首页> 美国卫生研究院文献>Acta Crystallographica Section F: Structural Biology and Crystallization Communications >Preliminary crystallographic analysis of Xyn52B2 a GH52 β-d-xylosidase from Geobacillus stearothermophilus T6
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Preliminary crystallographic analysis of Xyn52B2 a GH52 β-d-xylosidase from Geobacillus stearothermophilus T6

机译:嗜热脂肪地芽孢杆菌T6的GH52β-d-木糖苷酶Xyn52B2的初步晶体学分析

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摘要

Geobacillus stearothermophilus T6 is a thermophilic bacterium that possesses an extensive hemicellulolytic system, including over 40 specific genes that are dedicated to this purpose. For the utilization of xylan, the bacterium uses an extracellular xylanase which degrades xylan to decorated xylo-oligomers that are imported into the cell. These oligomers are hydrolyzed by side-chain-cleaving enzymes such as arabinofuranosidases, acetylesterases and a glucuronidase, and finally by an intracellular xylanase and a number of β-xylosidases. One of these β-xylosidases is Xyn52B2, a GH52 enzyme that has already proved to be useful for various glycosynthesis applications. In addition to its demonstrated glycosynthase properties, interest in the structural aspects of Xyn52B2 stems from its special glycoside hydrolase family, GH52, the structures and mechanisms of which are only starting to be resolved. Here, the cloning, overexpression, purification and crystallization of Xyn52B2 are reported. The most suitable crystal form that has been obtained belonged to the orthorhombic P212121 space group, with average unit-cell parameters a = 97.7, b = 119.1, c = 242.3 Å. Several X-ray diffraction data sets have been collected from flash-cooled crystals of this form, including the wild-type enzyme (3.70 Å resolution), the E335G catalytic mutant (2.95 Å resolution), a potential mercury derivative (2.15 Å resolution) and a selenomethionine derivative (3.90 Å resolution). These data are currently being used for detailed three-dimensional structure determination of the Xyn52B2 protein.
机译:嗜热脂肪热土芽孢杆菌T6是嗜热细菌,具有广泛的半纤维素分解系统,包括40多个专用于此目的的特定基因。为了利用木聚糖,该细菌使用细胞外木聚糖酶,该酶将木聚糖降解为被装饰的木糖寡聚体,然后将其引入细胞中。这些寡聚体被诸如阿拉伯呋喃糖苷酶,乙酰酯酶和葡糖醛酸糖苷酶的侧链切割酶水解,最后被胞内木聚糖酶和许多β-木糖苷酶水解。这些β-木糖苷酶之一是Xyn52B2,这是一种GH52酶,已被证明可用于各种糖合成应用。除了其已证明的糖合酶特性外,对Xyn52B2的结构方面的兴趣还来自其特殊的糖苷水解酶家族GH52,其结构和机制才刚刚开始得到解决。在此,报道了Xyn52B2的克隆,过表达,纯化和结晶。已获得的最合适的晶体形式属于正交P212121空间群,平均晶胞参数a = 97.7,b = 119.1,c = 242.3Å。从这种形式的快速冷却晶体中收集了一些X射线衍射数据集,包括野生型酶(3.70Å分辨率),E335G催化突变体(2.95Å分辨率),潜在的汞衍生物(2.15Å分辨率)。和硒代蛋氨酸衍生物(分辨率3.90Å)。这些数据目前正用于Xyn52B2蛋白的详细三维结构测定。

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