Department of Plant Biology, Michigan State University, East Lansing, Michigan 48824, USA.
J Biol Chem. 2012 Mar 9;287(11):8347-55. doi: 10.1074/jbc.M111.284497. Epub 2012 Jan 21.
Lignin is a major component of plant cell walls that is essential to their function. However, the strong bonds that bind the various subunits of lignin, and its cross-linking with other plant cell wall polymers, make it one of the most important factors in the recalcitrance of plant cell walls against polysaccharide utilization. Plants make lignin from a variety of monolignols including p-coumaryl, coniferyl, and sinapyl alcohols to produce the three primary lignin units: p-hydroxyphenyl, guaiacyl, and syringyl, respectively, when incorporated into the lignin polymer. In grasses, these monolignols can be enzymatically preacylated by p-coumarates prior to their incorporation into lignin, and these monolignol conjugates can also be "monomer" precursors of lignin. Although monolignol p-coumarate-derived units may comprise up to 40% of the lignin in some grass tissues, the p-coumarate moiety from such conjugates does not enter into the radical coupling (polymerization) reactions of lignification. With a greater understanding of monolignol p-coumarate conjugates, grass lignins could be engineered to contain fewer pendent p-coumarate groups and more monolignol conjugates that improve lignin cleavage. We have cloned and expressed an enzyme from rice that has p-coumarate monolignol transferase activity and determined its kinetic parameters.
木质素是植物细胞壁的主要成分,对其功能至关重要。然而,木质素各亚基之间的强键以及与其他植物细胞壁聚合物的交联,使其成为植物细胞壁对多糖利用具有抗性的最重要因素之一。植物从各种松柏醇单体如对香豆酸、松柏醇和丁香醇中合成木质素,分别产生三种主要的木质素单元:对羟苯基、愈创木基和丁香基,当它们被纳入木质素聚合物中时。在禾本科植物中,这些松柏醇单体可以在被纳入木质素之前被对香豆酸预酰化,并且这些松柏醇单体共轭物也可以是木质素的“单体”前体。尽管在一些禾本科植物组织中,木质素中的松柏醇对香豆酸衍生单元可能高达 40%,但这些共轭物中的对香豆酸部分不会参与木质素的自由基偶联(聚合)反应。通过更深入地了解松柏醇对香豆酸共轭物,禾本科植物的木质素可以被设计成含有更少的侧链对香豆酸基团和更多的能够改善木质素断裂的松柏醇共轭物。我们已经从水稻中克隆和表达了一种具有对香豆酸单松柏醇转移酶活性的酶,并确定了其动力学参数。