点腔体积增加到野生型PCS的4倍。

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