塞凯尔
葡萄糖苷酶
随机六聚体
二聚体
生物化学
生物
水解酶
丝氨酸
同工酶
同源(生物学)
立体化学
化学
酶
基因
植物
有机化学
作者
Masayuki Sue,Kana Yamazaki,Shunsuke Yajima,Taiji Nomura,Tetsuya Matsukawa,Hajime Iwamura,Toru Miyamoto
出处
期刊:Plant Physiology
[Oxford University Press]
日期:2006-06-02
卷期号:141 (4): 1237-1247
被引量:72
标识
DOI:10.1104/pp.106.077693
摘要
Abstract The wheat (Triticum aestivum) and rye (Secale cereale) β-d-glucosidases hydrolyze hydroxamic acid-glucose conjugates, exist as different types of isozyme, and function as oligomers. In this study, three cDNAs encoding β-d-glucosidases (TaGlu1a, TaGlu1b, and TaGlu1c) were isolated from young wheat shoots. Although the TaGlu1s share very high sequence homology, the mRNA level of Taglu1c was much lower than the other two genes in 48- and 96-h-old wheat shoots. The expression ratio of each gene was different between two wheat cultivars. Recombinant TaGlu1b expressed in Escherichia coli was electrophoretically distinct fromTaGlu1a and TaGlu1c. Furthermore, coexpression of TaGlu1a and TaGlu1b gave seven bands on a native-PAGE gel, indicating the formation of both homo- and heterohexamers. One distinctive property of the wheat and rye glucosidases is that they function as hexamers but lose activity when dissociated into smaller oligomers or monomers. The crystal structure of hexameric TaGlu1b was determined at a resolution of 1.8 Å. The N-terminal region was located at the dimer-dimer interface and plays a crucial role in hexamer formation. Mutational analyses revealed that the aromatic side chain at position 378, which is located at the entrance to the catalytic center, plays an important role in substrate binding. Additionally, serine-464 and leucine-465 of TaGlu1a were shown to be critical in the relative specificity for DIMBOA-glucose (2-O-β-d-glucopyranosyl-4-hydroxy-7-methoxy-1,4-benzoxazin-3-one) over DIBOA-glucose (7-demethoxy-DIMBOA-glucose).
科研通智能强力驱动
Strongly Powered by AbleSci AI