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Western Blot (WB)

Learn how our antibodies are validated in Western blot, and find the protocols you need to be successful in your experiment.

 Western blot detects proteins separated on a gel by their size and targeted with specific antibodies. The protein separation is performed by gel electrophoresis. The proteins are then transferred to a nitrocellulose or PVDF (polyvinylidene fluoride) membrane on which the blotting with the antibody is performed.

 

Protocols and guides

Use these recommended protocols for optimal results in Western blot using our antibodies. The protocols are optimized for Triple A Polyclonals and PrecisA Monoclonals.

Western blot Standard Protocol
Western blot Protocol - BSA Blocking

 

Validation in Western blot

Our antibodies, Triple A Polyclonals, and PrecisA Monoclonals are routinely validated in Western blot. 

Correct binding is verified by comparing the band size with the theoretical mass of the target protein. Factors that can affect protein migration, such as alternative isoforms and post-translational modifications are considered, 

Endogenous protein lysates from human tissues and cell lines are primarily used as samples. Protein lysates are selected based on RNA expression levels and the scientific relevance of the target. When suitable cell lines are not available, recombinantly produced full-length target proteins in the form of HEK-293 cell line over-expression lysates are used as positive control samples. The endogenous protein lysates from mouse and rat cell lines are tested for many antibodies,

The peroxidase (HRP) labeled antibody is visualized by chemiluminescence detection using a CCD-camera system.

 

Anti-SOX11 Antibody
Anti-SOX11 Antibody

Anti-SOX11 Antibody

AMAb90502
In Stock (10+)
417 EUR
Anti-CHGA Antibody
Anti-CHGA Antibody

Anti-CHGA Antibody

AMAb90525
In Stock (10+)
354 EUR
Anti-GALNT6 Antibody
Anti-GALNT6 Antibody

Anti-GALNT6 Antibody

HPA011762
In Stock (10+)
442 EUR
Anti-ACBD5 Antibody
Anti-ACBD5 Antibody

Anti-ACBD5 Antibody

HPA011861
In Stock (10+)
442 EUR
Anti-CERS2 Antibody
Anti-CERS2 Antibody

Anti-CERS2 Antibody

HPA027262
In Stock (10+)
442 EUR
Anti-HENMT1 Antibody
Anti-HENMT1 Antibody

Anti-HENMT1 Antibody

HPA028464
In Stock (10+)
417 EUR
Anti-NSUN4 Antibody
Anti-NSUN4 Antibody

Anti-NSUN4 Antibody

HPA028489
In Stock (8)
442 EUR
Anti-SKA3 Antibody
Anti-SKA3 Antibody

Anti-SKA3 Antibody

HPA039272
In Stock (10+)
442 EUR
Anti-NAA25 Antibody
Anti-NAA25 Antibody

Anti-NAA25 Antibody

HPA039322
In Stock (10+)
442 EUR
Anti-MRPS34 Antibody
Anti-MRPS34 Antibody

Anti-MRPS34 Antibody

HPA042112
In Stock (10+)
442 EUR
Anti-SOWAHD Antibody
Anti-SOWAHD Antibody

Anti-SOWAHD Antibody

HPA065955
In Stock (10+)
442 EUR
Anti-DHTKD1 Antibody
Anti-DHTKD1 Antibody

Anti-DHTKD1 Antibody

HPA066098
In Stock (10+)
442 EUR

 

Enhanced Validation in WB

To further demonstrate specificity, the validation performed for our antibodies is expanded with application-specific Enhanced Validation. In Western blot, four different enhanced validation methods are applied:

  • Orthogonal validation (verifying with a method other than antibodies)
  • Genetic validation (downregulation of the target gene)
  • Independent Antibody Validation (comparing two or more antibodies targeting different regions of the same protein)
  • Recombinant Expression Validation (validating with an over-expressed version of the target protein)

 

Example of orthogonal validation by comparing antibody signal in WB to RNA

The orthogonal validation method validates the antibody staining using a non-antibody-based method.

For example, the Western blot results are compared with RNA-Seq data for the same samples, using both positive and negative controls. Antibody specificity is confirmed when the antibody signal matches RNA levels in the evaluated samples.

For each antibody, two tissues or endogenous cell lines are chosen for validation: one with high RNA expression and the other with low or no RNA expression of the target protein. The cell lines are selected to express at least a five-fold difference between the RNA expression in the high and low samples.

In the enhanced validation data presented for the antibodies, the Western blot lanes in the high and low cell lines are displayed together with their corresponding RNA values. 

 

Example of orthogonal validation in WB, using the Anti-RAB27A antibody (HPA001333) in Western blot in the SK-MEL-30 and CACO-2 cell lines. On the right-hand side, bars representing the TPM values for RAB27A in the same cell lines are presented.

 

Example of genetic validation in WB by siRNA knockdown 

Genetic validation by siRNA knockdown is an enhanced method for validation where the target gene is downregulated. Antibody specificity is confirmed when the corresponding gene's knockdown levels correlate with a decrease in the antibody signal. 

At Atlas Antibodies, two separate siRNA probes are employed to silence each target, and a loading control is added to ensure even loading and equal transfer over the gel. The knockdown is approved if at least 50% silencing is achieved for at least one of the two siRNA probes.

