| Literature DB >> 34159320 |
Bikram Datt Pant1, Sunhee Oh1, Kirankumar S Mysore1,2,3.
Abstract
This protocol describes the analysis of protein cysteine redox status. Redox status is crucial in regulating protein activity, stability, and redox signaling cascades. It is determined by conjugation with 1.24 kDa MM(PEG)24 molecule to each reduced cysteine followed by western blot analysis. This protocol is easy to follow, and most of the reagents and instruments required are of common use in any lab. This protocol can be successfully applied to other biological sources. For complete details on the use and execution of this protocol, please refer to Pant et al. (2020).Entities:
Keywords: Molecular Biology; Plant sciences; Protein Biochemistry
Mesh:
Substances:
Year: 2021 PMID: 34159320 PMCID: PMC8196218 DOI: 10.1016/j.xpro.2021.100566
Source DB: PubMed Journal: STAR Protoc ISSN: 2666-1667
Figure 1Analysis of protein cysteine thiol redox status
(A) Redox assay western blot analysis of Arabidopsis thaliana expressing AtTRXL1-HA protein. Lane 1 and 2 shows the oxidized (ox) and reduced (red) controls, respectively. Lane 3 shows the TRXL1-HA from plants subjected to heat stress at 40°C for 30 min and Lane 4 from plants grown under normal condition at 22°C. Conjugation of MM(PEG)24 to reduced cysteine thiols led to an increased molecular weight of TRXL1 in reduced control (lane 2) and heat stressed sample (lane 3). Protein size scale is given in kDa. Membrane was stripped and re-probed with anti-Actin antibody as a loading control. Actin is not visible in oxidized lane possibly because the oxidation of Actin may lead to the actin polymerization.
(B) Graphical illustration of oxidized and reduced state of dimeric protein showing controls and samples.
Lysis buffer
| Reagents | Stock (prepare individually) | Final concentration | Amount (1×) | |
|---|---|---|---|---|
| Tris, pH 7.5 | 121.14 g | 1M | 50mM | 2.5 mL |
| NaCl | 292.2 g | 5M | 150 mM | 1.5 mL |
| MgCl2 | 406.62 g | 2M | 10 mM | 0.25 mL |
| Glycerol | 100% | 10% | 5 mL | |
| NP40 | 20% | 0.1% | 0.25 mL | |
| EDTA | 186.12 g | 0.5M | 1 mM | 0.1 mL |
| PMSF | 17.419 g | 0.1M | 1 mM | 0.5 mL |
| Water | 1 L | 39.9 mL | ||
Store at 4°C. Store PMSF and protease inhibitor cocktail solution at −20°C and is stable for several months. Add 1×protease inhibitor cocktail just before use.
Resuspension buffer
| Reagents | Stock (20×) | Final concentration | Amount (1×) | |
|---|---|---|---|---|
| Tris, pH 7.5 | 48.5 g | 400 mM | 50 mM | 6.25 mL |
| Urea | n/a | n/a | 4 M | 12.01g |
| Glycerol | n/a | n/a | 2.5% | 1.25 mL |
| SDS | n/a | n/a | 2% | 1 g |
| Bromophenol blue | n/a | n/a | 0.005% | 2.5 mg |
| Water | 1 L | n/a | n/a | upto 50 mL |
| n/a | n/a | |||
| n/a | n/a | n/a | ||
It is better to use freshly added urea in the solution as solutions of urea can produce reactive cyanate ions upon standing. Buffer without urea can be stored at 4°C to 25°C for more than a year.
Running buffer
| Reagents | Stock (10×) | Final concentration | Amount (1×) | |
|---|---|---|---|---|
| Tris | 30.28 g | 250 mM | 25 mM | 100 mL of Tris, Glycine, SDS mix |
| Glycine | 142.63 g | 1.9 M | 190 mM | |
| SDS | 10 g | 1% | 0.1% | |
| Water | 1 L | n/a | n/a | 900 mL |
| n/a | n/a | |||
Buffer can be stored at 4°C to 25°C for more than a year.
