Getting ready for PAT: Scale up and inline monitoring of protein refolding of Npro fusion proteins
暂无分享,去创建一个
Alois Jungbauer | Astrid Dürauer | A. Jungbauer | Cornelia Walther | Sabrina Mayer | A. Dürauer | C. Walther | S. Mayer
[1] Teruyuki Nagamune,et al. Systems biology of pathogen‐host interaction: Networks of protein‐protein interaction within pathogens and pathogen‐human interactions in the post‐genomic era , 2012, Biotechnology journal.
[2] F. Siebert,et al. Infrared spectroscopy applied to biochemical and biological problems. , 1995, Methods in enzymology.
[3] M. Fändrich,et al. FTIR reveals structural differences between native β‐sheet proteins and amyloid fibrils , 2004, Protein science : a publication of the Protein Society.
[4] S. Singh,et al. Solubilization and refolding of bacterial inclusion body proteins. , 2005, Journal of bioscience and bioengineering.
[5] Kaushal Kumar,et al. High-throughput process development for biopharmaceutical drug substances. , 2011, Trends in biotechnology.
[6] Clemens Achmüller,et al. Npro Autoprotease Fusion Technology: Development, Characteristics, and Influential Factors , 2010 .
[7] H. Mantsch,et al. New insight into protein secondary structure from resolution-enhanced infrared spectra. , 1988, Biochimica et biophysica acta.
[8] W. Friess,et al. Simultaneous detection and analysis of protein aggregation and protein unfolding by size exclusion chromatography with post column addition of the fluorescent dye BisANS. , 2012, Journal of pharmaceutical sciences.
[9] H. Mantsch,et al. Ribonuclease A revisited: infrared spectroscopic evidence for lack of native-like secondary structures in the thermally denatured state. , 1995, Biochemistry.
[10] J. Pelton,et al. Spectroscopic methods for analysis of protein secondary structure. , 2000, Analytical biochemistry.
[11] Alois Jungbauer,et al. Technical refolding of proteins: Do we have freedom to operate? , 2010, Biotechnology journal.
[12] V. Uversky,et al. Distinct β-sheet structure in protein aggregates determined by ATR-FTIR spectroscopy. , 2013, Biochemistry.
[13] Shigeo Katoh,et al. Continuous refolding of lysozyme with fed-batch addition of denatured protein solution , 2000 .
[14] Anurag S Rathore,et al. Optimization of a refolding step for a therapeutic fusion protein in the quality by design (QbD) paradigm. , 2012, Journal of separation science.
[15] S. Lute,et al. Examination of the Adsorption of Large Biological Molecules to Anion Exchange Surfaces Using Surface Plasmon Resonance , 2009 .
[16] B. Bowler,et al. Urea denaturation of staphylococcal nuclease monitored by Fourier transform infrared spectroscopy. , 1998, Biochemistry.
[17] Eun Kyu Lee,et al. Solid-phase refolding of inclusion body protein in a packed and expanded bed adsorption chromatography , 2005 .
[18] E. Goormaghtigh,et al. ATR-FTIR: a "rejuvenated" tool to investigate amyloid proteins. , 2013, Biochimica et biophysica acta.
[19] D. Naumann,et al. New structural insights into the refolding of ribonuclease T1 as seen by time‐resolved Fourier‐transform infrared spectroscopy , 1999, Proteins.
[20] H. Brandstetter,et al. Crystal Structures of the Viral Protease Npro Imply Distinct Roles for the Catalytic Water in Catalysis , 2013, Structure.
[21] Alois Jungbauer,et al. Prediction of inclusion body solubilization from shaken to stirred reactors , 2014, Biotechnology and bioengineering.
[22] Alois Jungbauer,et al. Current status of technical protein refolding. , 2007, Journal of biotechnology.
[23] Johannes Buchner,et al. Protein Aggregation in vitro and in vivo: A Quantitative Model of the Kinetic Competition between Folding and Aggregation , 1991, Bio/Technology.
[24] Lakshmi Narasu Mangamoori,et al. Optimization of the downstream process for high recovery of rhG-CSF from inclusion bodies expressed in Escherichia coli , 2008 .
[25] S. Krimm. Infrared spectra and chain conformation of proteins. , 1962, Journal of molecular biology.
[26] H. Mantsch,et al. The use and misuse of FTIR spectroscopy in the determination of protein structure. , 1995, Critical reviews in biochemistry and molecular biology.
[27] A. Naeem,et al. Understanding protein folding from globular to amyloid state Aggregation: Darker side of protein , 2013 .
[28] J. Bandekar,et al. Vibrational spectroscopy and conformation of peptides, polypeptides, and proteins. , 1986, Advances in protein chemistry.
[29] Martina Micheletti,et al. A generic hierarchical screening method for the analysis of microscale refolds using an automated robotic platform , 2012, Biotechnology progress.
[30] Varsha Joshi,et al. Refolding of biotech therapeutic proteins expressed in bacteria: review , 2013 .
[31] J. Grdadolnik,et al. Bovine serum albumin observed by infrared spectrometry. II. Hydration mechanisms and interaction configurations of embedded H2O molecules , 2001 .
[32] B. Bowler,et al. Destabilizing effects of replacing a surface lysine of cytochrome c with aromatic amino acids: implications for the denatured state. , 1993, Biochemistry.
[33] H. Susi,et al. Resolution-enhanced Fourier transform infrared spectroscopy of enzymes. , 1986, Methods in enzymology.
[34] W. Caughey,et al. Protein secondary structures in water from second-derivative amide I infrared spectra. , 1990, Biochemistry.
[35] K. Bayer,et al. Refolding of Npro fusion proteins , 2009, Biotechnology and bioengineering.
[36] R. Vincentelli,et al. Automated expression and solubility screening of His-tagged proteins in 96-well format. , 2005, Analytical biochemistry.
[37] A. Fink,et al. Fourier transform infrared spectroscopy in analysis of protein deposits. , 1999, Methods in enzymology.
[38] T. Arakawa,et al. Effect of additives on protein aggregation. , 2009, Current pharmaceutical biotechnology.
[39] Zhou Yu,et al. Utilizing dynamic light scattering as a process analytical technology for protein folding and aggregation monitoring in vaccine manufacturing. , 2013, Journal of pharmaceutical sciences.
[40] Gerald Striedner,et al. Npro fusion technology to produce proteins with authentic N termini in E. coli , 2007, Nature Methods.