Center for BioProcess Engineering, Department of Chemical and Biochemical Engineering, Technical University of Denmark, Søltofts Plads, Building 229, 2800 Kgs, Lyngby, Denmark.
Appl Microbiol Biotechnol. 2014 Dec;98(23):9667-79. doi: 10.1007/s00253-014-5825-1. Epub 2014 Jun 5.
A xyloglucan-specific endo-1,4β-glucanase (XcXGHA) from Xanthomonas citri pv. mangiferaeindicae has been cloned, expressed in Escherichia coli, purified and characterised. The XcXGHA enzyme belongs to CAZy family GH74 and has catalytic site residues conserved with other xyloglucanases in this family. At its optimal reaction conditions, pH 7.0 and 40 °C, the enzyme has a k cat/K M value of 2.2 × 10(7) min(-1) M(-1) on a tamarind seed xyloglucan substrate. XcXGHA is relatively stable within a broad pH range (pH 4-9) and up to 50 °C (t 1/2, 50 °C of 74 min). XcXGHA is proven to be xyloglucan-specific, and a glycan microarray study verifies that XcXGHA catalyses cleavage of xyloglucan extracted from both monocot and dicot plant species. The enzyme catalyses hydrolysis of tamarind xyloglucan in a unique way by cleaving XXXG into XX and XG (X is xylosyl-substituted glucose; G is unsubstituted glucose), is able to degrade more complex xyloglucans and notably is able to cleave near more substituted xyloglucan motifs such as L [i.e. α-L-Fucp-(1 → 2)-β-D-Galp-(1 → 2)-α-D-Xylp-(1 → 6)-β-D-Glcp]. LC-MS/MS analysis of product profiles of tamarind xyloglucan which had been catalytically degraded by XcXGHA revealed that XcXGHA has specificity for X in subsite -1. The 3D model suggests that XcXGHA consists of two seven-bladed β-propeller domains with the catalytic center formed by the interface of these two domains, which is conserved in xyloglucanases in the GH74 family. However, the XcXGHA has two amino acids (D264 and R472) that differ from the conserved residues of other GH74 xyloglucanases. These two amino acids were predicted to be located on the opposite side of the active site pocket, facing each other and forming a closing surface above the active site pocket. These two amino acids may contribute to the unique substrate specificity of the XcXGHA enzyme.
从柑桔溃疡病芒果亚种中克隆、在大肠杆菌中表达、纯化并鉴定了一种木葡聚糖特异性内切-1,4β-葡聚糖酶(XcXGHA)。XcXGHA 酶属于 CAZy 家族 GH74,其催化位点残基与该家族中的其他木葡聚糖酶保守。在最适反应条件(pH7.0 和 40°C)下,该酶对罗望子种仁木葡聚糖底物的 kcat/KM 值为 2.2×10(7)min(-1)M(-1)。XcXGHA 在较宽的 pH 范围(pH4-9)和高达 50°C(t1/2,50°C 为 74min)内相对稳定。XcXGHA 被证明是木葡聚糖特异性的,糖基微阵列研究证实 XcXGHA 可催化从单子叶和双子叶植物物种中提取的木葡聚糖的裂解。该酶以独特的方式催化罗望子木葡聚糖的水解,通过将 XXXG 切割成 XX 和 XG(X 是木糖基取代的葡萄糖;G 是未取代的葡萄糖),能够降解更复杂的木葡聚糖,并且能够切割附近更取代的木葡聚糖基序,如 L [即α-L-Fucp-(1→2)-β-D-Galp-(1→2)-α-D-Xylp-(1→6)-β-D-Glcp]。用 XcXGHA 催化降解罗望子木葡聚糖的产物谱的 LC-MS/MS 分析表明,XcXGHA 对 -1 亚位点的 X 具有特异性。3D 模型表明,XcXGHA 由两个七叶β-螺旋桨结构域组成,催化中心由这两个结构域的界面形成,这在 GH74 家族的木葡聚糖酶中是保守的。然而,XcXGHA 有两个氨基酸(D264 和 R472)与其他 GH74 木葡聚糖酶的保守残基不同。这两个氨基酸预测位于活性位点口袋的相反侧,彼此相对,并在活性位点口袋上方形成一个封闭表面。这两个氨基酸可能有助于 XcXGHA 酶独特的底物特异性。