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Simple affinity purification of antibodies using in vivo biotinylation of a fusion protein.

We describe a method for affinity purification of antibodies using gene fusions to the antigen. Fusions are made to a protein domain which is recognized in vivo by biotin ligase and biotinylated at a unique position in the fusion protein. When expressed in E. coli, the fusion protein can be captured from a whole cell lysate using an avidin resin to generate an affinity column which is useful for antibody purification. The procedure is simple, rapid and does not require chemical biotinylation or prior purification of the target antigen.

Antibodies↗

Biosensor-based micro-affinity purification for the proteomic analysis of protein complexes.

A biosensor-based micro-affinity purification method to recover protein binding partners and their complexes for down stream proteomics analysis has been developed using the BIAcore 3000 fitted with a prototype Surface Prep Unit (SPU). The recombinant GST-intracellular domain of E-cadherin or the recombinant GST-beta-catenin binding domain of Adenomatous Polyposis Coli (APC) were immobilized onto the SPU and used to affinity purify binding partners from chromatographically enriched SW480 colon cancer cell lysates. A GST- immobilized surface was used as a control. Samples recovered from the SPU were subjected to SDS-PAGE with sensitive Coomassie staining followed by automated in-gel digestion and LC-MS/MS. The results obtained using the SPU were compared with similar experiments performed using Sepharose beads.

Biosensing Techniques↗

Affinity purification of mitotic anaphase-promoting complex/cyclosome on p13Suc1.

A procedure is described for the affinity purification of the mitotic form of anaphase-promoting complex/cyclosome (APC/C) from HeLa cells. It is based on the binding of mitotically phosphorylated APC/C to the phosphate-binding site of p13(suc1), followed by specific elution with a phosphate-containing compound. The procedure is rapid, simple, and yields 50- to 70-fold purification of soluble APC/C, with a approximately 30% recovery of activity.

Anaphase-Promoting Complex-Cyclosome↗

Vectors and gene targeting modules for tandem affinity purification in Schizosaccharomyces pombe.

We describe the construction of tagging cassettes and plasmids for tandem affinity purification (TAP) of proteins in Schizosaccharomyces pombe. The tagging cassettes are designed for either carboxy- or amino-terminal tagging of proteins. The carboxyl terminal tags differ in that they contain either two or four repeats of IgG binding units. For tagging endogenous loci, the cassettes contain the kan MX6 module to allow for selection of G418-resistant cells. The amino-terminal tagging vectors allow for the regulated expression of proteins. Sz. pombe Cdc2p was chosen to test these new affinity tags. Several known binding proteins co-purified with both Cdc2p-CTAP and N-TAP-Cdc2p, indicating the usefulness of these tags for the rapid purification of stable protein complexes from Sz. pombe.

Blotting, Western↗

Affinity purification of the opioid receptor in NG 108-15 cells using an avidin-biotin system with a novel elution method.

Affinity purification of the opioid receptor in NG 108-15 cells was carried out using an affinity resin based on the avidin-biotin interactions, but a new elution method was employed with a radioligand of sub-micromolar concentration. A synthesized biotinyl derivative of leucine-enkephalin has a high affinity for the delta-receptor, but the affinity was lowered 10-fold in the presence of avidin. The new elution method is based on this affinity decrease and resulted in a 100-fold purification over the initial crude materials in the single step. SDS-polyacrylamide gel electrophoresis of the purified receptor revealed three polypeptides of 58, 65 and 71 kDa as possible components of the delta-receptor.

Avidin↗

Identification of molecular target of AMP-activated protein kinase activator by affinity purification and mass spectrometry.

We show an efficient method to identify molecular targets of small molecular compounds by affinity purification and mass spectrometry. Binding proteins were isolated from target cell lysate using affinity columns, which immobilized the active and inactive compounds. All proteins bound to these affinity columns were eluted by digestion using trypsin and then were identified by mass spectrometry. The specific binding proteins to the active compound, a candidate for molecular targets, were determined by subtracting the identified proteins in an inactive compound-immobilized affinity column from that in an active compound-immobilized affinity column. This method was applied to identification of molecular targets of D942, a furancarboxylic acid derivative, which increases glucose uptake in L6 myocytes through AMP-activated protein kinase (AMPK) activation. To elucidate the mechanism of AMPK activation by D942, affinity columns that immobilized D942 and its inactive derivative, D768, were prepared, and the binding proteins were purified from L6 cell lysate. NAD(P)H dehydrogenase [quinone] 1 (complex I), which was shown as one of the specific binding proteins to D942 by subtracting the binding proteins to D768, was partially inhibited by D942, not D768. Because inhibition of complex I activity led to a decrease in the ATP/AMP ratio, and the change in the ATP/AMP ratio triggered AMPK activation, we identified complex I as a potential protein target of AMPK activation by D942. This result shows our approach can provide crucial information about the molecular targets of small molecular compounds, especially target proteins not yet identified.

