首页> 外文期刊>Journal of Molecular Biology >CRYSTAL STRUCTURE OF CALCIUM-DEPLETED BACILLUS LICHENIFORMIS ALPHA-AMYLASE AT 2.2 ANGSTROM RESOLUTION
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CRYSTAL STRUCTURE OF CALCIUM-DEPLETED BACILLUS LICHENIFORMIS ALPHA-AMYLASE AT 2.2 ANGSTROM RESOLUTION

机译:2.2杆分辨率下的贫钙芽孢杆菌拟淀粉酶的晶体结构

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摘要

The three-dimensional structure of the calcium-free form of Bacillus licheniformis alpha-amylase (BLA) has been determined by multiple isomorphous replacement in a crystal of space group P4(3)2(1)2 (a = b = 119.6 Angstrom, c = 85.4 Angstrom). The structure was refined using restrained crystallographic refinement to an R-factor of 0.177 for 28,147 independent reflections with intensities F-Obs > 0 at 2.2 Angstrom resolution, with root mean square deviations of 0.008 Angstrom and 1.4 degrees from ideal bond lengths and bond angles, respectively. The final model contains 469 residue, 237 water molecules, and one chloride ion. The segment between Trp182 and Asn192 could not be located in the electron density, nor could the N and C termini. Cleavage of the calcium-free form of BLA was observed after Glu189, due to a Glu-C endopeptidase present in trace amounts in the preparation. BLA did not crystallize without this cleavage under the conditions applied. BLA exhibits the characteristic overall topological fold observed for other alpha-amylases and related amylolytic enzymes: a central domain A containing an alpha/beta-barrel with a large protrusion between beta-strand 3 and alpha-helix 3 (domain B) and a C-terminal greek key motif (domain C). Unlike in the other enzymes, domain B possesses a beta-sheet made up of six loosely connected, twisted beta-strands forming a kind of a barrel with a large hole in the interior. Topological comparisons to TAKA-amylase, pig pancreatic a-amylase and cyclodextrin glycosyltransferase reveal a very high structural equivalence for large portions of the proteins and an exceptionally pronounced structural similarity for calcium binding, chloride binding and the active site. None of the theories proposed to explain the enhanced thermostability of BLA showed a satisfactory correlation with the three-dimensional structure. Instead, sequence comparisons to the less thermostable bacterial alpha-amylase from Bacillus amyloliquefaciens (BAA) indicate that some ionic interactions present in BLA, but which cannot be formed in BAA, might be responsible for the enhanced thermostability of BLA. [References: 52]
机译:已通过空间群P4(3)2(1)2的晶体中的多个同构置换确定了地衣芽孢杆菌α-淀粉酶(BLA)的无钙形式的三维结构(a = b = 119.6埃, c = 85.4埃)。使用约束晶体学精炼对结构进行精修,以在2.2埃分辨率下对28,147次独立反射的R因子为0.177,强度F-Obs> 0,与理想键长和键角的均方根偏差为0.008埃和1.4度,分别。最终模型包含469个残基,237个水分子和一个氯离子。 Trp182和Asn192之间的片段不能位于电子密度中,N和C末端也不能。在Glu189之后观察到无钙形式的BLA的裂解,这是由于制剂中存在痕量的Glu-C内肽酶。在所应用的条件下,如果没有这种裂解,BLA不会结晶。 BLA表现出观察到的其他α-淀粉酶和相关淀粉分解酶的特征性整体拓扑折叠:中央结构域A包含一个α/β-桶,在β链3和α-螺旋3之间有一个大的突出部分(结构域B)和一个C -末端希腊键主题(域C)。与其他酶不同,结构域B拥有一个由六个松散连接的扭曲的β链组成的β-折叠,形成了一种在内部带有大孔的桶状结构。与TAKA淀粉酶,猪胰α-淀粉酶和环糊精糖基转移酶的拓扑比较表明,大部分蛋白质的结构等效性非常高,钙结合,氯化物结合和活性位点的结构相似性非常明显。提出用于解释BLA增强的热稳定性的理论均未显示出与三维结构的令人满意的相关性。取而代之的是,与来自解淀粉芽孢杆菌(BAA)的热稳定性较差的细菌α-淀粉酶的序列比较表明,BLA中存在一些离子相互作用,但无法在BAA中形成,这可能是BLA增强的热稳定性的原因。 [参考:52]

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