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首页> 外文期刊>Acta crystallographica. Section F, Structural biology communications >Perfect merohedral twinning combined with noncrystallographic symmetry potentially causes the failure of molecular replacement with lowhomology search models for the flavin-dependent halogenase HalX from Xanthomonas campestris
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Perfect merohedral twinning combined with noncrystallographic symmetry potentially causes the failure of molecular replacement with lowhomology search models for the flavin-dependent halogenase HalX from Xanthomonas campestris

机译:完美的Merohedral Twinning与非晶体学对称性结合可能导致分子替代的失败,而依赖黄素依赖性的卤素酶Halx的Xanthomonas campestris的低血液学搜索模型

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摘要

Flavin-dependent halogenases can be used as biocatalysts because they regioselectively halogenate their substrates under mild reaction conditions. New halogenases with novel substrate specificities will add to the toolbox of enzymes available to organic chemists. HalX, the product of the xcc-b100_4193 gene, is a putative flavin-dependent halogenase from Xanthomonas campestris. The enzyme was recombinantly expressed and crystallized in order to aid in identifying its hitherto unknown substrate. Native data collected to a resolution of 2.5 ? showed indications of merohedral twinning in a hexagonal lattice. Attempts to solve the phase problem by molecular replacement failed. Here, a detailed analysis of the suspected twinning is presented. It is most likely that the crystals are trigonal (point group 3) and exhibit perfect hemihedral twinning so that they appear to be hexagonal (point group 6). As there are several molecules in the asymmetric unit, noncrystallographic symmetry may complicate twinning analysis and structure determination.
机译:黄素依赖性卤代酶可以用作生物催化剂,因为它们在轻度反应条件下将其卤代硅原定为卤素。具有新型底物特异性的新卤代酶将增加有机化学家可用的酶工具箱。 HALX是XCC-B100_4193基因的乘积,是来自Xanthomonas campestris的推定黄素依赖性卤素。重组表达并结晶酶,以帮助鉴定其迄今未知的底物。收集到2.5分辨率的天然数据?在六角形晶格中显示出伴有双胞胎的迹象。试图通过分子置换来解决相位问题。在这里,提出了对可疑孪生的详细分析。晶体很可能是三角形的(第3点),并且表现出完美的半跨双胞胎,因此它们似乎是六边形(第6点)。由于不对称单元中有几个分子,因此非结晶对称性可能会使双胞胎分析和结构测定变得复杂。

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