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An approach to prevent aggregation during the purification and crystallization of wild type acyl coenzyme A: Isopenicillin N acyltransferase from Penicillium chrysogenum

机译:防止野生型酰基辅酶A纯化和结晶过程中聚集的方法:来自产黄青霉的异青霉素N酰基转移酶

摘要

Acyl coenzyme A: isopenicillin N acyltransferase (AT) from Penicillium chrysogenum is an enzyme of interest for the biosynthesis of β-lactam antibiotics. Severe aggregation problems with wild type AT have, however, prevented significant progress in the structure–function analysis of this enzyme for a decade. In this study, we show an approach to solve this aggregation problem by using dynamic light scattering (DLS) analysis to probe the aggregation state of the protein in the presence of various additives. After a one-step purification of recombinant wild type AT with a C-terminal His-tag using Ni2+ affinity chelate chromatography, addition of a combination of 5mM DTT, 250mM NaCl, and 5mM EDTA to the purified AT effectively prevented aggregation. In the presence of these additives, the DLS profile of AT shows a narrow size distribution indicative of a homogeneous protein solution and the absence of aggregation. The purity and mono-dispersity of wild type AT was suffcient for the growth of high quality crystals diffracting to 1.64 Å resolution.
机译:酰基辅酶A:来自产黄青霉的异青霉素N酰基转移酶(AT)是用于生物合成β-内酰胺抗生素的重要酶。然而,野生型AT的严重聚集问题已阻止该酶的结构-功能分析取得重大进展已有十年之久。在这项研究中,我们展示了一种通过使用动态光散射(DLS)分析来解决存在各种添加剂的情况下蛋白质的聚集状态的解决聚集问题的方法。使用Ni2 +亲和螯合色谱一步纯化带有C端His-tag的重组野生型AT后,向纯化的AT中添加5mM DTT,250mM NaCl和5mM EDTA的组合可有效防止聚集。在这些添加剂的存在下,AT的DLS谱显示出窄的尺寸分布,表明蛋白质溶液均质,没有聚集。野生型AT的纯度和单分散性足以满足衍射至1.64Å分辨率的高质量晶体的生长。

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