Pédelacq Jean-Denis, Cabantous Stéphanie, Tran Timothy, Terwilliger Thomas C, Waldo Geoffrey S
Bioscience Division, MS-M888, Los Alamos National Laboratory, Los Alamos, New Mexico 87545, USA.
Nat Biotechnol. 2006 Jan;24(1):79-88. doi: 10.1038/nbt1172. Epub 2005 Dec 20.
Existing variants of green fluorescent protein (GFP) often misfold when expressed as fusions with other proteins. We have generated a robustly folded version of GFP, called 'superfolder' GFP, that folds well even when fused to poorly folded polypeptides. Compared to 'folding reporter' GFP, a folding-enhanced GFP containing the 'cycle-3' mutations and the 'enhanced GFP' mutations F64L and S65T, superfolder GFP shows improved tolerance of circular permutation, greater resistance to chemical denaturants and improved folding kinetics. The fluorescence of Escherichia coli cells expressing each of eighteen proteins from Pyrobaculum aerophilum as fusions with superfolder GFP was proportional to total protein expression. In contrast, fluorescence of folding reporter GFP fusion proteins was strongly correlated with the productive folding yield of the passenger protein. X-ray crystallographic structural analyses helped explain the enhanced folding of superfolder GFP relative to folding reporter GFP.
绿色荧光蛋白(GFP)的现有变体在与其他蛋白质融合表达时常常错误折叠。我们构建了一种折叠稳定的GFP版本,称为“超级折叠”GFP,即使与折叠不良的多肽融合也能良好折叠。与“折叠报告”GFP(一种含有“循环3”突变以及“增强型GFP”突变F64L和S65T的折叠增强型GFP)相比,超级折叠GFP在环形排列耐受性、对化学变性剂的抗性以及折叠动力学方面均有改善。表达嗜热栖热菌的18种蛋白质与超级折叠GFP融合体的大肠杆菌细胞的荧光与总蛋白表达成正比。相比之下,折叠报告GFP融合蛋白的荧光与客体蛋白的有效折叠产率密切相关。X射线晶体学结构分析有助于解释超级折叠GFP相对于折叠报告GFP增强的折叠能力。