The TAGZyme System September 2004. COOH Target Protein PA DAPase The TAGZyme system (I) Q Q H H H H Q Q H H Q Q M M K K H H Q Q H H Q Q H H Q Q DAPase.

Slides:



Advertisements
Similar presentations
Ameer Effat M. Elfarash Dept. of Genetics Fac. of Agriculture, Assiut Univ. Gene Expression.
Advertisements

Substance Isolated by Affinity Chromatography Ligand Enzyme Substrate, cofactor Antibody Antigen, Virus, Cell Polysaccharide, glycoprotein Lectin Nucleic.
Expression Vector Expression of cloned genes produces large quantities of protein Components of expression vector 1. replication origin 2. polylingker.
Affinity Chromatography
Protein Purification Strategies Course: Methods in protein chemistry Rahman M. Mahfuzur 2012/01/11 SLU.
Protein Purification and Analysis Day 4. Amino Acids, Peptides, and Proteins.
Purification of bioengineered proteins CPSC 265 Week 12.
Industrially Scaleable Process for the Purification and Refolding of Inclusion Body Recombinant Protein BELINDA C. CLARKE 1, GARETH M. FORDE 1, CHARLES.
Bio 98 - Lecture 4 Amino acids, proteins & purification.
2004 PP&CW Optimization of protein expression and solubility Alternative and novel prokaryotic expression systems Eukaryotic expression systems Methods.
Affinity Chromatography Yongting Wang Jan07. What is AC? Affinity chromatography (AC) is a technique enabling purification of a biomolecule with respect.
Metal Chelate Affinity Chromatography Wenbo Dong Yagmur Yagdiran.
Supervisor: Dr. David Wishart
Large-scale expression and automated purification of G-protein-coupled receptors for structure determination Jim F. White 1, Loc B. Trinh 2, Joseph Shiloach.
Protein Purification. Why purify Proteins? Characterize Function Activity Structure Study protein regulation and protein interactions Use in assays Produce.
Molecular Cell Biology Purifying Proteins Cooper.
Cation Exchange Column CHEE450 Leslie Davis. Cation Exchange Following removal of biomass – processes supernatant Separate insulin precursor from glucose,
DNA EXTRACTION FROM STOOL
Nanoscale Biopolymers with Customizable Properties for Heavy Metal Remediation U Loi (Ann) Lao, Giri Prabhukumar, Jan Kostal, Mark Matsumoto, Ashok Mulchandani,
Institute of Biotechnology and Antibiotics (IBA) Presented by Małgorzata Kęsik Assistant Professor at IBA.
Southern Taiwan University Development of High Efficiency Purification Method of Recombinant EGFP Proteins with New Immobilized Metal Ion Affinity Chromatography.
Cat # SL Store at 4~23 0 C DiatoCLEAN™ DNA Purification Kit Quick Protocol Small 300 Preps Large 600 Preps Gaither Drive Gaithersburg,
Cloning and rDNA (II) Dr. Abdulaziz Almalik
Chapter Five Protein Purification and Characterization Techniques
Biochemistry February Lecture Analytical & Preparative Protein Chemistry II.
AC part 1 Aug Affinity Chromatography. AC part 1 Aug What is it used for? Monoclonal and polyclonal antibodies Fusion proteins Enzymes DNA-binding.
Expression of clones genes a.o. Primrose & Twyman, 7th edition, pp Primrose, Twyman & Old, 6th edition, pp
By: Alan Schultz & Jack Bobzien.  Our company has developed a Fab fragment product and needed the purification process verified.  Using E. Coli, propose.
ERT106 BIOCHEMISTRY PROTEIN TECHNOLOGY By Pn Syazni Zainul kamal.
Microbial Biotechnology Philadelphia University
Design and Production of a GFP and Human IL-13 Linked Chimeric Protein in E. coli Using pQE-30 Vector Stephen R. Suknaic Department of Biology, York College.
 Biomolecules are purified using purification techniques that separate according to differences in specific properties.
Enzymology Lecture 5 by Rumeza Hanif. Why isolate enzymes? It is important to study enzymes in a simple system (only with small ions, buffer molecules,
A Study of Starch Metabolizing Proteins Pam Brewer-Michael 1, Tracie Hennen-Bierwagen 2, Myers /James Laboratory 2 1 Marshalltown Community School District,
- based on selective non-covalent interaction between an analyte and specific molecules. - is often used in biochemistry in the purification of proteins.
Molecular Cloning.
Week 6 Review. DNA UV Spectra DNA and RNA Bases.
The Signal Hypothesis and the Targeting of Nascent Polypeptides to the Secretory Pathway Tuesday 9/ Mike Mueckler
Why we use molecular diagnosis for parasites 1. Offer greater sensitivity and specificity over the existing diagnostic tests. 2. Differentiation between.
New Light Path TM Services. slide 2 Light Path TM : streamlined custom material supply for discovery to early development n Leverage Lonza’s proven technology.
Protein Purification Why Purify- Arthur Kornberg Handout Strategy –Starting materials, –Capture, Intermediate Purification, polishing Assays, quantitation.
細胞破碎技術 Cell Rupture 國立宜蘭大學 食品科學系 馮臨惠. Separation Processes Selection of Operations in Separation Processes Chemical, Physical, and Biochemical Concepts.
Tag use in large scale protein purification Tags in protein expression, detection and purification May , 2010.
Host cell protein analysis During the process of protein production and purification, such as recombinant proteins, some host cell proteins (HCPs) may.
Church Web Hosting Services - Churchsquare.com
Page 1 Yeast Expression System — Creative BioMart.
BSB Biomanufacturing CHAPTER 13 GMP – Downstream Processes
Production of Recombinant Proteins
Soybean Lipoxygenase: Which amino acids matter?
Northeast Biomanufacturing Center and Collaborative
Enzyme purification Creative Enzymes has decades of experiences in enzyme expression and purification. We provide a series of services including gene cloning,
Fac. of Agriculture, Assiut Univ.
Page 1 Bacterial Expression Systems (E. coli / Bacillus) — Creative BioMart.
Page 1 Yeast Expression Systems in Creative BioMart — Creative BioMart.
Target protein Additional file 3. SDS-PAGE showing the degree of purification of D1-26PtxtPL1-27 expressed in E. coli. PtxtPL1-27.
Factor xiiia enzyme Human Factor XIII is cleaved with human alpha thrombin. The thrombin is subsequently removed via chromatography. The above protein.
Volume 135, Issue 3, Pages (October 2008)
VWF73, a region from D1596 to R1668 of von Willebrand factor, provides a minimal substrate for ADAMTS-13 by Koichi Kokame, Masanori Matsumoto, Yoshihiro.
Affinity chromatography
Finn Werner, Robert O.J Weinzierl  Molecular Cell 
Volume 116, Issue 2, Pages (January 2004)
Large-scale expression and automated purification of G-protein-coupled receptors for structure determination Jim F. White 1, Loc B. Trinh 2, Joseph Shiloach.
Application of Superparamagnetic Particles in Amylase Purification
Justin Hardcastle and Joseph Tumidajski
Down stream Processing
ประกาศกระทรวงอุตสาหกรรม ฉบับที่ 5292 (พ.ศ. 2562)
Design and purification of CS1-NKG2D biAb by metal-affinity chromatography. Design and purification of CS1-NKG2D biAb by metal-affinity chromatography.
BY HALAVATH RAMESH 16-MCH-001 DEPARTMENT OF CHEMISTRY LOYOLA COLLEGE –CHENNAI UNIVERSITY OF MADRAS Protein Purification.
Presentation transcript:

