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DIFFERENT APPROACHES TO CRYSTALLIZATION OF MEMBRANE PROTEINS

机译:膜蛋白结晶的不同方法

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Crystallography is more like an art than science. Crystallizing membrane proteins are a big challenge; membrane proteins are present in the cell membrane and serve as cell support. The most important feature of membrane protein is that it contains both hydrophobic and hydrophilic regions on its surface. They are generally much more difficult to study than soluble proteins. The problem becomes more difficult when trying to obtain crystals to determine the high resolution structures of membrane proteins. We want to utilize this opportunity to briefly examine various approaches for crystallization of membrane proteins. The important factors for determining the success of crystallization experiments for membrane proteins lies in the purification, preparation of membrane samples, the environment in which the crystals are grown and the technique used to grow the crystals. All the X-ray structures of membrane protein are grown from preparations of detergents by different methods developed to crystallize.In this review different techniques for the crystallization of membrane proteins are being described. The cubic phase method also known as in meso method is discussed along with other methods to understand about the crystallization of membrane proteins,its general applicability, salt, detergent and screening effects on crystallization. Low volumes as nano-liter of samples can be used for crystallization. The effects of different detergents on the crystallization of membrane protein, as well as the useof surfactants like polyoxyethylene. Approach based on the detergent complexation to prove the ability of cyclodextrins to remove detergent from ternary mixtures in order to get 2D crystals. Crystallization of membrane proteins using non-ionic surfactants as well as Lipidic sponge phase and with swollen lipidic mesophases is discussed to better understand the crystallization of membrane proteins.
机译:晶体学更像是一门艺术,而不是科学。结晶膜蛋白是一个巨大的挑战。膜蛋白存在于细胞膜中并充当细胞支持物。膜蛋白的最重要特征是其表面上既包含疏水区又包含亲水区。它们通常比可溶性蛋白难于研究。当试图获得晶体以确定膜蛋白的高分辨率结构时,该问题变得更加困难。我们想利用这个机会来简要检查各种膜蛋白结晶方法。决定膜蛋白结晶实验成功的重要因素在于纯化,膜样品制备,晶体生长环境和晶体生长技术。膜蛋白的所有X射线结构都是通过去垢剂的制备过程中开发出来的,这些方法都是通过不同的方法进行结晶的。在本综述中,描述了用于膜蛋白结晶的不同技术。讨论了立方相方法(也称为介观方法)以及其他方法,以了解膜蛋白的结晶,其一般适用性,盐,去污剂以及对结晶的筛选作用。低体积的纳升样品可用于结晶。不同去污剂对膜蛋白结晶的影响,以及使用聚氧乙烯等表面活性剂。一种基于去污剂络合的方法,用于证明环糊精从三元混合物中去除去污剂以获得二维晶体的能力。讨论了使用非离子表面活性剂以及脂质海绵相和溶胀的脂质中间相使膜蛋白结晶的过程,以更好地了解膜蛋白的结晶情况。

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