Transfer buffer
| Reagents | Stock (10×) | Final concentration | Amount (1×) | |
|---|---|---|---|---|
| Tris | 30.28 g | 250 mM | 25 mM | 100 mL of Tris, Glycine mix |
| Glycine | 142.63 g | 1.9 M | 190 mM | |
| Methanol | n/a | n/a | 20% | 200 mL |
| Water | 1 L | n/a | n/a | 700 mL |
| n/a | n/a | |||
Add methanol just before use. Buffer without methanol can be stored at 4°C to 25°C for more than a year.
Tris-buffered saline with Tween 20 (TBS-T) buffer
| Reagents | Stock (20×) | Final concentration | Amount (1×) | |
|---|---|---|---|---|
| Tris, pH 7.6 | 48.5 g | 400 mM | 20 mM | 50 mL of Tris and NaCl mix |
| NaCl | 175.32 g | 3 M | 150 mM | |
| Tween 20 | n/a | n/a | 0.1% | 1 mL |
| Water | 1 L | n/a | n/a | 949 mL |
| n/a | n/a | |||
Buffer can be stored at 4°C to 25°C for more than a year.
Stripping buffers
| Reagents | Stock (20×) | Final concentration | Amount (1×) | |
|---|---|---|---|---|
| Tris, pH 6.8 | 60.57 g | 0.5M | 62.5 mM | 3.75 mL |
| SDS | 200 g | 20% | 2% | |
| β-mercaptoethanol | n/a | 14.3M | 100 μM | 210 μL |
| Water | n/a | n/a | n/a | upto 30 mL |
| n/a | n/a | |||
Buffer can be stored at 4°C to 25°C for more than a year. Add β-mercaptoethanol just before use.
| REAGENT or RESOURCE | SOURCE | IDENTIFIER |
|---|---|---|
| Anti-HA antibody | Cat#ab9110; RRID: | |
| Anti-Actin antibody | Sigma-Aldrich | Cat#A0480; RRID: |
| Goat Anti-Rabbit IgG H&L | Cat#ab6721; RRID: | |
| AtTRXL1-HA expressing Arabidopsis lines | N/A | |
| Methyl-maleimide polyethylene glycol MM(PEG)24 | Thermo Fisher Scientific | Cat#22713 |
| 4–15% Criterion TGX Stain-Free Protein Gels | Bio-Rad | Cat#5678083 |
| Pierce™ ECL Western Blotting Substrate | Thermo Fisher Scientific | Cat# 32209 |
| 10× Tris/Glycine/SDS Running Buffer | Bio-Rad | Cat #1610772 |
| Trichloroacetic acid (TCA) | Sigma | Cat# T6399 |
| Protease inhibitor cocktail | Sigma | Cat#P9599 |
| Blotting Grade Blocker Non Fat Dry Milk | Bio-Rad | Cat #1706404XTU |
| CuCl2 | Sigma-Aldrich | Cat#203149-10G |
| DTT (dithiothreitol) | Thermo Fisher Scientific | Cat# R0861 |
| E-Z Store & Pour Fixer | MXR, The Imaging Solution Company | Cat# 114511 |
| E-Z Store & Pour Developer | MXR, The Imaging Solution Company | Cat# 103633 |
| Acetone | Sigma-Aldrich | Cat# 179124-500ML |
| ImageJ | N/A | |
| Criterion Vertical Electrophoresis Cell | Bio-Rad | Cat#1656001 |
| Trans-Blot SD Semi-Dry Transfer Cell | Bio-Rad | Cat# #1703940 |
| Nitrocellulose membrane | Bio-Rad | Cat#1620112 |
| X-Ray Film | Thomas Scientific | Cat#1148B77 |
| Konica medical film processor SRX-101A | Konica Corporation | Cat# 1051/1052 |
| Aluminum Push Button X-ray Cassette - 8×10 | N/A | |