The TAGZyme System September 2004

COOH Target Protein PA DAPase The TAGZyme system (I) Q Q H H H H Q Q H H Q Q M M K K H H Q Q H H Q Q H H Q Q DAPase COOH Target Protein IK COOH Target Protein LR Natural DAPase stop Natural DAPase stop

Q Q Q Q pGAPase QCyclase DAPase The TAGZyme system (II) Q Q H H H H Q Q H H Q Q M M K K H H Q Q H H Q Q H H Q Q DAPase COOHNH 2 Target Protein QCyclase

The TAGZyme downstream process Skip DSP IMAC purification (immobilized metal affinity chromatography) Cleavage with His-tagged DAPase Removal of enzymes and contaminants by subtractive IMAC Crude His-tag protein Purified His-tag protein COOH NH 2 Target Protein Purified

Production of human growth hormone (hGH) Skip DSP  Histag-hGH  hGH Fast buffer-exchange TAGZyme cleavage/refolding Subtractive IMAC Crude urea/GuCl Solubilized Histag-hGH Purified Histag-hGH IMAC purification Fast buffer-exchange COOH NH 2 hGH Lane 2 Lane 3: 5 min Lane 5: 20 min Lane 4: 10 min Lane 6: 30 min Lane 7 Purification scales Up to 200 mg Typical recoveries IMAC purification: % Cleavage/subtractive IMAC: %

The TAGZyme system Used for both intracellular and secreted proteins Successfully tested in different production hosts (E. coli, insect cells, etc) Scaled up to 2 gram scale Successfully tested on more than 200 different proteins The TAGZymes can be produced in bulk quantities For more than 10 years, DPPI has been used for production of a pharmaceutical protein (~10 kg/year) Currently being tested at other pharmaceutical companies Q Q Q Q H H H H Q Q H H Q Q M M K K H H Q Q H H Q Q H H Q Q Q Q COOHNH 2 Target Protein

The TAGZyme downstream process: strengths IMAC matrices have high protein-binding capacity and selectivity Robust and simple chromatographic procedures with high recovery (> 90 %) IMAC matrices are chemically stable to prolonged CIP procedures Tag sequences can be optimized for efficient expression levels Complete and specific removal of N-terminal His-tags, -i.e. the correct N-terminus is obtained without non-specific internal cleavage Simultaneous removal of both processing enzymes and residual contaminants by subtractive IMAC Process is scalable from R&D to production

Contact information: José Arnau, PhD Unizyme Laboratories A/S Dr. Neergaardsvej 17 DK-2970 Hørsholm DENMARK Web: Tel: Mobile: Fax: