Department of General Microbiology, University of Helsinki, SF 00280 Helsinki, Finland.
Appl Environ Microbiol. 1987 Nov;53(11):2642-9. doi: 10.1128/aem.53.11.2642-2649.1987.
We investigated the metabolic route by which a lignin tetramer-degrading mixed bacterial culture degraded two tetrameric lignin model compounds containing beta-O-4 and 5-5 biphenyl structures. The alpha-hydroxyl groups in the propane chain of both phenolic and nonphenolic tetramers were first oxidized symmetrically in two successive steps to give monoketones and diketones. These ketone metabolites were decomposed through C(alpha)(=O)-C(beta) cleavage, forming trimeric carboxyl acids which were further metabolized through another C(alpha)(=O)-C(beta) cleavage. Dehydrodiveratric acid, which resulted from the cleavage of the carbon bonds of the nonphenol tetramer, was demethylated twice. Four metabolites of the phenolic tetramer were purified and identified. All of these were stable compounds in sterile mineral medium, but were readily degraded by lignin tetramer-degrading bacteria along the same pathway as the phenol tetramer. No monoaromatic metabolites accumulated. All metabolites were identified by mass and proton magnetic resonance spectrometry. The metabolic route by which the mixed bacterial culture degraded tetrameric lignin model compounds was different from the route of the main ligninase-catalyzed C(alpha)-C(beta) cleavage by Phanerochaete chrysosporium.
我们研究了木质素四聚体降解混合细菌培养物降解含有β-O-4 和 5-5 联苯结构的两种四聚体木质素模型化合物的代谢途径。两种酚类和非酚类四聚体中丙烷链上的α-羟基首先在两个连续步骤中被对称氧化成单酮和二酮。这些酮代谢物通过 C(α)(=O)-C(β)裂解分解,形成三羧酸,这些三羧酸通过另一个 C(α)(=O)-C(β)裂解进一步代谢。非酚四聚体碳键裂解产生的脱氢偏三甲酸被两次去甲基化。酚四聚体的四种代谢物被纯化并鉴定。所有这些在无菌矿物培养基中都是稳定的化合物,但很容易被木质素四聚体降解细菌沿着与酚四聚体相同的途径降解。没有单芳烃代谢物积累。所有代谢物均通过质谱和质子磁共振光谱鉴定。混合细菌培养物降解四聚体木质素模型化合物的代谢途径与黄孢原毛平革菌主要木质素酶催化的 C(α)-C(β)裂解途径不同。