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首页> 外文期刊>Acta crystallographica. Section F, Structural biology communications >A crystallographic study of human NONO (p54(nrb)): overcoming pathological problems with purification, data collection and noncrystallographic symmetry
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A crystallographic study of human NONO (p54(nrb)): overcoming pathological problems with purification, data collection and noncrystallographic symmetry

机译:人类乳蛋白的晶体研究(P54(NRB)):克服净化,数据收集和非晶形对称的病理问题

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摘要

Non-POU domain-containing octamer-binding protein (NONO, a.k.a. p54(nrb)) is a central player in nuclear gene regulation with rapidly emerging medical significance. NONO is a member of the highly conserved Drosophila behaviour/human splicing (DBHS) protein family, a dynamic family of obligatory dimeric nuclear regulatory mediators. However, work with the NONO homodimer has been limited by rapid irreversible sample aggregation. Here, it is reported that l-proline stabilizes purified NONO homodimers, enabling good-quality solution small-angle X-ray structure determination and crystallization. NONO crystallized in the apparent space group P2(1) with a unique axis (b) of 408.9 angstrom and with evidence of twinning, as indicated by the cumulative intensity distribution L statistic, suggesting the possibility of space group P1. Structure solution by molecular replacement shows a superhelical arrangement of six NONO homodimers (or 12 in P1) oriented parallel to the long axis, resulting in extensive noncrystallographic symmetry. Further analysis revealed that the crystal was not twinned, but the collected data suffered from highly overlapping reflections that obscured the L-test. Optimized data collection on a new crystal using higher energy X-rays, a smaller beam width and an increased sample-to-detector distance produced non-overlapping reflections to 2.6 angstrom resolution. The steps taken to analyse and overcome this series of practical difficulties and to produce a biologically informative structure are discussed.
机译:含有非POU结构域的八大肽结合蛋白(NONO,A.K.A.P54(NRB))是核基因调控中的中央球员,具有迅速的医学意义。 Nono是高度保守的果蝇行为/人类剪接(DBHS)蛋白家族的成员,一种动态的强制性二聚体核监管介质。然而,与非同源二聚体的合作受到快速不可逆样品聚集的限制。这里,据报道,L-脯氨酸稳定纯化的非偶联体,使得能够良好的质量溶液小角X射线结构的测定和结晶。在表观空间组p2(1)中结晶,具有408.9埃的独特轴(b),并且具有孪生的证据,如累积强度分布L统计数据所示,表明空间组P1的可能性。通过分子替换的结构溶液显示了与长轴平行定向的六个非同型二聚体(或12英寸)的超静脉布置,导致广泛的非晶形对称。进一步的分析表明,晶体未孪生,但收集的数据遭受高度重叠的反射,掩盖了L-Test。使用较高的能量X射线,较小的光束宽度和增加的样品到检测器距离的优化数据收集产生了不重叠的反射到2.6埃分辨率。讨论了分析和克服这一系列实际困难和产生生物信息化结构的步骤。

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