AMP-Activated Protein Kinase Kinases↗

Affinity purification of human plasma fibronectin on immobilized gelatin.

Several problems are associated with the biospecific affinity purification of plasma fibronectin on gelatin-Sepharose. Large-scale development of this purification procedure requires optimization of adsorption and elution conditions. The adsorption capacity depends on the amount of gelatin coupled to the Sepharose, the residence time, the temperature and the amount of fibronectin loaded on the adsorbent. Elution of adsorbed fibronectin with 3 M urea leads to incomplete recovery. The elution yield was found to vary with both the gelatin concentration and the amount of adsorbed fibronectin. Despite the incomplete elution, the adsorption capacity did not decrease after twelve consecutive isolation procedures. Under optimized conditions, the method described here provides a rapid, single-step and convenient way for the isolation of pure and functional fibronectin, either for analytical or large-scale preparative purposes.

Adsorption↗

Vectors and P64k gene targeting for tandem affinity purification in Neisseria meningitidis.

We present and describe the construction of tagging cassettes and plasmids for tandem affinity purification (TAP) of proteins in Neisseria meningitidis. The tagging cassette is designed for carboxyl-terminal tagging of proteins and it contains only two repeats of IgG-binding units. P64k protein from N. meningitidis was chosen to fuse at these new affinity tags. This protein is well recognized in immunoassays by serum from human convalescent meningococcal disease and it is highly immunogenic in animals. To continue the characterization of this meningococcal antigen, we designed and constructed two vectors for use in TAP purification method. We also carried-out preliminary test to check the correct expression of the protein fused in these vectors.

Affinity Labels↗

Affinity purification of human brain tissue factor utilizing factor VII bound to immobilized anti-factor VII.

An efficient procedure for affinity purification of human tissue factor apoprotein that requires binding of only microgram quantities of human factor VII to anti-factor VII agarose is described. Factor VII was added to a 2% Triton X-100 extract of acetone brain powder in the presence of calcium. The resultant factor VII/tissue factor/calcium complex was bound to anti-factor VII-agarose, and the bound tissue factor was then eluted with EDTA. The eluate was passed through anti-goat IgG-agarose to remove contaminating goat IgG that leaks from the anti-factor VII column. Yield (units of activity) was 27%; specific activity was 2400 U/mg, which corresponds to that reported by others. The purified apoprotein migrated as a single band on sodium dodecyl sulfate-polyacrylamide gel electrophoresis with an apparent molecular weight of 47,000. Immunostaining with a goat anti-tissue factor IgG raised against the purified material yielded a major band of the same apparent molecular weight. Factor VII remains bound to the column and, therefore, for subsequent use preincubation of tissue factor with factor VII and calcium is not required. Thus, the present purification procedure markedly reduces the amount of factor VII needed as affinity ligand to purify tissue factor apoprotein.

Brain Chemistry↗

Affinity purification of cytosolic epoxide hydrolase from human, rhesus monkey, baboon, rabbit, rat and mouse liver.

An affinity purification system based on elution of cytosolic epoxide hydrolase from a methoxycitronellyl thiol ligand with 4-azidochalcone oxide was applied to a variety of samples including liver from human, monkey, baboon, rabbit, rat and mouse as well as mammary gland from mouse. Hepatic tissues yielded a major 58 kDa band on SDS-PAGE, but the system had to be modified slightly to remove a 33 kDa band for rat. All of the affinity purified hydrolases showed similar properties with regard to substrate selectivity, pH dependence and mobilities on SDS-PAGE.

Animals↗

The tandem affinity purification (TAP) method: a general procedure of protein complex purification.

