MERS-CoV Mpro fluorescence dose response

Haim Barr, Noa Lahav

Published: 2024-04-28 DOI: 10.17504/protocols.io.eq2ly7r1rlx9/v4

Disclaimer

The content is solely the responsibility of the authors and does not necessarily represent the official views of the National Institutes of Health.

Abstract

This is a functional, biochemical assay used to identify treatments for viral infectious disease in MERS-CoV 3C-like protease.

Utilizing a direct enzyme activity measurement method, the experiment was performed in a 384-well plate reading the fluorescence intensity. This assay tested the mode of action of inhibition.

Final Experiment Concentrations

ABC
ReagentConcentrationUnits
MERS Mpro50nM
MERS Substrate peptide550nM
HEPES pH=7.320mM
NaCl50mM
BSA0.1mg/ml
Triton X-1000.01% (v/v)
TCEP1mM

For more information, please see the Materials section.

Before start

Note: Inhibitor compounds stock concentration is 20 mM . Compounds are pre-dispensed into 384 plates and stored at -20 C until use.

Steps

Prepare Reagents

1.

PREPARE all of the reagents/buffers required for this experiment.

ABCDE
ReagentStock ConcentrationConcentration Loaded into CombiFinal ConcentrationUnits
MERS-Cov Mpro Enzyme (original stock)50700010050nM
20230221 MERS Mpro Enzyme47800010050nM
MERS Substrate7500001100550nM
Assay Buffer
HEPES (pH 7.3)402020mM
Sodium Chloride1005050mM
BSA100.10.1mg/mL
Triton X-100100.010.01% by volume
TCEP100011mM

For more information, please see the Materials sec

Prepare 384 Well Plate

2.

PRIME with Assay Buffer by Multi-Drop Combi Tube Dispensing Cassette by selecting the PRIME button on the Combi Dispenser until the tubes are filled completely.

2.1.

DISPENSE 10µL to Columns 1 and 23 of assay plate

  • Note: These will represent the inhibitor control columns (Contain: Substrate, Assay Buffer, DMSO, no experimental compounds )
2.2.

EMPTY Multi-Drop Combi Tube Dispensing Cassette (by selecting the EMPTY button on the Combi Dispenser until the tubes of the cassette are emptied).

  • Discard Assay Buffer discharged from the cassette.
3.

PRIME with 100nanomolar (nM) by Multi-Drop Combi Tube Dispensing Cassette by selecting the PRIME button on the Combi Dispenser until the tubes were filled completely.

  • Note: Be sure to cycle dispensing several times on a a clean plate lid (This confirms there are no bubbles in the Dispensing Cassette).
3.1.

DISPENSE 10µL 100nanomolar (nM) to Columns 2 through 22 and Column 24

Note:

  • 100nanomolar (nM) is two times the final concentration for the assay. It is diluted to be a final concentration of 50nanomolar (nM).
  • Column 2 and Column 24 are neutral control columns (Contain: Enzyme, Substrate, DMSO, no compounds)
3.2.

EMPTY Multi-Drop Combi Tube Dispensing Cassette (by selecting the EMPTY button on the Combi Dispenser until the tubes of the cassette are emptied.)

  • Discard the 100nanomolar (nM) discharged from the cassette.
4.

CENTRIFUGE 15000rpm plate to remove bubbles

5.

INCUBATE plate for 0h 15m 0s at Room temperature

⚠ Make sure the plate is protected from light!

6.

PRIME with Assay Buffer by Multi-Drop Combi Tube Dispensing Cassette by selecting the PRIME button on the Combi Dispenser until the tubes were filled completely. Then, EMPTY the Multi-Drop Combi Tube Dispensing Cassette.

7.

PRIME with 1100nanomolar (nM) by Multi-Drop Combi Tube Dispensing Cassette by selecting the PRIME button on the Combi Dispenser until the tubes were filled completely.

  • Note: Be sure to cycle dispensing several times on a a clean plate lid (This confirms there are no bubbles in the Dispensing Cassette).
8.

DISPENSE 10µL into Columns 1 through 24 (the full plate)

Note:

  • 1100nanomolar (nM) is two times the final concentration for the assay. It is diluted to be a final concentration of 50nanomolar (nM)
9.

CENTRIFUGE 15000rpm plate in plate centrifuge to remove bubbles

10.

INCUBATE plate for 1h 0m 0s at Room temperature

Make sure the plate is protected from light!

Recommended: Clean the Multi-Drop Combi Reagent Dispenser during this incubation step

Read Plate Fluorescence

11.

READ and RECORD the plate Relative fluorescence units (RFU) via the "MERS Protocol" on the PHERAstar FS Control Software.

  • Software is a standard Flourescence Assay set for Optimal excitation wavelength 485 nm, emission wavelength 528 nm, and a Gain of 300.

Equipment

ValueLabel
PHERAstar FSNAME
Microplate readerTYPE
BMG LABTECHBRAND
0471B0001ASKU

Citation
Gain 300 should yield ~10,000 RFU in full reaction and ~6,000 RFU in Buffer Control

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