Green fluorescent protein variants fold differentially in prokaryotic and eukaryotic cells

被引:0
作者
Sacchetti, A
Cappetti, V
Marra, P
Dell'Arciprete, R
El Sewedy, T
Crescenzi, C
Alberti, S
机构
[1] Ist Ric Farmacol Mario Negri, Dept Cell Biol & Oncol, Expt Oncol Lab, Biotech Grp, I-66030 Chieti, Italy
[2] Ist Ric Farmacol Mario Negri, Dept Cell Biol & Oncol, Lab Physiopathol Secret, I-66030 Chieti, Italy
关键词
green fluorescent protein; protein stability; protein folding; gene mutation; molecular chaperones;
D O I
暂无
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Better-folding Green Fluorescent Protein (GFP) mutants selected from bacterial screenings are commonly used in widely different cellular environments. However, it is unclear if the folding efficiency of GFPs is invariant in different cell types. In this work, we have analysed the folding properties of GFP variants in bacteria versus mammalian cells. Remarkably, S65T was found to fold at comparable levels with the wild type GFP in bacteria, but at 10-fold lower levels in mammalian cells. On the other hand, Bex1 folded 3-4 times better than the wtGFP or S65T in E. coli, and 10-20-fold or more than YS-fold better, respectively, in mammalian cells. The Veri mutant demonstrated similar properties to Bex1. No evidence of differential GFP unfolding in vivo or of preferential degradation of unfolded GFP molecules was found. Moreover, no relationship between GFP folding efficiency and expression levels, or protein stability was detected. Trivial Aconfounding factors, like GFP unfolding caused by different pH or fluorescence quenching due to molecular crowding, were also excluded. In summary, our results demonstrate that specific GFP variants follow different folding trajectories in mammalian versus bacterial cells. The specificity of this differential folding supports a role of chaperones in guiding the folding of GFP in vivo. (C) 2001 Wiley-Liss, Inc.
引用
收藏
页码:117 / 128
页数:12
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