| Literature DB >> 29164268 |
Hubert G Schwelberger1, Johannes Feurle2, Gunnar Houen3.
Abstract
OBJECTIVE: Recently we characterized five mouse monoclonal antibodies that allow the specific and sensitive detection of human diamine oxidase (DAO). To understand differences in binding characteristics and recognition of enzyme variants, we mapped the antibody binding sites.Entities:
Keywords: Diamine oxidase; Epitope mapping; Histamine metabolism; Monoclonal antibodies; Protein expression
Mesh:
Substances:
Year: 2017 PMID: 29164268 PMCID: PMC5807474 DOI: 10.1007/s00011-017-1118-3
Source DB: PubMed Journal: Inflamm Res ISSN: 1023-3830 Impact factor: 4.575
Fig. 1DAO expression constructs. a Recombinant plasmids expressing GST-DAO fusion proteins used for immunization that were obtained by cloning different human DAO cDNA fragments into the bacterial expression vectors pGEX-5X-1/-2/-3, respectively. Grey bars indicate the positions of the copper amine oxidase N-terminal domains 2 and 3 (CuAO N2/N3), the enzymatic core domain (CuAO enzyme), and the signal peptide sequence (SP). b Recombinant plasmids expressing GST-DAO fusion proteins obtained by subcloning cDNA fragments from pGEX-huDAO02 into the bacterial expression vectors pGEX-5X-1/-2/-3, respectively. c 12.5% Silver-stained SDS polyacrylamide gel and immunoblot with an anti-GST antibody of lysates prepared from bacteria-harbouring plasmids pGEX-huDAO02-38 indicated on top of each lane. Migration positions of full-length fusion proteins are indicated by arrows, and their expected sizes are listed in Table 1. The sizes of molecular weight markers (M) are given on the left in kDa
Expression plasmids for huDAO fragments
| Plasmid | Vector | cDNA fragment | Peptide | FuP (kDa) |
|---|---|---|---|---|
| pGEX-huDAO01 | pGEX-5X-1 |
| P23-R190 | 44.5 |
| pGEX-huDAO02 | pGEX-5X-3 |
| R190-F435 | 53.1 |
| pGEX-huDAO03 | pGEX-5X-2 |
| K436-V751 | 60.8 |
| pGEX-huDAO04 | pGEX-5X-3 |
| R190-V751 | 87.8 |
| pGEX-huDAO11 | pGEX-5X-3 |
| R190-V381 | 47.1 |
| pGEX-huDAO12 | pGEX-5X-3 |
| R190-V339 | 42.5 |
| pGEX-huDAO13 | pGEX-5X-3 |
| R190-R288 | 36.9 |
| pGEX-huDAO14 | pGEX-5X-3 |
| R190-E218 | 29.2 |
| pGEX-huDAO21 | pGEX-5X-1 |
| Q196-W231 | 30.0 |
| pGEX-huDAO22 | pGEX-5X-3 |
| V233-G299 | 33.4 |
| pGEX-huDAO23 | pGEX-5X-1 |
| P308-G377 | 33.7 |
| pGEX-huDAO24 | pGEX-5X-1 |
| L378-F435 | 32.4 |
| pGEX-huDAO31 | pGEX-5X-3 |
| V233-V262 | 29.3 |
| pGEX-huDAO32 | pGEX-5X-2 |
| V262-G299 | 30.2 |
| pGEX-huDAO33 | pGEX-5X-2 |
| D265-G299 | 29.9 |
| pGEX-huDAO34 | pGEX-5X-3 |
| V233-G244 | 27.3 |
| pGEX-huDAO35 | pGEX-5X-3 |
| P246-E264 | 28.1 |
| pGEX-huDAO36 | pGEX-5X-3 |
| P246-E278 | 29.6 |
| pGEX-huDAO37 | pGEX-5X-1 |
| P266-E278 | 27.4 |
| pGEX-huDAO38 | pGEX-5X-1 |
| P279-G299 | 28.3 |
Human DAO cDNA fragments obtained with different restriction endonucleases were cloned in frame into the expression vectors pGEX-5X-1/-2/-3 to produce different size GST-DAO fusion proteins (FuP). Superscripts indicate position of restriction site on cDNA sequence (relative to A1 of translational start codon) and amino acid position (relative to M1 of precursor protein), respectively
Fig. 2Antibody binding to DAO fragments. Antibody binding was tested using filter strips of DAO fragments expressed from pGEX-huDAO01-04 used for immunization (a), of DAO fragments expressed from pGEX-huDAO11-14 with C-terminal deletions of pGEX-huDAO02 (b), of DAO fragments expressed from pGEX-huDAO21-24 with HaeIII fragments of pGEX-huDAO02 (c), or of DAO fragments expressed from pGEX-huDAO31-38 obtained by subcloning of pGEX-huDAO22 (d). Filter strips containing approximately 5 µg cell lysate protein separated on a 12.5% SDS polyacrylamide gel were incubated with the mouse monoclonal antibodies HYB313-01/-02/-03/-04, HYB311-01 (diluted 1:7500–1:20,000 in TBSTM), the anti-GST antibody HYB374-01 (1:1500), or the rabbit polyclonal antibody α-pkDAO (1:10,000) made against porcine kidney DAO, respectively. Filter strips were then incubated with