MAPK1 Assay – A Transcreener ADP2 Assay Application

The MAPK1 assay leverages the Transcreener ADP2 Assay, a competitive immunoassay, to enable researchers to assess enzymatic activity. The assay relies on direct ADP detection, where binding of tracer to antibody causes change in fluorescence. It is designed for inhibitor screening and inhibitor dose response measurements.

MAPK1 (also known as ERK2) mediates a variety of cellular responses through phosphorylation of diverse substrates; it is part of the RAF-MEK-ERK pathway which plays a critical role in regulating cell growth, differentiation, and survival and is upregulated in many types of cancers. The search for small molecule MAPK1 modulators is a promising strategy for immunoncology therapeutics.

The kit includes all necessary detection reagents for measuring activity. Note that MAPK1 enzyme is not provided in the assay kit. For questions regarding enzyme acquisition, please contact usThis assay is designed for use with purified enzyme preparations and is not validated for application with cell lysates, blood, serum, or other biological samples.

Application Note: Detection of MAPK1 Activity with the Transcreener ADPAssay

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Applications

  • Measure Enzymatic Activity of MAPK1
  • Screen Compound Libraries for MAPK1 Modulators
  • Quantify Inhibitor Potency
  • Inhibitor Selectivity Profiling
  • Residence Time Measurements

Features

  • Direct detection of unlabeled ADP
  • Easy to use, homogenous, one-step format
  • Robust Assay Z’ > 0.7 under initial velocity conditions
  • Far-red fluorescent readouts minimize compound interference
  • A safe, non-radioactive method
  • Available in FP, FI, or TR-FRET readouts

A Simple Mix-&-Read Format

Run your enzyme reaction, add Transcreener reagents, and read your plates. The assay is compatible with 96, 384, and 1536-well formats.

Transcreener Mix and Read Assay

Robust Data for Sizeable HTS (Z’ = 0.90)

Robust data like this confirms the MAPK1 assay is well-suited for screening large compound libraries. A Z’ > 0.7 indicates an assay with clear distinction between active and inactive compounds in a screen.

Z' Data for MAPK1 Assay

Validation of MAPK1 Assay Under Initial Velocity Conditions

Performing the MAPK1 titration within the initial velocity region (<20% conversion of substrate to product) confirms that the signal is within dynamic range for optimized transcreener adp2 Assay. The assay show linearity when raw data is converted to ADP using a standard curve. Here, the buffer included 20 mM Tris pH 7.5, 10 mM MgCl2, 1 mM DTT, and 0.01% Tween-20. The MAPK1 enzyme reaction took place for 60 minutes at room temperature. The detection mixture included 1X Stop and Detect Buffer B, 6.4 μg/mL ADP2 Antibody, and 4 nM ADP2 Tracer. The detection mix was added and incubated for 60 minutes at room temperature.

MAPK1 Enzyme Titration

MAPK1 Assay Titration in FP Readout

Linear Response

MAPK1 Linear Conversion Data Complete Only

Interrogate Novel MAPK1 Modulators in a High Throughput Format

Transcreener Assays are designed for screening compound libraries in a high throughput format. Follow-up SAR can also be performed using the assay to determine inhibitor potency with ease. Assay conditions here included 2 nM MAPK1 enzyme, 20 mM Tris (pH 7.5), 10 mM MgCl2, 1 mM DTT, 5 μM ATP, 0.01% Tween-20, 6.4 μg/mL ADP2 Antibody, 4 nM ADP2 Tracer, and 1X Stop and Detect Buffer.

Dose-Response Data With Staurosporine

Dose Response Data with MAPK1 Assay

IC50 = 0.77 μM

Choose a Fluorescent Readout Option Best Suited For Your Lab

Three fluorescent readout options are available. Choose a readout detection mode best suited for your lab based on preference and plate reader compatibility.

Fluorescent Intensity

MAPK1 Titration in FI Readout

FI Detection Mix (10 μL): 1x Stop & Detect Buffer B, 5.4 μg/mL ADP Ab-IRDye QC-1, 8 nM AlexaFluor 594 Tracer.

TR-FRET

MAPK1 Enzyme Titration in TR-FRET Readout

TR-FRET Detection Mix (10 μL): 1x Stop & Detect Buffer C, 8 nM ADP Ab-Tb, 17.3 nM ADP HiLyte647 tracer.

