首页> 美国卫生研究院文献>Acta Crystallographica Section D: Biological Crystallography >High-molecular-weight polymers for protein crystallization: poly-γ-glutamic acid-based precipitants
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High-molecular-weight polymers for protein crystallization: poly-γ-glutamic acid-based precipitants

机译:用于蛋白质结晶的高分子量聚合物:基于聚γ-谷氨酸的沉淀剂

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摘要

Protein crystallization has been revolutionized by the intro­duction of high-throughput technologies, which have led to a speeding up of the process while simultaneously reducing the amount of protein sample necessary. Nonetheless, the chemistry dimension of protein crystallization has remained relatively undeveloped. Most crystallization screens are based on the same set of precipitants. To address this shortcoming, the development of new protein precipitants based on poly-γ-­glutamic acid (PGA) polymers with different molecular-weight ranges is reported here: PGA-LM (low molecular weight) of ∼400 kDa and PGA-HM (high molecular weight) of >1000 kDa. It is also demonstrated that protein precipitants can be expanded further to polymers with much higher molecular weight than those that are currently in use. Furthermore, the modification of PGA-like polymers by covalent attachments of glucosamine substantially improved their solubility without affecting their crystallization properties. Some preliminary PGA-based screens are presented here.
机译:通过引入高通量技术,蛋白质结晶发生了革命性变化,从而加快了过程,同时减少了所需的蛋白质样品量。尽管如此,蛋白质结晶的化学维度仍相对不发达。大多数结晶筛均基于同一组沉淀剂。为了解决这个缺点,据报道,基于不同分子量范围的聚-γ-谷氨酸(PGA)聚合物的新型蛋白质沉淀剂的开发:PGA-LM(低分子量)约为400 kDa,PGA-HM(高分子量)> 1000 kDa。还证明了蛋白质沉淀剂可以进一步扩展为分子量比目前使用的那些高得多的聚合物。此外,通过葡糖胺的共价附接对PGA-样聚合物进行改性基本上改善了它们的溶解度而不影响它们的结晶性能。这里介绍了一些基于PGA的初步屏幕。

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