首页> 美国卫生研究院文献>other >Cellulose-binding activity of a 21-kDa endo-ß-14-glucanase lacking cellulose-binding domain and its synergy with other cellulases in the digestive fluid of Aplysia kurodai
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Cellulose-binding activity of a 21-kDa endo-ß-14-glucanase lacking cellulose-binding domain and its synergy with other cellulases in the digestive fluid of Aplysia kurodai

机译:缺乏纤维素结合域的21 kDa内切β-14-葡聚糖酶的纤维素结合活性及其与黑of消化液中其他纤维素酶的协同作用

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摘要

Endo-ß-1,4-glucanase AkEG21 belonging to glycosyl hydrolase family 45 (GHF45) is the most abundant cellulase in the digestive fluid of sea hare (Aplysia kurodai). The specific activity of this 21-kDa enzyme is considerably lower than those of other endo ß-1,4-glucanases in the digestive fluid of A. kurodai, therefore its role in whole cellulose hydrolysis by sea hare is still uncertain. Although AkEG21 has a catalytic domain without a cellulose binding domain, it demonstrated stable binding to cellulose fibers, similar to that of fungal cellobiohydrolase (CBH) 1 and CBH 2, which is strongly inhibited by cellohexaose, suggesting the involvement of the catalytic site in cellulose binding. Cellulose-bound AkEG21 hydrolyzed cellulose to cellobiose, cellotriose and cellotetraose, but could not digest an external substrate, azo-carboxymethyl cellulose. Cellulose hydrolysis was considerably stimulated by the synergistic action of cellulose-bound AkEG21 and AkEG45, another ß-1,4-endoglucanase present in the digestive fluid of sea hare; however no synergy in carboxymethylcellulose hydrolysis was observed. When AkEG21 was removed from the digestive fluid by immunoprecipitation, the cellulose hydrolyzing activity of the fluid was significantly reduced, indicating a critical role of AkEG21 in cellulose hydrolysis by A. kurodai. These findings suggest that AkEG21 is a processive endoglucanase functionally equivalent to the CBH, which provides a CBH-independent mechanism for the mollusk to digest seaweed cellulose to glucose.
机译:属于糖基水解酶家族45(GHF45)的Endo-ß-1,4-葡聚糖酶AkEG21是海兔(Aplysia kurodai)消化液中最丰富的纤维素酶。这种21-kDa酶的比活度比黑头曲霉消化液中的其他内切ß-1,4-葡聚糖酶的比活度低得多,因此,它在海兔整个纤维素水解中的作用仍不确定。尽管AkEG21具有没有纤维素结合结构域的催化结构域,但是它显示出与纤维素纤维的稳定结合,类似于真菌纤维二糖水解酶(CBH)1和CBH 2,其被纤维六糖强烈抑制,表明该催化位点参与了纤维素捆绑。与纤维素结合的AkEG21将纤维素水解为纤维二糖,纤维三糖和纤维四糖,但无法消化外部底物偶氮羧甲基纤维素。纤维素结合的AkEG21和AkEG45(海兔消化液中存在的另一种ß-1,4-内葡聚糖酶)的协同作用极大地刺激了纤维素的水解。然而,在羧甲基纤维素水解中没有观察到协同作用。当通过免疫沉淀从消化液中除去AkEG21时,该液的纤维素水解活性显着降低,表明AkEG21在黑曲霉纤维素水解中的关键作用。这些发现表明,AkEG21是一种功能上与CBH等效的过程性内切葡聚糖酶,它为软体动物将海藻纤维素消化为葡萄糖提供了CBH独立的机制。

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