Identification of components present in biological complexes requires their purification to near homogeneity. Methods of purification vary from protein to protein, making it impossible to design a general purification strategy valid for all cases. We have developed the tandem affinity purification (TAP) method as a tool that allows rapid purification under native conditions of complexes, even when expressed at their natural level. Prior knowledge of complex composition or function is not required. The TAP method requires fusion of the TAP tag, either N- or C-terminally, to the target protein of interest. Starting from a relatively small number of cells, active macromolecular complexes can be isolated and used for multiple applications. Variations of the method to specifically purify complexes containing two given components or to subtract undesired complexes can easily be implemented. The TAP method was initially developed in yeast but can be successfully adapted to various organisms. Its simplicity, high yield, and wide applicability make the TAP method a very useful procedure for protein purification and proteome exploration.

Bacterial Proteins↗

Isolation, affinity purification, and identification of piglet small intestine mucosa receptor for enterotoxigenic Escherichia coli k88ac+ fimbriae.

An affinity chromatography technique was utilized to isolate and purify the receptors of Escherichia coli K88ac(+) fimbriae from the mucus of the small intestines of newborn piglets. Purified K88ac+ fimbriae were covalently immobilized onto a beaded agarose matrix (Sepharose 4B). The immobilized fimbriae were used for the affinity purification of the K88ac+ receptors. Only two major proteins were tightly and specifically bound to the immobilized fimbriae after the column containing bound receptor was washed exhaustively with a buffer containing a high concentration of salt and a detergent. The receptors were eluted as a single component at a low pH. The isolated proteins were then subjected to enzyme-linked immunosorbent assay, sodium dodecyl sulfate-polyacrylamide gel electrophoresis, and Western blot (immunoblot) analyses. The two proteins were of high purity, were responsible for nearly all of the fimbrial binding capacity of the crude mucus, and had molecular masses of 26 and 41 kDa. The method for isolation of E. coli binding proteins is simple and yields purified intestinal receptors in a single chromatographic run. The intestinal mucus of different piglets has different proportions of the two receptor proteins.

Animals↗

Improved tandem affinity purification tag and methods for isolation of protein heterocomplexes from plants.

A synthetic gene encoding the tandem affinity purification (TAP) tag has been constructed, and the TAP tag assayed for its effects on expression levels and subcellular localization by fusion to green fluorescent protein (GFP) as well as for its effects on steroid-dependent translocation to the nucleus and transcription when fused to a hybrid glucocorticoid receptor. A nuclear localization signal (NLS) was detected in the calmodulin-binding protein (CBP) domain and removed by mutation to improve the usefulness of the TAP tag. Additionally, purification improvements were made, including inhibition of a co-purifying protease, and adding a protein cross-linking step to increase the recovery of interacting proteins. The improved synthetic TAP tag gene and methods were used to isolate proteins interacting with the hybrid glucocorticoid receptor and to identify them by mass spectrometry. The two proteins identified, HSP70 and HSP90, are known to interact with the glucocorticoid receptor in vivo in mammalian cells and in vitro in plants.

Affinity Labels↗

Affinity purification and elimination of methionine oxidation in recombinant human cystatin C.

Recombinant human cystatin C (cC), a cysteine protease inhibitor, contained methionine sulfoxide [Met(O)] residues when expressed in Escherichia coli under aerobic conditions or upon allowing osmotic shock solutions from anaerobically grown cultures to warm to room temperature. Oxidation occurred in the periplasmic space or intracellularly during aerobic expression. Both Met14 and Met41 were subject to oxidation, as determined by NMR spectroscopy and mass spectrometry. Oxidation of Met110 was not observed. Growth under anaerobic conditions and modified purification procedures prevented oxidation. Through the use of a new form of affinity purification, cC was purified to > 99% in one step on E-64-papain-Sepharose (E-64 is 1-[N-[(L-3-trans-carboxyoxirane-2-carbonyl)-L-leucyl]amino]-4-g uanidinobutane), with elution with sodium trichloroacetate. The dissociation equilibrium constants (Kd) for the interaction of unoxidized cC, (Met(O)14)cC, and (Met(O)41)cC with S-(N-ethylsuccinimidyl)papain were experimentally identical: 1.8 (+/-0.2) x 10(-7), 1.6 (+/-0.2) x 10(-7), and 1.4 (+/-0.5) x 10(-7) M, respectively. This implies that the structure of the protease-binding region of mono-oxidized cC's was unchanged. The NMR observation of small, localized conformational changes was consistent with this. (Met(O)14)cC and (Met(O)14,Met(O)41)cC eluted earlier upon analytical affinity chromatography.

