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蘑菇 Coprinopsis cinerea 中的几丁质脱乙酰酶 Cda1 和 Cda2 的异源表达、表征和可能功能。

Heterologous expression, characterization and possible functions of the chitin deacetylases, Cda1 and Cda2, from mushroom Coprinopsis cinerea.

机构信息

Jiangsu Key Laboratory for Microbes and Microbial Functional Genomics, Jiangsu Engineering and Technology Research Center for Industrialization of Microbial Resources, College of Life Science, Nanjing Normal University, 1 Wenyuan Rd, Xianlin University Park, Nanjing 210023, PR China.

Jiangsu Key Laboratory of Translational Research and Therapy for Neuro-Psycho-Diseases and College of Pharmaceutical Sciences, Soochow University, Wenjing Rd, Dushu lake campus, Suzhou, Jiangsu 215021, PR China.

出版信息

Glycobiology. 2018 May 1;28(5):318-332. doi: 10.1093/glycob/cwy007.

Abstract

Two chitin deacetylases, Cda1 and Cda2, from Coprinopsis cinerea were expressed and characterized. Cda1 preferably deacetylates the nonreducing end residue of (GlcNAc)2, the internal or nonreducing end residue of (GlcNAc)3 and the nonreducing residue of (GlcNAc)6 after deacetylating the internal residues. In contrast, Cda2 preferably deacetylates the reducing end residue of (GlcNAc)2, the internal or reducing end residue of (GlcNAc)3 and the reducing residue of (GlcNAc)6 after deacetylating the internal residues. Furthermore, Cda1 prefers chitohexaose with higher degrees of acetylation for deacetylation, while Cda2 shows a weaker preference for chitohexaose with varying degrees of acetylation. The predicted Cda1 structure shows more hydrophobic aromatic amino acids on the surface near subsite +1 in the active site than on the surface near subsite -1, whereas the predicted Cda2 structure has more hydrophobic aromatic amino acids on the surface near subsite -1 than on the surface near subsite +1, which may be the molecular basis of the distinctive catalytic features between Cda1 and Cda2. Notably, Cda1 has a high transcription level in the nonelongating basal stipe region, whereas Cda2 has a high transcription level in the elongating apical stipe region, and the transcription level of the former is approximately five times that of the latter. Correspondingly, the molar ratio of GlcN/GlcNAc increased from 0.15 in the cell wall of the apical stipe region to 0.22 in the cell wall of the basal stipe region. Different modes of action of Cda1 and Cda2 may be related to their functions in the different stipe regions.

摘要

从毛栓菌中表达和表征了两种几丁质脱乙酰酶,Cda1 和 Cda2。Cda1 优先脱乙酰化(GlcNAc)2 的非还原端残基、(GlcNAc)3 的内部或非还原端残基以及内部残基脱乙酰化后的(GlcNAc)6 的非还原残基。相比之下,Cda2 优先脱乙酰化(GlcNAc)2 的还原端残基、(GlcNAc)3 的内部或还原端残基以及内部残基脱乙酰化后的(GlcNAc)6 的还原残基。此外,Cda1 优先选择具有更高乙酰化程度的壳六糖进行脱乙酰化,而 Cda2 对具有不同乙酰化程度的壳六糖表现出较弱的偏好。预测的 Cda1 结构在活性位点 +1 附近的表面上显示出比 -1 附近的表面上更多的疏水性芳香族氨基酸,而预测的 Cda2 结构在 -1 附近的表面上显示出比 +1 附近的表面上更多的疏水性芳香族氨基酸,这可能是 Cda1 和 Cda2 之间独特催化特征的分子基础。值得注意的是,Cda1 在非伸长的基部茎区具有高转录水平,而 Cda2 在伸长的顶端茎区具有高转录水平,前者的转录水平约为后者的五倍。相应地,GlcN/GlcNAc 的摩尔比从顶端茎区细胞壁中的 0.15 增加到基部茎区细胞壁中的 0.22。Cda1 和 Cda2 的不同作用模式可能与其在不同茎区的功能有关。

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