Martínez-Alonso Mónica, García-Fruitós Elena, Villaverde Antonio
Department of Genetics and Microbiology, Institute for Biotechnology and Biomedicine, Autonomous University of Barcelona, Bellaterra, Barcelona, Spain.
Biotechnol Bioeng. 2008 Dec 15;101(6):1353-8. doi: 10.1002/bit.21996.
Many enzymes or fluorescent proteins produced in Escherichia coli are enzymatically active or fluorescent respectively when deposited as inclusion bodies. The occurrence of insoluble but functional protein species with native-like secondary structure indicates that solubility and conformational quality of recombinant proteins are not coincident parameters, and suggests that both properties can be engineered independently. We have here proven this principle by producing elevated yields of a highly fluorescent but insoluble green fluorescent protein (GFP) in a DnaK- background, and further enhancing its solubility through adjusting the growth temperature and GFP gene expression rate. The success of such a two-step approach confirms the independent control of solubility and conformational quality, advocates for new routes towards high quality protein production and intriguingly, proves that high protein yields dramatically compromise the conformational quality of soluble versions.
许多在大肠杆菌中产生的酶或荧光蛋白,当以包涵体形式沉积时,分别具有酶活性或荧光性。具有天然二级结构的不溶性但有功能的蛋白质种类的出现表明,重组蛋白的溶解性和构象质量不是一致的参数,并表明这两种特性可以独立设计。我们在此通过在DnaK - 背景中高产一种高度荧光但不溶性的绿色荧光蛋白(GFP),并通过调节生长温度和GFP基因表达率进一步提高其溶解性,证明了这一原理。这种两步法的成功证实了对溶解性和构象质量的独立控制,提倡了高质量蛋白质生产的新途径,并且有趣的是,证明了高蛋白质产量会极大地损害可溶性形式的构象质量。