Palamuru Shannu, Dellas Nikki, Pearce Stephen L, Warden Andrew C, Oakeshott John G, Pandey Gunjan
CSIRO Land & Water Flagship, Acton, ACT, Australia Research School of Chemistry, Acton, ACT, Australia.
CSIRO Land & Water Flagship, Acton, ACT, Australia.
Appl Environ Microbiol. 2015 Dec;81(23):8164-76. doi: 10.1128/AEM.01573-15. Epub 2015 Sep 18.
Lignin is a complex aromatic polymer found in plant cell walls that makes up 15 to 40% of plant biomass. The degradation of lignin substructures by bacteria is of emerging interest because it could provide renewable alternative feedstocks and intermediates for chemical manufacturing industries. We have isolated a bacterium, strain SG61-1L, that rapidly degrades all of the stereoisomers of one lignin substructure, guaiacylglycerol-β-guaiacyl ether (GGE), which contains a key β-O-4 linkage found in most intermonomer linkages in lignin. In an effort to understand the rapid degradation of GGE by this bacterium, we heterologously expressed and kinetically characterized a suite of dehydrogenase candidates for the first known step of GGE degradation. We identified a clade of active GGE dehydrogenases and also several other dehydrogenases outside this clade that were all able to oxidize GGE. Several candidates exhibited stereoselectivity toward the GGE stereoisomers, while others had higher levels of catalytic performance than previously described GGE dehydrogenases for all four stereoisomers, indicating a variety of potential applications for these enzymes in the manufacture of lignin-derived commodities.
木质素是一种存在于植物细胞壁中的复杂芳香族聚合物,占植物生物质的15%至40%。细菌对木质素亚结构的降解正引起越来越多的关注,因为它可以为化学制造业提供可再生的替代原料和中间体。我们分离出了一种细菌,菌株SG61-1L,它能快速降解木质素亚结构之一的愈创木基甘油-β-愈创木基醚(GGE)的所有立体异构体,该亚结构含有木质素中大多数单体间连接中存在的关键β-O-4键。为了了解这种细菌对GGE的快速降解,我们异源表达并对一系列脱氢酶候选物进行了动力学表征,这些候选物参与GGE降解的第一个已知步骤。我们鉴定出了一组活性GGE脱氢酶以及该组之外的其他几种脱氢酶,它们都能够氧化GGE。几种候选物对GGE立体异构体表现出立体选择性,而其他一些候选物对所有四种立体异构体的催化性能水平都高于先前描述的GGE脱氢酶,这表明这些酶在木质素衍生产品制造中具有多种潜在应用。