Feedstocks Division, Joint BioEnergy Institute, Lawrence Berkeley National Laboratory, Emeryville, California 94608, USA.
Plant Physiol. 2012 Feb;158(2):654-65. doi: 10.1104/pp.111.187187. Epub 2011 Dec 8.
The cuticle is a complex aliphatic polymeric layer connected to the cell wall and covers surfaces of all aerial plant organs. The cuticle prevents nonstomatal water loss, regulates gas exchange, and acts as a barrier against pathogen infection. The cuticle is synthesized by epidermal cells and predominantly consists of an aliphatic polymer matrix (cutin) and intracuticular and epicuticular waxes. Cutin monomers are primarily C(16) and C(18) unsubstituted, ω-hydroxy, and α,ω-dicarboxylic fatty acids. Phenolics such as ferulate and p-coumarate esters also contribute to a minor extent to the cutin polymer. Here, we present the characterization of a novel acyl-coenzyme A (CoA)-dependent acyl-transferase that is encoded by a gene designated Deficient in Cutin Ferulate (DCF). The DCF protein is responsible for the feruloylation of ω-hydroxy fatty acids incorporated into the cutin polymer of aerial Arabidopsis (Arabidopsis thaliana) organs. The enzyme specifically transfers hydroxycinnamic acids using ω-hydroxy fatty acids as acyl acceptors and hydroxycinnamoyl-CoAs, preferentially feruloyl-CoA and sinapoyl-CoA, as acyl donors in vitro. Arabidopsis mutant lines carrying DCF loss-of-function alleles are devoid of rosette leaf cutin ferulate and exhibit a 50% reduction in ferulic acid content in stem insoluble residues. DCF is specifically expressed in the epidermis throughout all green Arabidopsis organs. The DCF protein localizes to the cytosol, suggesting that the feruloylation of cutin monomers takes place in the cytoplasm.
表皮是连接细胞壁并覆盖所有气生植物器官表面的复杂脂肪族聚合层。表皮阻止非气孔水分流失,调节气体交换,并充当抵御病原体感染的屏障。表皮由表皮细胞合成,主要由脂肪族聚合物基质(角质)和细胞内角质和表皮蜡组成。角质单体主要为 C(16) 和 C(18) 未取代、ω-羟基和α、ω-二羧酸脂肪酸。酚类如阿魏酸和对香豆酸酯也在一定程度上有助于角质聚合物的形成。在这里,我们介绍了一种新型酰基辅酶 A (CoA) 依赖性酰基转移酶的特性,该酶由一个基因编码,该基因命名为角质中阿魏酸缺陷 (DCF)。DCF 蛋白负责将 ω-羟基脂肪酸掺入气生拟南芥 (Arabidopsis thaliana) 器官的角质聚合物中进行阿魏酸酯化。该酶在体外特异性地使用 ω-羟基脂肪酸作为酰基受体和羟基肉桂酰 CoA,优先是阿魏酰 CoA 和芥子酰 CoA,转移羟基肉桂酸。携带 DCF 功能丧失等位基因的拟南芥突变系缺乏罗勒叶角质阿魏酸,并且在茎不溶性残留物中阿魏酸含量减少 50%。DCF 特异性地在整个绿色拟南芥器官的表皮中表达。DCF 蛋白定位于细胞质,表明角质单体的阿魏酸酯化发生在细胞质中。