MAPK1 Assay Services

BellBrook Labs offers Lead Discovery Services for MAPK1 using our trusted Transcreener ADP2 Assay. BellBrook scientists will use their extensive biochemistry and enzymology expertise to work with you and accelerate your program. We are a small, custom shop so we can tailor our expertise to meet your specific needs, saving you both time and money.

Lead Discovery Services Include:
  • Inhibitor Screening

    To identify or confirm activity with the target.

  • Inhibitor Potency Profiling

    Dose-response with target and/or related proteins. Fast IC50 results.

  • Residence Time Measurements

    Determination of koff using ‘jump dilution’ enzymatic assay method.

  • Mechanism of Action Studies

    Kinetic analysis to define the mode of inhibition.

  • Triaging Non-stoichiometric Inhibitors

    Run assays under different conditions such as varying detergent and enzyme concentrations.

  • Evaluate Compound-Target Binding

    Run thermal shfit assays to confirm compound-target engagement via shifts in melting temperature.

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What’s Included In The Transcreener Kit

ComponentNotes
ADP² AntibodyAntibody specific to the nucleotide ADP. Suggested ADP² antibody concentration for 5 μM ATP (in the Detection Mixture) for FP  - 6.4 μg/mL, TR-FRET - 8 nM, and FI -  5.4 μg/mL . Yours may vary depending on enzyme and buffer composition. 
ADP TracerWhen displaced, changes in fluorescence can be read in an FP, FI, or TR-FRET depending on the assay format.  The suggested concentration for 5 μM ATP (in the Detection Mixture) for FP - 4 nM, TR-FRET - 17.3 nM, and FI - 8 nM.
Stop & Detect Buffer BThe Stop & Detect Buffer components will stop enzyme reactions that require Mg2+. To ensure that the enzyme reaction is stopped completely, confirm that the EDTA concentration is at least equimolar to the magnesium ion concentration in the reaction.
ATP and ADPATP and ADP are used to create the ATP/ADP standard curve. ATP is used as a phosphate donor to start the reaction. We suggest using a starting ATP concentration of 5 μM for MAPK1. 

Additional Materials You Will Need

ComponentNotes
MAPK1 EnzymeWe have successfully used recombinant human MAPK1 protein from ThermoFisher Cat. #PV3595.  A MAPK1 concentration of 2 nM was used for screening and SAR.
Enzyme Buffer20 mM Tris (pH 7.5), 10 mM MgCl2,, 1 mM DTT and 0.01% Tween-20. Enzyme buffer components may be optimized as required.
APRTPGGRR PeptideMBP Peptide Substrate [APRTPGGRR] from Anaspec Cat. #AS-27168.
Assay PlatesAssay Plates Can Be Purchased Directly Through BellBrook Labs

FP - An entirely black plate with a non-binding surface is required. We suggest Corning 384-well plates Cat. #4514

FI - An entirely black plate with a non-binding surface is required. We suggest Corning 384-well plates Cat. #4514

TR-FRET - An entirely white plate with a non-binding surface is required. We suggest Corning 384-well plates Cat. #4513
Plate ReaderA multi-detection microplate reader configured to measure the output of the ADP tracer is required.
Liquid Handling DevicesUse liquid handling devices that can accurately dispense sub-microliter volumes into 384-well plates.
Ultrapure WaterSome deionized water systems are contaminated with nucleases that can degrade both nucleotide substrates and products, reducing assay performance. Careful handling and use of ultrapure water eliminates this potential problem.

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“Some CROs reserve their best teams for high profile customers. If you’re not right there with them you get less experienced teams… BellBrook understands enzyme kinetics, so it made that part of the project so much easier. The larger CRO didn’t seem to have the expertise we needed in this area.”

“The ADP assay is a great choice for measuring activity for any ADP-generating enzyme in both real time and endpoint formats. The universal detection system has been very useful for more challenging targets.”

“Excellent blend of simplicity & good science. Excellent technical support”

“The assay itself has good reproducibility and provides a clear readout on our enzyme activity. The most important piece, however, is the level of attention to our project and rapid turnaround time. The staff at BellBrook knows what they are doing.”

“The Transcreener AMP/GMP Assay is extremely straightforward to use and is very sensitive. In a UV-based enzyme assay I needed 1 µM enzyme to see a decent signal; however using the Transcreener AMP assay I only need 10 nM. Also, BellBrook Labs have been very helpful with the assay development. Their representative has been very willing to quickly help me get my assay up and running.”

“Through the process of developing and validating an assay for HTS applications, I generated a very nice data package of robust high quality data.”