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包含约氏瘤胃梭菌全长支架蛋白RjCipA和纤维素酶RjCel5B或木聚糖酶RjXyn10C的重组纤维素分解或木聚糖分解复合物。

Recombinant cellulolytic or xylanolytic complex comprising the full-length scaffolding protein RjCipA and cellulase RjCel5B or xylanase RjXyn10C of Ruminiclostridium josui.

作者信息

Orita Taku, Sakka Makiko, Kimura Tetsuya, Sakka Kazuo

机构信息

Graduated School of Bioresources, Mie University, 1577 Kurimamachiya-cho, Tsu 514-8507, Japan.

出版信息

Enzyme Microb Technol. 2017 Feb;97:63-70. doi: 10.1016/j.enzmictec.2016.10.021. Epub 2016 Nov 9.

Abstract

Three cellulosomal subunits of Ruminiclostridium josui, the full-length scaffolding protein CipA (RjCipA), a cellulase Cel5B (RjCel5B) and a xylanase Xyn10C (RjXyn10C), were successfully produced by Escherichia coli recombinant clones. RjCel5B and RjXyn10C were characterized as an endoglucanase and an endoxylanase, respectively. RjCipA, RjCel5B and Xyn10C adsorbed to microcrystalline cellulose (Funacel) and rice straw powder. Interaction between RjCel5B and RjCipA, and RjXyn10C and RjCipA were confirmed by qualitative assays. When a fixed amount of RjCel5B was mixed with different amounts of RjCipA, i.e., at the molar ratio of 6:1 or 6:6, the 6:6 complex showed 6.6-fold higher activity toward Funacel and 11.5-fold higher activity toward rice straw powder than RjCel5B, whereas the 6:1 complex showed only 2.8- and 3.9-folds higher activities toward Funacel and rice straw powder, respectively, than RjCel5B. These results suggest that the family-3 carbohydrate binding module (CBM3) of RjCipA in the RjCel5B-RjCipA complex plays an important role for hydrolysis of cellulose and the substrate-targeting effect of the CBM is more significant than the proximity effect caused by the presence of plural catalytic subunits adjoining each other. In contrast, the 6:1 complex of RjXyn10C and RjCipA showed 45% and 28% of the activities of RjXyn10C toward insoluble wheat arabinoxylan and rice straw powder, respectively. These results suggest that both a negative proximity effect and substrate-isolating effect, but not substrate-targeting effect, are caused by the CBM3 with inappropriate polysaccharide specificity. Substrate-targeting, proximity and substrate-isolating effects are discussed.

摘要

通过大肠杆菌重组克隆成功生产了约氏瘤胃梭菌的三种纤维小体亚基,即全长支架蛋白CipA(RjCipA)、一种纤维素酶Cel5B(RjCel5B)和一种木聚糖酶Xyn10C(RjXyn10C)。RjCel5B和RjXyn10C分别被鉴定为内切葡聚糖酶和内切木聚糖酶。RjCipA、RjCel5B和Xyn10C吸附于微晶纤维素(Funacel)和稻草粉。通过定性分析证实了RjCel5B与RjCipA以及RjXyn10C与RjCipA之间的相互作用。当将固定量的RjCel5B与不同量的RjCipA混合时,即摩尔比为6:1或6:6,6:6复合物对Funacel的活性比RjCel5B高6.6倍,对稻草粉的活性高11.5倍,而6:1复合物对Funacel和稻草粉的活性分别仅比RjCel5B高2.8倍和3.9倍。这些结果表明,RjCel5B - RjCipA复合物中RjCipA的3家族碳水化合物结合模块(CBM3)在纤维素水解中起重要作用,且CBM的底物靶向作用比多个相邻催化亚基存在所引起的邻近作用更为显著。相比之下,RjXyn10C与RjCipA的6:1复合物对不溶性小麦阿拉伯木聚糖和稻草粉的活性分别仅为RjXyn10C的45%和28%。这些结果表明,具有不适当多糖特异性的CBM3会导致负邻近效应和底物隔离效应,但不会导致底物靶向效应。文中对底物靶向、邻近和底物隔离效应进行了讨论。

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