horseradish peroxidase-conjugated anti-mouse immunoglobulins (1:1500 in TBSTM) or anti-rabbit immunoglobulins (1:5000), respectively, followed by ECL substrate, and exposure to film for 0.25–10 min. Lane numbers 1–4, 11–14, 21–24, and 31–38 correspond to expression constructs pGEX-huDAO01-04, pGEX-huDAO11-14, pGEX-huDAO21-24, and pGEX-huDAO31-38, respectively, and ki to a human kidney lysate. Binding is indicated by + and − signs below each lane. Exact positions of the bands on parallel lanes vary slightly because filter strips from different individual blots were used for this experiment. Besides the major band of the respective full-length fusion protein, a variable number of smaller bands is visible in most lanes due to production of partial products in the bacterial expression system
Inhibition of antibody binding by soluble fusion proteins
| Plasmid | Fusion protein | HYB313-01 | HYB313-02 | HYB313-03 | HYB313-04 | HYB311-01 |
|---|---|---|---|---|---|---|
| pGEX-huDAO22 | GST-V233-G299 | ++ | ++ | ++ | ++ | ++ |
| pGEX-huDAO32 | GST-V262-G299 | ++ | ++ | ++ | ++ | ++ |
| pGEX-huDAO33 | GST-D265-G299 | + | − | ++ | + | ++ |
| pGEX-huDAO36 | GST-P246-E278 | ++ | ++ | ++ | ++ | − |
| pGEX-huDAO38 | GST-P279-G299 | − | − | − | − | ++ |
| pGEX-5X-1 | GST | − | − | − | − | − |
Inhibition of antibody binding was tested on blots of human seminal plasma that contains considerable amounts of DAO protein [20]. Antibodies HYB313-01/-02/-03/-04 and HYB311-01 were pre-incubated with a 2–200-fold molar excess of the fusion proteins expressed from plasmids pGEX-huDAO22/32/33/36/38 or pGEX-5X-1 and then incubated with blots of human seminal plasma followed by incubation with horseradish peroxidase-conjugated anti-mouse immunoglobulins. Blots were developed with ECL substrate, exposed to film, and signal intensity was compared with controls lacking fusion protein during pre-incubation. ++ strong/+ weak/− no inhibition of binding
Fig. 3Localization of antibody binding sites. a Alignment of human, pig, rat, and mouse DAO polypeptide sequences of the region V221-P300 with predicted linear epitopes indicated by * on top [23]. Residues identical in all four proteins are shaded black, residues identical in three proteins are shaded dark grey, and residues identical in two proteins are shaded light grey, respectively. Peptide fragments V262-E278 and P279-R288 binding antibodies HYB313-01/-02/-03/-04 and HYB311-01, respectively, are indicated below the sequence as red and blue bars. b Protein backbone model and c space filling model of chain A of human DAO structure 3HI7 [11] with copper amine oxidase domains shown in different shades of grey and antibody binding peptides V262-E278 and P279-R288 in red and blue, respectively. Peptide V262-E278 (red) is only partially visible because residues P268-E277 have not been modelled in this structure due to weak uninterpretable electron density resulting from local disorder (A. McGrath, personal communication). Chain B of the homodimeric DAO protein was omitted for clarity and would be localized symmetrically on the south-eastern side of this image. (Color figure online)
Properties of human DAO-specific monoclonal antibodies
| Antibody | Isotype | huDAO | piDAO | raDAO | moDAO | IPhu | IPpi | BR |
|---|---|---|---|---|---|---|---|---|
| HYB313-01 | IgG2aκ | ++ | − | − | − | + | − | V262-E278 |
| HYB313-02 | IgG1κ | ++ | − | − | − | + | − | V262-E278 |
| HYB313-03 | IgG1κ | ++ | − | − | − | − | − | V262-E278 |
| HYB313-04 | IgG1κ | ++ | − | − | − | + | − | V262-E278 |
| HYB311-01 | IgG2aκ | ++ | − | − | − | + | − | P279-R288 |
Species cross-reactivity was tested on blots of human (hu), pig (pi), rat (ra), and mouse (mo) kidney or intestine lysates that had comparable DAO enzymatic activity. Immunoprecipitation of DAO was tested with human (IPhu) and porcine (IPpi) kidney lysates, respectively. The binding region (BR) specifies the peptide of human DAO recognized on blots. ++ strong/+ weak/− no binding or immunoprecipitation