| Literature DB >> 29416053 |
Nam Seok Lee1, Han Soo Kim2,3, Se Eun Park4, Matthias Blüher5, Cheol-Young Park6, Byung-Soo Youn7.
Abstract
Elevated circulating Retinol-binding protein 4 (RBP4) has been associated with insulin resistance, dyslipidemia, and hypertension. However, many commonly used RBP4 ELISAs have limited dynamic range. We therefore developed an enzyme-linked immunosorbent sandwich assay (ELISA) employing a novel immunoglobulin A (IgA)-type capture mAb called AG102 instead of IgG subtypes, which was selected for its stability, capture efficiency, and specificity for human RBP 4. These features of RBP4 have hampered the development of quantitative immunological assays. Molecular analysis of AG102 revealed IgA heavy and light chains and a J chain, as expected. AG102 demonstrated notable detection of both bacterial- and HEK293-expressed RBP4 in Western blots. Serial and internal deletion experiments suggested that a putative epitope may be located in the first 35 amino acids of the mature RBP4. Compared with commercial ELISAs, the AG102-based system exhibited more significant recovery of RBP4 from serum or urine at any given dilution factor. To substantiate its quantitation capacity, comparison between RBP4 measurements from quantitative western blots and the AG102-based ELISA demonstrated a significant correlation (R2 = 0.859). After measurement for those analytes, our data suggested that IgA-based ELISA could be adapted for quantitative measurement of those analytes existing as major serum proteins or as multi-protein complexes like RBP4.Entities:
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Year: 2018 PMID: 29416053 PMCID: PMC5803225 DOI: 10.1038/s41598-018-20762-x
Source DB: PubMed Journal: Sci Rep ISSN: 2045-2322 Impact factor: 4.379
Isotyping of anti-human RBP4 mAb AG102 by ELISA.
| Isotype | IgG1 | IgG2a | IgG2b | IgG3 | IgA | IgM | Kappa | Lambda |
|---|---|---|---|---|---|---|---|---|
| Absorbance | 0.119 | 0.102 | 0.094 | 0.186 | 0.256 | 0.116 |
To confirm the isotypes comprising AG102, isotyping ELISAs were performed, rendering IgA as a heavy chain and Kappa as a light chain.
Figure 1Development of a quantitative ELISA measuring RBP4 concentration in urine using a novel mAb. (a) The reactivity of the capture mAb AG102 was tested using Western blot with both recombinant and serum RBP4 proteins along with a control recombinant protein. (b) After making a serial deletion mutant RBP4 gene, these expression constructs were introduced in BL21, an IPTG-inducible E.coli host. Deletion points are indicated in Supplementary Table III, resulting in three deleted recombinant RBP4s. Upon IPTG induction, Western blot was conducted along with the use of a human serum or FLAG-RBP4. As a negative control, non-induced E.coli cell lysates were also used for the specificity of the Western blot. (c) The amino acids of human RBP4 are represented. Epitopes within the first 35 amino acid residues (bracketed) are recognized by AG102, which comprise four antigen binding sites and a joining region (J). The four critical amino acid residues involved in the TTR binding are depicted by red circles.
Figure 2Correlation of the IgA-based ELISA with q-Western blotting. (a) A control sample representing 100 ng of recombinant RBP4 (lane 1) and five human serum samples (1 μl each, lanes 2 through 6) were subjected to Western blotting using AG102 as a detector antibody. (b) Five serum samples from normal donors and the recombinant RBP4 protein were tested simultaneously with the standard, and the band intensity values from Western blot images of (a) were interpolated to determine RBP4 quantification. Using a phosphor-image analyser, the reactive area (denoted by AU/mm2) was calculated and plotted with the RBP4 concentrations determined by the IgA-based ELISA. (c) Quantification results for both methods. Coefficient of determination (R2) is indicated.
Figure 3Comparison of correlation and dynamic serum or urine recovery associated with the IgA-based ELISA with commercial ELISAs. (a) Twenty sera were selected and subjected to the IgA-based and commercial RBP4 ELISAs. Correlation and dynamic serum recovery are shown. (b) Urine samples from 78 volunteers were collected and subjected to ELISA as described above. Correlation and dynamic urine recovery are shown.