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A Technique for High-Throughput Protein Crystallization in Ionically Cross-Linked Polysaccharide Gel Beads for X-Ray Diffraction Experiments

机译:X射线衍射实验中离子交联多糖凝胶珠中高通量蛋白质结晶的技术。

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摘要

A simple technique for high-throughput protein crystallization in ionically cross-linked polysaccharide gel beads has been developed for contactless handling of crystals in X-ray crystallography. The method is designed to reduce mechanical damage to crystals caused by physical contact between crystal and mount tool and by osmotic shock during various manipulations including cryoprotection, heavy-atom derivatization, ligand soaking, and diffraction experiments. For this study, protein crystallization in alginate and κ-carrageenan gel beads was performed using six test proteins, demonstrating that proteins could be successfully crystallized in gel beads. Two complete diffraction data sets from lysozyme and ID70067 protein crystals in gel beads were collected at 100 K without removing the crystals; the results showed that the crystals had low mosaicities. In addition, crystallization of glucose isomerase was carried out in alginate gel beads in the presence of synthetic zeolite molecular sieves (MS), a hetero-epitaxic nucleant; the results demonstrated that MS can reduce excess nucleation of this protein in beads. To demonstrate heavy-atom derivatization, lysozyme crystals were successfully derivatized with K2PtBr6 within alginate gel beads. These results suggest that gel beads prevent serious damage to protein crystals during such experiments.
机译:已经开发出一种用于在离子交联多糖凝胶珠中进行高通量蛋白质结晶的简单技术,用于X射线晶体学中晶体的非接触式处理。该方法旨在减少由于晶体与安装工具之间的物理接触以及各种操作(包括低温保护,重原子衍生化,配体浸泡和衍射实验)期间的渗透压所引起的对晶体的机械损坏。对于本研究,使用六个测试蛋白在藻酸盐和κ角叉菜胶凝胶珠中进行了蛋白质结晶,证明了蛋白质可以在凝胶珠中成功结晶。凝胶珠中溶菌酶和ID70067蛋白质晶体的两个完整衍射数据集在100 K下收集,未去除晶体。结果表明该晶体具有低镶嵌性。另外,葡萄糖异构酶的结晶是在藻酸盐凝胶珠粒中,在合成沸石分子筛(MS)的存在下进行的。结果表明,MS可以减少珠粒中这种蛋白质的过量成核。为了证明重原子衍生化,溶菌酶晶体已成功地在藻酸盐凝胶珠粒中用K2PtBr6衍生化。这些结果表明,在这种实验中,凝胶珠可防止对蛋白质晶体的严重破坏。

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    Michihiro Sugahara;

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  • 年(卷),期 -1(9),4
  • 年度 -1
  • 页码 e95017
  • 总页数 8
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