Chromatography, Affinity↗

Affinity purification of antibodies from diazotized paper blots of heterogeneous protein samples.

A method is described for the affinity purification of antibodies using protein samples that have been electrophoretically transferred to diazotized paper. Using differentiated neuroblastoma cells as the protein sample and a heterogeneous anti-microtubule protein serum, antibodies were isolated that specifically bound only to tubulin on blots and that stained microtubule networks in cells. The general utility of this method for various types of applications is discussed.

Animals↗

Affinity purification of human antibodies directed against cloned antigens of Plasmodium falciparum.

A technique has been developed for the affinity purification of antibodies recognizing cloned antigens of the malaria parasite Plasmodium falciparum expressed in bacteria. Adsorbents prepared by coupling bacterial lysates to Sepharose were used to isolate monospecific antibodies from human immune sera. Production of an abundant stable fused polypeptide by the bacteria was not a prerequisite for the success of this approach. Also the procedure permits the characterization of antigens which elicit the production of very low levels of antibodies. Affinity-purified human antibodies were used to characterized the corresponding P. falciparum antigens by immunoblotting and a number of antigens identified in this way illustrate some commonly observed features of P. falciparum antigens. Several of these antibody preparations recognized multiple bands in the electrophoretic patterns. Studies on a number of isolates of P. falciparum indicate that many antigens exhibit size polymorphisms. Production of some antigens was shown to be restricted to particular stages of the asexual blood cycle of the parasite while others appear to be specifically processed during the life cycle. Affinity-purified antibodies have also been used to locate antigens within the infected erythrocyte and to delineate subsets of antibodies recognizing different epitopes of a single antigen.

Animals↗

HB tag modules for PCR-based gene tagging and tandem affinity purification in Saccharomyces cerevisiae.

We have recently developed the HB tag as a useful tool for tandem-affinity purification under native as well as fully denaturing conditions. The HB tag and its derivatives consist of a hexahistidine tag and a bacterially-derived in vivo biotinylation signal peptide, which support sequential purification by Ni2+ -chelate chromatography and binding to immobilized streptavidin. To facilitate tagging of budding yeast proteins with HB tags, we have created a series of plasmids with various selectable markers. These plasmids allow single-step PCR-based tagging and expression under control of the endogenous promoters or the inducible GAL1 promoter. HB tagging of several budding yeast ORFs demonstrated efficient biotinylation of the HB tag in vivo by endogenous yeast biotin ligases. No adverse effects of the HB tag on protein function were observed. The HB tagging plasmids presented here are related to previously reported epitope-tagging plasmids, allowing PCR-based tagging with the same locus-specific primer sets that are used for other widely used epitope-tagging strategies. The Sequences for the described plasmids were submitted to GenBank under Accession Numbers DQ407918-pFA6a-HBH-kanMX6 DQ407927-pFA6a-RGS18H-kanMX6 DQ407919-pFA6a-HBH-hphMX4 DQ407928-pFA6a-RGS18H-hphMX4 DQ407920-pFA6a-HBH-TRP1 DQ407929-pFA6a-RGS18H-TRP1 DQ407921-pFA6a-HTB-kanMX6 DQ407930-pFA6a-kanMX6-PGAL1-HBH DQ407922-pFA6a-HTB-hphMX4 DQ407931-pFA6a-TRP1-PGAL1-HBH DQ407923-pFA6a-HTB-TRP1 DQ407924-pFA6a-BIO-kanMX6 DQ407925-pFA6a-BIO-hphMX4 DQ407926-pFA6a-BIO-TRP1.

Base Sequence↗

Immuno-affinity purification of heparinase.

Polyclonal IgG rabbit antibodies were prepared against a purified heparinase from Flavobacterium heparinum. Immuno-affinity purification of crude and partially purified heparinase is described. The resulting enzyme was of comparable purity to that prepared using the standard multistep purification scheme. The antibodies prepared were found to increase the activity of bound heparinase.

Animals↗