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首页> 外文期刊>Acta crystallographica. Section F, Structural biology communications >In meso in situ In meso in situ serial X-ray crystallography of soluble and membrane proteins at cryogenic temperatures
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In meso in situ In meso in situ serial X-ray crystallography of soluble and membrane proteins at cryogenic temperatures

机译:在MESO的MESO在MESO的原位串行X射线晶体中的溶于溶解和膜蛋白在低温温度下

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Here, a method for presenting crystals of soluble and membrane proteins growing in the lipid cubic or sponge phase forin situ in situ diffraction data collection at cryogenic temperatures is introduced. The method dispenses with the need for the technically demanding and inefficient crystal-harvesting step that is an integral part of the lipid cubic phase orin meso in meso method of growing crystals. Crystals are dispersed in a bolus of mesophase sandwiched between thin plastic windows. The bolus contains tens to hundreds of crystals, visible with an in-line microscope at macromolecular crystallography synchrotron beamlines and suitably disposed for conventional or serial crystallographic data collection. Wells containing the crystal-laden boluses are removed individually from hermetically sealed glass plates in which crystallization occurs, affixed to pins on goniometer bases and excess precipitant is removed from around the mesophase. The wells are snap-cooled in liquid nitrogen, stored and shipped in Dewars, and manually or robotically mounted on a goniometer in a cryostream for diffraction data collection at 100K, as is performed routinely with standard, loop-harvested crystals. The method is a variant on the recently introducedin meso in situ in meso in situ serial crystallography (IMISX) method that enables crystallographic measurements at cryogenic temperatures where crystal lifetimes are enormously enhanced whilst reducing protein consumption dramatically. The new approach has been used to generate high-resolution crystal structures of a G-protein-coupled receptor, -helical and -barrel transporters and an enzyme as model integral membrane proteins. Insulin and lysozyme were used as test soluble proteins. The quality of the data that can be generated by this method was attested to by performing sulfur and bromine SAD phasing with two of the test proteins.
机译:这里,引入了在低温温度下呈现在脂质立方体或海绵相位致原位的脂质立方体或海绵相位致原位的溶解和膜蛋白晶体的晶体的方法。该方法屈服于需要技术上要求且效率低下的晶体收获步骤,其是生长晶体的MESO方法中的脂质立方相的整体部分。分散在夹在薄塑料窗之间的中间相的推注中。推注含量含有数百至数百个晶体,在大分子晶体学同步验辐射线线上可见,并且适当地设置用于常规或串行晶体数据收集。从密封的玻璃板上单独除去含有晶体载体钢管的孔,其中发生结晶,粘针仪碱基上的销和从中间相谱中除去过量的沉淀剂。孔在液氮中在液氮中捕获,储存和运输在凹槽中,并且在100K时手动或机械地安装在冷冻室中的衍射数据收集的测量仪上,如常规用标准的环收获的晶体进行。该方法是最近引进的Meso原位在MESO的原位串行晶体学(IMISX)方法上是一种变体,其能够在低温温度下进行晶体测量,其中晶体寿命大大降低蛋白质消耗。新方法已被用于产生G蛋白偶联受体, - 雄性和-Barrel转运蛋白和酶作为模型整体膜蛋白的高分辨率晶体结构。使用胰岛素和溶菌酶作为测试可溶性蛋白质。通过使用两种测试蛋白质进行硫和溴哀伤相位,证明了可以通过该方法产生的数据的质量。

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