In the enhanced validation data presented for the antibody, the Western blot lanes in the control and knocked-down samples are displayed together with the loading control, and the relative remaining intensity after silencing is presented.  

 

Example of genetic validation by siRNA knockdown in WB using the Anti-PPIB antibody (HPA012720). U-251 cells have been transfected with control siRNA and two target-specific siRNA probes. Downregulation of antibody signal confirms target specificity. The remaining intensity relative control lane is indicated as a percentage.


Example of validation by independent antibody in WB

Validation by independent antibody is an enhanced method for validation where the antibody specificity is demonstrated by comparing at least two antibodies targeting the same protein with non-overlapping epitopes. 

If the signals from the two antibodies correlate when compared across multiple samples, the antibodies validate each other.

In the validation data presented for the antibody, the Western blots from both antibodies are displayed together. 

Example of independent antibody validation in WB using the Anti-PBLD antibody HPA038036 (A) shows a similar pattern to the independent antibody HPA038035 (B).

 

Example of recombinant expression validation in WB

Recombinant expression validation is an enhanced method for validation where the antibody binding is confirmed using an over-expressed version of the target protein. 

The method is applied to Western blot by comparing the antibody signal in a sample where the target protein has been recombinantly over-expressed with the signal from a control sample. Antibody specificity is confirmed when the antibody shows a strong band in the cell line with recombinant expression and no or faint band in the control line. 

In the validation data presented for the antibody, the Western blot includes the over-expressed sample and the control sample in the same blot.

Example of recombinant expression validation in WB using the Anti-ACY3 antibody (HPA039219). Lane 1: marker, lane 2: negative control (vector only transfected HEK293T lysate), lane 3: ACY3 over-expression lysate (Co-expressed with a C-terminal myc-DDK tag (~3.1 kDa) in mammalian HEK293T cells, LY408962).

 
The importance of loading controls in WB

Loading controls are helpful to ensure that an even amount of protein is loaded on the gel. 

When studying the expression of a target protein in different samples, it is necessary to normalize protein levels using a loading control antibody to get reliable data. By using a loading control, you can distinguish an unevenly loaded sample from an actual difference in the protein expression between the samples.

Suitable targets for loading control are housekeeping proteins expressed at high levels in a wide range of cell lines and tissues. 

Loading controls can also be used to confirm that the transfer of protein from the gel is equal over the whole membrane. This is particularly useful when comparing protein expressions over several samples.

How to choose a loading control for WB

When choosing a loading control, be sure to pick one that targets a protein of a different molecular weight than that of your protein of interest. By doing so, you can easily differentiate between the two bands during the blotting.

For optimal results, also check that the protein or RNA expression level of the loading control target is fairly high in the cell lines or tissue lysates you will use.


Save time with fluorescence-based multiplex WB

Fluorescence-based multiplex Western blot is a time-saving alternative to chemiluminescent detection. For multiplexing, choose a loading control antibody with a different isotype or host species than the antibody targeting the protein of interest.

Using suitable secondary antibodies conjugated with fluorescent dyes, the western blot protocol can be reduced to only one primary and one secondary incubation step. The two bands can be visualized in the same image.  

 
Discover our antibody panel of Loading Controls, consisting of PrecisA Monoclonals targeting proteins that are constitutively expressed in a large set of cell lines and tissues. The Atlas Antibodies Loading Control panel contains antibodies of different isotypes allowing multiplexing. 

Browse loading control antibodies

 

Anti-NT5M Antibody
Anti-NT5M Antibody

Anti-NT5M Antibody

HPA043777
In Stock (10+)
442 EUR
Anti-KCNK17 Antibody
Anti-KCNK17 Antibody

Anti-KCNK17 Antibody

HPA043892
In Stock (6)
442 EUR
Anti-SPATA24 Antibody
Anti-SPATA24 Antibody

Anti-SPATA24 Antibody

HPA044000
In Stock (10+)
442 EUR
Anti-SLC13A5 Antibody
Anti-SLC13A5 Antibody

Anti-SLC13A5 Antibody

HPA044343
In Stock (10+)
417 EUR
Anti-ETNPPL Antibody
Anti-ETNPPL Antibody

Anti-ETNPPL Antibody

HPA044546
In Stock (10+)
442 EUR
Anti-SPOCK2 Antibody
Anti-SPOCK2 Antibody

Anti-SPOCK2 Antibody

HPA044605
In Stock (10+)
442 EUR
Anti-GMEB1 Antibody
Anti-GMEB1 Antibody

Anti-GMEB1 Antibody

HPA044811
In Stock (7)
442 EUR
Anti-OSER1 Antibody
Anti-OSER1 Antibody

Anti-OSER1 Antibody

HPA045125
In Stock (10+)
442 EUR
Anti-PODXL Antibody
Anti-PODXL Antibody

Anti-PODXL Antibody

HPA045507
In Stock (3)
417 EUR
Anti-HAPLN2 Antibody
Anti-HAPLN2 Antibody

Anti-HAPLN2 Antibody

HPA045765
In Stock (6)
442 EUR
Anti-C1orf35 Antibody
Anti-C1orf35 Antibody

Anti-C1orf35 Antibody

HPA046175
In Stock (10+)
442 EUR
Anti-RPL7L1 Antibody
Anti-RPL7L1 Antibody

Anti-RPL7L1 Antibody

HPA046049
In Stock (10+)
442 EUR