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来自坎皮纳斯芽孢杆菌G1-1的木聚糖酶XynG1-1的木聚糖结合结构域和连接序列特性研究

Studies on properties of the xylan‑binding domain and linker sequence of xylanase XynG1‑1 from Paenibacillus campinasensis G1‑1.

作者信息

Liu Yihan, Huang Lin, Li Weiguo, Guo Wei, Zheng Hongchen, Wang Jianling, Lu Fuping

出版信息

J Ind Microbiol Biotechnol. 2015 Dec;42(12):1591-9. doi: 10.1007/s10295-015-1698-2.

Abstract

Xylanase XynG1-1 from Paenibacillus campinasensis G1-1 consists of a catalytic domain (CD), a family 6_36 carbohydrate-binding module which is a xylan-binding domain (XBD), and a linker sequence (LS)between them. The structure of XynG1-3 from Bacillus pumilus G1-3 consists only of a CD. To investigate the functions and properties of the XBD and LS of XynG1-1, two truncated forms (XynG1-1CDL, XynG1-1CD) and three fusion derivatives (XynG1-3CDL, XynG1-3CDX and XynG1-3CDLX) were constructed and biochemically characterized. The optimum conditions for the catalytic activity of mutants of XynG1-1 and XynG1-3 were 60 °C and pH 7.0, and 55 °C and pH 8.0, respectively, the same as for the corresponding wild-type enzymes. XynGs with an XBD were stable over a broad temperature (30-80 °C)and pH range (4.0-11.0), respectively, on incubation for 3 h. Kinetic parameters (Km, kcat, kcat/Km) of XynGs were determined with soluble birchwood xylan and insoluble oat spelt xylan as substrates. XynGs with the XBD showed better affinities toward, and more efficient catalysis of hydrolysis of the insoluble substrate. The XBD had positive effects on thermostability and pH stability and a crucial function in the ability of the enzyme to bind and hydrolyze insoluble substrate. The LS had little effect on the overall stability of the xylanase and no relationship with affinities for soluble and insoluble substrates or catalytic efficiency.

摘要

来自坎皮纳斯芽孢杆菌G1-1的木聚糖酶XynG1-1由一个催化结构域(CD)、一个6_36家族碳水化合物结合模块(它是一个木聚糖结合结构域,即XBD)以及它们之间的一个连接序列(LS)组成。来自短小芽孢杆菌G1-3的XynG1-3的结构仅由一个催化结构域组成。为了研究XynG1-1的XBD和LS的功能及特性,构建了两种截短形式(XynG1-1CDL、XynG1-1CD)和三种融合衍生物(XynG1-3CDL、XynG1-3CDX和XynG1-3CDLX)并对其进行了生化特性分析。XynG1-1和XynG1-3突变体催化活性的最佳条件分别为60℃和pH 7.0以及55℃和pH 8.0,与相应的野生型酶相同。具有XBD的XynGs分别在30-80℃的较宽温度范围和4.0-11.0的pH范围内孵育3小时后仍保持稳定。以可溶性桦木木聚糖和不溶性燕麦spel木聚糖为底物测定了XynGs的动力学参数(Km、kcat、kcat/Km)。具有XBD的XynGs对不溶性底物表现出更好的亲和力以及更高效的水解催化作用。XBD对热稳定性和pH稳定性有积极影响,并且在酶结合和水解不溶性底物的能力中起关键作用。LS对木聚糖酶的整体稳定性影响很小,并且与对可溶性和不溶性底物的亲和力或催化效率无关。

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