Institute of Biological Chemistry, Washington State University, Pullman, WA 99164-6340, USA.
Org Biomol Chem. 2010 Sep 7;8(17):3928-46. doi: 10.1039/c004817h. Epub 2010 Jul 22.
The Arabidopsis mutant Atomt1 lignin differs from native lignin in wild type plants, in terms of sinapyl (S) alcohol-derived substructures in fiber cell walls being substituted by 5-hydroxyconiferyl alcohol (5OHG)-derived moieties. During programmed lignin assembly, these engender formation of benzodioxane substructures due to intramolecular cyclization of their quinone methides that are transiently formed following 8-O-4' radical-radical coupling. Thioacidolytic cleavage of the 8-O-4' inter-unit linkages in the Atomt1 mutant, relative to the wild type, indicated that cleavable sinapyl (S) and coniferyl (G) alcohol-derived monomeric moieties were stoichiometrically reduced by a circa 2 : 1 ratio. Additionally, lignin degradative analysis resulted in release of a 5OHG-5OHG-G trimer from the Atomt1 mutant, which then underwent further cleavage. Significantly, the trimeric moiety released provides new insight into lignin primary structure: during polymer assembly, the first 5OHG moiety is linked via a C8-O-X inter-unit linkage, whereas subsequent addition of monomers apparently involves sequential addition of 5OHG and G moieties to the growing chain in a 2 : 1 overall stoichiometry. This quantification data thus provides further insight into how inter-unit linkage frequencies in native lignins are apparently conserved (or near conserved) during assembly in both instances, as well as providing additional impetus to resolve how the overall question of lignin macromolecular assembly is controlled in terms of both type of monomer addition and primary sequence.
拟南芥突变体 Atomt1 木质素与野生型植物中的天然木质素有区别,表现在纤维细胞壁中源自丁香基(S)醇的亚结构被 5-羟基松柏醇(5OHG)衍生的部分取代。在程序化木质素组装过程中,由于其醌甲基化物的分子内环化,这些物质会形成苯并二恶烷亚结构,这些醌甲基化物是在 8-O-4'自由基-自由基偶联后短暂形成的。与野生型相比,Atomt1 突变体中 8-O-4'单元间键的硫代酸裂解表明,可裂解的丁香基(S)和松柏基(G)醇衍生的单体部分按大约 2:1 的比例等摩尔减少。此外,木质素降解分析导致从 Atomt1 突变体中释放出 5OHG-5OHG-G 三聚体,然后该三聚体进一步裂解。重要的是,从突变体中释放的三聚体部分提供了对木质素一级结构的新见解:在聚合物组装过程中,第一个 5OHG 部分通过 C8-O-X 单元间键连接,而随后单体的添加显然涉及 5OHG 和 G 部分以 2:1 的总体化学计量比顺序添加到生长链中。因此,这些定量数据进一步深入了解了在这两种情况下,天然木质素中单元间键频率如何在组装过程中明显保守(或接近保守),并为解决木质素大分子组装的整体问题提供了更多动力,包括单体添加的类型和一级序列。