半乳甘露聚糖
甘露聚糖
甘露糖
刺槐豆胶
生物化学
瓜尔胶
水解
化学
半乳糖
瓜尔
多糖
重组DNA
糖苷水解酶
基因
复合材料
材料科学
流变学
黄原胶
作者
Yajian Song,Wenyuan Sun,Yanli Fan,Yanfen Xue,Duoduo Liu,Cuiping Ma,Wenting Liu,Wesley Mosher,Xue‐Gang Luo,Zhong-Yuan Li,Wenjian Ma,Tongcun Zhang
标识
DOI:10.1021/acs.jafc.8b03878
摘要
Two glycoside hydrolases encoded by the mannan utilization gene cluster of alkaliphilic Bacillus sp. N16-5 were studied. The recombinant Gal27A (rGal27A) hydrolyzed both galactomannans and oligo-galactomannans to release galactose, while the recombinant Man113A (rMan113A) showed poor activity toward galactomannans, but it hydrolyzed manno-oligosaccharides to release mannose and mannobiose. rGal27A showed synergistic interactions with rMan113A and recombinant β-mannanase ManA (rManA), which is also from Bacillus sp. N16-5, in galactomannan degradation. The synergy degree of rGal27A and rManA on hydrolysis of locust bean gum and guar gum was 1.13 and 2.21, respectively, and that of rGal27A and rMan113A reached 2.00 and 2.68. The main products of galactomannan hydrolyzed by rGal27A and rManA simultaneously were galactose, mannose, mannobiose, and mannotriose, while those of galactomannan hydrolyzed by rGal27A and rMan113A were galactose and mannose. The yields of mannose, mannobiose, and mannotriose dramatically increased compared with the hydrolysis in the presence of rManA or rMan113A alone.
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