| Literature DB >> 26986548 |
Lisa-Marie Holbrook1,2, Lai-Shan Kwong1, Clive L Metcalfe1, Emmanuel Fenouillet3, Ian M Jones2, A Neil Barclay1.
Abstract
In vivo, enzymatic reduction of some protein disulfide bonds, allosteric disulfide bonds, provides an important level of structural and functional regulation. The free cysteine residues generated can be labeled by maleimide reagents, including biotin derivatives, allowing the reduced protein to be detected or purified. During the screening of monoclonal antibodies for those specific for the reduced forms of proteins, we isolated OX133, a unique antibody that recognizes polypeptide resident, N-ethylmaleimide (NEM)-modified cysteine residues in a sequence-independent manner. OX133 offers an alternative to biotin-maleimide reagents for labeling reduced/alkylated antigens and capturing reduced/alkylated proteins with the advantage that NEM-modified proteins are more easily detected in mass spectrometry, and may be more easily recovered than is the case following capture with biotin based reagents.Entities:
Keywords: Allosteric; detection; disulfide bond; labile; maleimide; reduction
Mesh:
Substances:
Year: 2016 PMID: 26986548 PMCID: PMC5037987 DOI: 10.1080/19420862.2016.1152443
Source DB: PubMed Journal: MAbs ISSN: 1942-0862 Impact factor: 5.857
Figure 1.gp120 contains redox labile disulfide bonds which are effectively reduced by TCEP (A) Maltose binding protein-tagged gp120 from HIV-1 CN54 (1 μg - MW 120 kDa) was incubated for 30 min with TCEP (2.5 mM), TRX (1.25 μg) or PDI (1 μg) and alkylated using 5 mM Alexa Fluor 633-conjugated maleimide. Samples were separated by non-reducing SDS-PAGE alongside non-reduced protein and PDI and TRX enzyme only as controls. (B) The integrated intensity of protein bands was quantified using LICOR Odyssey software. Data shown are representative of 3 separate experiments.
Figure 2.OX133 recognizes reductive changes in multiple proteins containing labile disulfide bonds (A) Target proteins (β-casein, BSA, insulin, CD200RLa or gp120 1 μg/mL) were incubated with PBS, NEM (5 mM) or IAA (5 mM) following reduction with 2.5 mM TCEP for 30 minutes or PBS (non-reduced sample) and coated onto wells of a Maxisorb microtiter plate. Wells were blocked with 0.5% (w/v) protease-free BSA in PBS/Tween for 1 hour at room temperature and alkylated reduction sites detected by incubation with OX133 antibody (0.5 μg/mL in PBS-BSA-Tween) for 1 hour at room temperature. Antibody binding to the plate was determined using anti-mouse alkaline phosphatase conjugate (1:4000) and p-NPP substrate. (B) OX133 specificity for protein-bound NEM was measured by inhibition ELISA. BSA was incubated with either PBS or TCEP (2.5 mM) for 20 minutes, then alkylated with 5 mM NEM for 30 minutes and the unreacted NEM removed. Reduced and alkylated BSA was immobilized to the plate and OX133 binding assessed in competition with free BSA or reduced and alkylated BSA. Antibody binding to the plate was determined using anti-mouse alkaline phosphatase conjugate (1:4000) and p-NPP substrate.
Figure 3.OX133 binds to reduced and labeled proteins at the cell surface and after immobilisation to support surfaces. 2B4 cells (1 × 106) were treated for 30 minutes with TCEP (2.5 mM), TRX (1.25 ug) or PBS as non-reduced (NR) control (both panels). Washed cells were alkylated with NEM (5 mM) and the labile disulfides revealed were labeled with OX133 (1:100) for 20 minutes. Binding was detected by an anti-mouse FITC-conjugate (1:200) followed by flow analysis on a FACSCalibur flow cytometer (BD Biosciences). 10,000 gated (live cell) events were recorded in 4 separate experiments: NR (light gray histogram); TCEP (panel (A)) or TRX (panel (B)) reduction (dark gray histogram). Median fluorescence values for all data revealed that TCEP reduction enhanced NEM labeling of labile disulfides most strongly (*p < 0.05) (C). 2B4 cell lysates from TCEP reduced and NEM alkylated samples were precipitated using sepharose-coupled OX133, separated by SDS-PAGE and Western blotted using OX133 antibody (1:1000) and an anti-mouse conjugate (D).