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首页> 外文期刊>Acta crystallographica. Section F, Structural biology communications >A novel microseeding method for the crystallization of membrane proteins in lipidic cubic phase
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A novel microseeding method for the crystallization of membrane proteins in lipidic cubic phase

机译:脂质立方相中膜蛋白结晶的一种新型微咯咯方法

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摘要

Random microseed matrix screening (rMMS), in which seed crystals are added to random crystallization screens, is an important breakthrough in soluble protein crystallization that increases the number of crystallization hits that are available for optimization. This greatly increases the number of soluble protein structures generated every year by typical structural biology laboratories. Inspired by this success, rMMS has been adapted to the crystallization of membrane proteins, making LCP seed stock by scaling up LCP crystallization conditions without changing the physical and chemical parameters that are critical for crystallization. Seed crystals are grown directly in LCP and, as with conventional rMMS, a seeding experiment is combined with an additive experiment. The new method was used with the bacterial integral membrane protein OmpF, and it was found that it increased the number of crystallization hits by almost an order of magnitude: without microseeding one new hit was found, whereas with LCP-rMMS eight new hits were found. It is anticipated that this new method will lead to better diffracting crystals of membrane proteins. A method of generating seed gradients, which allows the LCP seed stock to be diluted and the number of crystals in each LCP bolus to be reduced, if required for optimization, is also demonstrated.
机译:随机微瘤基质筛选(RMMS),其中将种子晶体加入到随机结晶筛选中,是可溶性蛋白质结晶中的重要突破,其增加可用于优化的结晶次数的次数。这大大增加了典型结构生物学实验室每年产生的可溶性蛋白质结构的数量。通过这种成功的启发,RMMS已经适应膜蛋白的结晶,通过缩放LCP结晶条件,使LCP种子储备在不改变对结晶至关重要的关键的物理和化学参数。种子晶体直接在LCP中生长,与常规RMM一样,播种实验与添加剂实验相结合。新方法与细菌整体膜蛋白OMPF一起使用,发现它增加了几乎左右的结晶点击的数量:没有微咯咯地发现一个新的击中,而患有LCP-RMMS八个新的命中。预计这种新方法将导致膜蛋白的更好衍生晶体。还证明了一种产生种子梯度的种子梯度的方法,允许稀释LCP种子库存,并且每种LCP推注中的晶体的数量也在说明。

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