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枯草芽孢杆菌 GH11 木聚糖酶 A 中控制活性位点进入的表面环构象分析。

Conformation analysis of a surface loop that controls active site access in the GH11 xylanase A from Bacillus subtilis.

机构信息

Departamento de Química, Faculdade de Filosofia Ciências e Letras de Ribeirão Preto - Universidade de São Paulo, Avenida dos Bandeirantes, 3900 - 14040-90 Ribeirão Preto, SP, Brazil.

出版信息

J Mol Model. 2012 Apr;18(4):1473-9. doi: 10.1007/s00894-011-1172-7. Epub 2011 Jul 23.

DOI:10.1007/s00894-011-1172-7
PMID:21785938
Abstract

Xylanases (EC 3.2.1.8 endo-1,4-glycosyl hydrolase) catalyze the hydrolysis of xylan, an abundant hemicellulose of plant cell walls. Access to the catalytic site of GH11 xylanases is regulated by movement of a short β-hairpin, the so-called thumb region, which can adopt open or closed conformations. A crystallographic study has shown that the D11F/R122D mutant of the GH11 xylanase A from Bacillus subtilis (BsXA) displays a stable "open" conformation, and here we report a molecular dynamics simulation study comparing this mutant with the native enzyme over a range of temperatures. The mutant open conformation was stable at 300 and 328 K, however it showed a transition to the closed state at 338 K. Analysis of dihedral angles identified thumb region residues Y113 and T123 as key hinge points which determine the open-closed transition at 338 K. Although the D11F/R122D mutations result in a reduction in local inter-intramolecular hydrogen bonding, the global energies of the open and closed conformations in the native enzyme are equivalent, suggesting that the two conformations are equally accessible. These results indicate that the thumb region shows a broader degree of energetically permissible conformations which regulate the access to the active site region. The R122D mutation contributes to the stability of the open conformation, but is not essential for thumb dynamics, i.e., the wild type enzyme can also adapt to the open conformation.

摘要

木聚糖酶(EC 3.2.1.8 内切-1,4-糖苷水解酶)催化木聚糖的水解,木聚糖是植物细胞壁中丰富的半纤维素。GH11 木聚糖酶的催化位点的可及性受短 β 发夹(所谓的拇指区域)运动的调节,该区域可以采用开放或封闭构象。晶体学研究表明,枯草芽孢杆菌(BsXA)GH11 木聚糖酶 A 的 D11F/R122D 突变体显示出稳定的“开放”构象,在此我们报告了一项比较该突变体与天然酶在一系列温度下的分子动力学模拟研究。突变体的开放构象在 300 和 328 K 时稳定,但在 338 K 时显示出向封闭状态的转变。二面角分析确定了拇指区域残基 Y113 和 T123 为关键铰链点,它们决定了 338 K 时的开-闭转变。尽管 D11F/R122D 突变导致局部分子内氢键减少,但天然酶中开放和封闭构象的整体能量是等效的,这表明两种构象都同样可及。这些结果表明,拇指区域显示出更广泛的能量允许构象,从而调节对活性位点区域的可及性。R122D 突变有助于开放构象的稳定性,但对拇指动力学不是必需的,即野生型酶也可以适应开放构象。

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