单甘醇
漆酶
松柏醇
化学
基质(水族馆)
木质素
单体
细胞壁
氧化还原酶
生物化学
酶
有机化学
生物合成
生物
聚合物
生态学
作者
Tian Xie,Zhongchuan Liu,Ganggang Wang
出处
期刊:Nature plants
[Nature Portfolio]
日期:2020-03-02
卷期号:6 (3): 231-237
被引量:51
标识
DOI:10.1038/s41477-020-0595-5
摘要
Plant laccases catalyse the oxidation of monolignols in lignification, a process reinforcing the cell wall of many different cell types that provide mechanical support, nutrient transportation and defence against pathogens in plants1. The isozymes display a broad range of substrate preferences. Here, the substrate preference of a laccase (ZmLac3) from Zea mays (maize) was characterized. The crystal structure of ZmLac3 revealed a compact and deep substrate-binding pocket, and the binding modes of sinapyl alcohol (SinA) and coniferyl alcohol (ConA) were solved. On the basis of structural data and kinetics analysis, we propose that the regionalization of polar and hydrophobic surfaces in the binding pocket of ZmLac3 is vital for defining the orientation of SinA/ConA binding. The extra methoxyl group in SinA makes substantial contributions to interactions between SinA and ZmLac3, which are absent in the ZmLac3-ConA complex. In summary, the polar and hydrophobic interactions between SinA/ConA and ZmLac3 determine the binding positions of the monolignols in ZmLac3. These results provide valuable insight about ZmLac3 catalysis and should aid industrial processes that use plant laccases.
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