Title : Efficient production of (2)H, (13)C, (15)N-enriched industrial enzyme Rhizopus chinensis lipase with native disulfide bonds - Zhang_2016_Microb.Cell.Fact_15_123 |
Author(s) : Zhang M , Yu XW , Swapna GV , Xiao R , Zheng H , Sha C , Xu Y , Montelione GT |
Ref : Microb Cell Fact , 15 :123 , 2016 |
Abstract :
BACKGROUND: In order to use most modern methods of NMR spectroscopy to study protein structure and dynamics, isotope-enriched protein samples are essential. Especially for larger proteins (>20 kDa), perdeuterated and Ile (delta1), Leu, and Val methyl-protonated protein samples are required for suppressing nuclear relaxation to provide improved spectral quality, allowing key backbone and side chain resonance assignments needed for protein structure and dynamics studies. Escherichia coli and Pichia pastoris are two of the most popular expression systems for producing isotope-enriched, recombinant protein samples for NMR investigations. The P. pastoris system can be used to produce (13)C, (15)N-enriched and even (2)H,(13)C, (15)N-enriched protein samples, but efficient methods for producing perdeuterated proteins with Ile (delta1), Leu and Val methyl-protonated groups in P. pastoris are still unavailable. Glycosylation heterogeneity also provides challenges to NMR studies. E. coli expression systems are efficient for overexpressing perdeuterated and Ile (delta1), Leu, Val methyl-protonated protein samples, but are generally not successful for producing secreted eukaryotic proteins with native disulfide bonds. |
PubMedSearch : Zhang_2016_Microb.Cell.Fact_15_123 |
PubMedID: 27411547 |
Zhang M, Yu XW, Swapna GV, Xiao R, Zheng H, Sha C, Xu Y, Montelione GT (2016)
Efficient production of (2)H, (13)C, (15)N-enriched industrial enzyme Rhizopus chinensis lipase with native disulfide bonds
Microb Cell Fact
15 :123
Zhang M, Yu XW, Swapna GV, Xiao R, Zheng H, Sha C, Xu Y, Montelione GT (2016)
Microb Cell Fact
15 :123