[1] |
Asano, Y., Dadashipour, M., Yamazaki, M. et al. Protein Eng. Des. Sel., 24 (2011),pp. 607-616
|
[2] |
Austin, C. J. Chromatogr. B, 786 (2003),pp. 93-107
|
[3] |
Béhar, G., Solé, V., Defontaine, A. et al. Protein Eng. Des. Sel., 24 (2011),pp. 283-290
|
[4] |
Chen, D., Liu, J., Liu, J. et al. Biosci. Biotech. Bioch., 74 (2010),pp. 1458-1461
|
[5] |
Chen, X., Liu, J., Yang, P. et al. Biochemistry Mosc., 75 (2010),pp. 110-114
|
[6] |
Dixon, D.P., Cole, D.J., Edwards, R. Arch. Biochem. Biophys., 15 (2000),pp. 407-412
|
[7] |
Fernández-Cañón, J.M., Peñalva, M.A. Characterization of a fungal maleylacetoacetate isomerase gene and identification of its human homologue J. Biol. Chem., 273 (1998),pp. 329-337
|
[8] |
Frova, C. The plant glutathione transferase gene family: genomic structure, functions, expression and evolution Physiol. Plant., 119 (2003),pp. 469-479
|
[9] |
Jiang, S., Li, C., Zhang, W. et al. Biochem. J., 402 (2007),pp. 429-437
|
[10] |
Mogk, A., Mayer, M.P., Deuerling, E. Mechanisms of protein folding: molecular chaperones and their application in biotechnology ChemBioChem, 3 (2002),pp. 807-814
|
[11] |
Nygaard, F.B., Harlow, K.W. Protein Expres. Purif., 21 (2001),pp. 500-509
|
[12] |
Tao, S., Chen, X., Liu, J. et al. J. Genet. Genomics, 35 (2008),pp. 507-512
|
[13] |
Thom, R., Dixon, D.P., Edwards, R. et al. J. Mol. Biol., 308 (2001),pp. 949-962
|
[14] |
Turner, N.J. Directed evolution drives the next generation of biocatalysts Nat. Chem. Biol., 5 (2009),pp. 567-573
|
[15] |
Waldo, G.S. Genetic screens and directed evolution for protein solubility Curr. Opin. Chem. Biol., 7 (2003),pp. 33-38
|
[16] |
Yang, J.K., Park, M.S., Waldo, G.S. et al. Proc. Natl. Acad. Sci. USA, 100 (2003),pp. 455-460
|
[17] |
Zhang, Y.B., Howitt, J., McCorkle, S. et al. Protein aggregation during overexpression limited by peptide extensions with large net negative charge Protein Expres. Purif., 36 (2004),pp. 207-216
|