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来自构巢曲霉的一种重组木葡聚糖特异性内切-β-1,4-葡聚糖酶(GH12)的功能表征与寡聚化

Functional characterization and oligomerization of a recombinant xyloglucan-specific endo-β-1,4-glucanase (GH12) from Aspergillus niveus.

作者信息

Damásio André R L, Ribeiro Liliane F C, Ribeiro Lucas F, Furtado Gilvan P, Segato Fernando, Almeida Fausto B R, Crivellari Augusto C, Buckeridge Marcos S, Souza Tatiana A C B, Murakami Mário T, Ward Richard J, Prade Rolf A, Polizeli Maria L T M

机构信息

Departamento de Bioquímica e Imunologia, Universidade de São Paulo, Ribeirão Preto, Brazil.

出版信息

Biochim Biophys Acta. 2012 Mar;1824(3):461-7. doi: 10.1016/j.bbapap.2011.12.005. Epub 2011 Dec 31.

Abstract

Xyloglucan is a major structural polysaccharide of the primary (growing) cell wall of higher plants. It consists of a cellulosic backbone (beta-1,4-linked glucosyl residues) that is frequently substituted with side chains. This report describes Aspergillus nidulans strain A773 recombinant secretion of a dimeric xyloglucan-specific endo-β-1,4-glucanohydrolase (XegA) cloned from Aspergillus niveus. The ORF of the A. niveus xegA gene is comprised of 714 nucleotides, and encodes a 238 amino acid protein with a calculated molecular weight of 23.5kDa and isoelectric point of 4.38. The optimal pH and temperature were 6.0 and 60°C, respectively. XegA generated a xyloglucan-oligosaccharides (XGOs) pattern similar to that observed for cellulases from family GH12, i.e., demonstrating that its mode of action includes hydrolysis of the glycosidic linkages between glucosyl residues that are not branched with xylose. In contrast to commercial lichenase, mixed linkage beta-glucan (lichenan) was not digested by XegA, indicating that the enzyme did not cleave glucan β-1,3 or β-1,6 bonds. The far-UV CD spectrum of the purified enzyme indicated a protein rich in β-sheet structures as expected for GH12 xyloglucanases. Thermal unfolding studies displayed two transitions with mid-point temperatures of 51.3°C and 81.3°C respectively, and dynamic light scattering studies indicated that the first transition involves a change in oligomeric state from a dimeric to a monomeric form. Since the enzyme is a predominantly a monomer at 60°C, the enzymatic assays demonstrated that XegA is more active in its monomeric state.

摘要

木葡聚糖是高等植物初生(生长)细胞壁的一种主要结构多糖。它由纤维素主链(β-1,4-连接的葡萄糖基残基)组成,该主链经常被侧链取代。本报告描述了构巢曲霉A773菌株对从雪白曲霉克隆的二聚体木葡聚糖特异性内切-β-1,4-葡聚糖水解酶(XegA)的重组分泌。雪白曲霉xegA基因的开放阅读框由714个核苷酸组成,编码一种238个氨基酸的蛋白质,计算分子量为23.5 kDa,等电点为4.38。最佳pH和温度分别为6.0和60°C。XegA产生的木葡聚糖寡糖(XGOs)模式与GH12家族纤维素酶观察到的模式相似,即表明其作用模式包括水解未被木糖分支的葡萄糖基残基之间的糖苷键。与商业地衣酶相比,XegA不消化混合连接的β-葡聚糖(地衣多糖),表明该酶不切割葡聚糖β-1,3或β-1,6键。纯化酶的远紫外圆二色光谱表明该蛋白质富含β-折叠结构,这是GH12木葡聚糖酶所预期的。热变性研究显示分别有两个转变,中点温度分别为51.3°C和81.3°C,动态光散射研究表明第一个转变涉及寡聚状态从二聚体变为单体形式。由于该酶在60°C时主要是单体,酶活性测定表明XegA在其单体状态下更具活性。

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