Efficient production of fluorophore‐labeled CC chemokines for biophysical studies using recombinant enterokinase and recombinant sortase

Author:

Guan Wenyan1ORCID,Zhang Ning2,Bains Arjan3,Sadqi Mourad4ORCID,Dupureur Cynthia M.5,LiWang Patricia J.6ORCID

Affiliation:

1. Materials and Biomaterials Science and Engineering, University of California Merced Merced California USA

2. Qingdao Institute of Bioenergy and Bioprocess Technology Chinese Academy of Sciences Qingdao China

3. Chemistry and Biochemistry University of California Merced Merced California USA

4. Bioengineering CREST Center for Cellular and Biomolecular Machines University of California Merced Merced California USA

5. Department of Chemistry and Biochemistry University of Missouri St. Louis St. Louis Missouri USA

6. Molecular Cell Biology Health Sciences Research Institute, University of California Merced Merced California USA

Abstract

AbstractChemokines are important immune system proteins, many of which mediate inflammation due to their function to activate and cause chemotaxis of leukocytes. An important anti‐inflammatory strategy is therefore to bind and inhibit chemokines, which leads to the need for biophysical studies of chemokines as they bind various possible partners. Because a successful anti‐chemokine drug should bind at low concentrations, techniques such as fluorescence anisotropy that can provide nanomolar signal detection are required. To allow fluorescence experiments to be carried out on chemokines, a method is described for the production of fluorescently labeled chemokines. First, a fusion‐tagged chemokine is produced in Escherichia coli, then efficient cleavage of the N‐terminal fusion partner is carried out with lab‐produced enterokinase, followed by covalent modification with a fluorophore, mediated by the lab‐produced sortase enzyme. This overall process reduces the need for expensive commercial enzymatic reagents. Finally, we utilize the product, vMIP‐fluor, in binding studies with the chemokine binding protein vCCI, which has great potential as an anti‐inflammatory therapeutic, showing a binding constant for vCCI:vMIP‐fluor of 0.37 ± 0.006 nM. We also show how a single modified chemokine homolog (vMIP‐fluor) can be used in competition assays with other chemokines and we report a Kd for vCCI:CCL17 of 14 μM. This work demonstrates an efficient method of production and fluorescent labeling of chemokines for study across a broad range of concentrations.

Funder

Army Research Office

National Institutes of Health

Publisher

Wiley

Subject

Organic Chemistry,Biomaterials,Biochemistry,General Medicine,Biophysics

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