A novel endo-β-1,6-glucanase from the mushroom Coprinopsis cinerea and its application in studying of cross-linking of β-1,6-glucan and the wall extensibility in stipe cell walls

A novel endo-β-1,6-glucanase from the mushroom Coprinopsis cinerea and its application in studying of cross-linking of β-1,6-glucan and the wall extensibility in stipe cell walls
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一种来自蘑菇灰霉的新型内切β-1,6-葡聚糖酶及其在研究β-1,6-葡聚糖交联和菌柄细胞壁壁延伸性中的应用

DOI:
10.1016/j.ijbiomac.2020.05.244
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发表时间:
2020-10-01
影响因子:
8.2
通讯作者:
Yuan, Sheng
Yuan, Sheng
中科院分区:
化学1区
文献类型:
--
作者:
Liu, Xiao;Wang, Rui;Yuan, Sheng

文献摘要

被引文献

相似文献

We previously reported that chitinases reconstituted heat-inactivated stipe cell wall extension in a steady and continuous extension profile by cleaving chitins cross-linked to various polysaccahrides, whereas, endo-beta-1,3-glucanases reconstituted heat-inactivated stipe wall extension in a profile of an initially fast extension and subsequent termination of extension due to its degradation of beta-1,3-glucan but not other polysaccharides such as beta-1,6-glucans cross-linked to chitins. Thus, a novel endo-beta-1,6-glucanase, GH30A, from Coprinopsis cinerea was cloned and characterized to study cross-linking of beta-1,6-glucan and wall extensibility in stipe walls. GH30A had higher activity and better thermophilidty than reported beta-1,6-glucanases. GH30A hydrolyzed pustulan having beta-1,6-linkages but not other polysaccharides without beta-1,6-linkages; GH30A did not cleave gentiobiose and single beta-1,6-linkage branches in laminarin from Laminaria digitata but cut consecutive beta-1,6-linkage branches in laminarin from Eisenia bicyclic. GH30A reconstituted heated-inactivated stipe cell wall extension with release of glucose and gentiobiose, indicating that beta-1,6-glucans were present and cross-linked to chi tins in stipe walls, and cleaving beta-1,6-glucans cross-linked to chitins by GH30A led to wall loosening for extension. However, GH30A individually or in combination with endo-beta-1,3-glucanase reconstituted-stipe wall extension profile was similar to individual endo-beta-1,3-glucanases, exploring that chi tins were also cross-linked to other polysaccharides besides beta-1,3-glucans and beta-1,6-glucans. (C) 2020 Elsevier B.V. All rights reserved.