Ganesan Ashok, Siekierska Aleksandra, Beerten Jacinte, Brams Marijke, Van Durme Joost, De Baets Greet, Van der Kant Rob, Gallardo Rodrigo, Ramakers Meine, Langenberg Tobias, Wilkinson Hannah, De Smet Frederik, Ulens Chris, Rousseau Frederic, Schymkowitz Joost
VIB Switch Laboratory, Flanders Institute for Biotechnology (VIB), 3000 Leuven, Belgium.
KU Leuven, Switch Laboratory, Department of Cellular and Molecular Medicine, Herestraat 49, PB 802, 3000 Leuven, Belgium.
Nat Commun. 2016 Feb 24;7:10816. doi: 10.1038/ncomms10816.
Natural selection shapes protein solubility to physiological requirements and recombinant applications that require higher protein concentrations are often problematic. This raises the question whether the solubility of natural protein sequences can be improved. We here show an anti-correlation between the number of aggregation prone regions (APRs) in a protein sequence and its solubility, suggesting that mutational suppression of APRs provides a simple strategy to increase protein solubility. We show that mutations at specific positions within a protein structure can act as APR suppressors without affecting protein stability. These hot spots for protein solubility are both structure and sequence dependent but can be computationally predicted. We demonstrate this by reducing the aggregation of human α-galactosidase and protective antigen of Bacillus anthracis through mutation. Our results indicate that many proteins possess hot spots allowing to adapt protein solubility independently of structure and function.
自然选择使蛋白质的溶解度符合生理需求,而在重组应用中,需要更高的蛋白质浓度往往会带来问题。这就引发了一个问题,即天然蛋白质序列的溶解度是否可以提高。我们在此表明,蛋白质序列中易于聚集区域(APR)的数量与其溶解度呈反相关,这表明对APR进行突变抑制提供了一种提高蛋白质溶解度的简单策略。我们表明,蛋白质结构内特定位置的突变可以作为APR抑制剂,而不影响蛋白质稳定性。这些蛋白质溶解度的热点既取决于结构也取决于序列,但可以通过计算预测。我们通过突变减少人α-半乳糖苷酶和炭疽芽孢杆菌保护性抗原的聚集来证明这一点。我们的结果表明,许多蛋白质具有热点,能够独立于结构和功能来调节蛋白质溶解度。