A rapid method for solubilization of chimeric human interferon regulatory factor-1 (IRF-1) protein in Escherichia coli
Interferon regulatory factor-1 (IRF-1) is a vertebrate transcription factor that plays significant roles in cell cycle regulation, anti-viral response, tumor suppression and immune response. High-level expression of recombinant IRF-1 at 37 °C leads to the formation of insoluble aggregates (insoluble...
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Veröffentlicht in: | Molecular biology reports 2021-03, Vol.48 (3), p.2307-2314 |
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Sprache: | eng |
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Zusammenfassung: | Interferon regulatory factor-1 (IRF-1) is a vertebrate transcription factor that plays significant roles in cell cycle regulation, anti-viral response, tumor suppression and immune response. High-level expression of recombinant IRF-1 at 37 °C leads to the formation of insoluble aggregates (insoluble fraction) in
Escherichia coli
(
E
.
coli
), which usually devoid of biological activity. In this study, we use chemical additives such as mannitol, proline,
l
-arginine and CTAB (cetyl trimethly ammonium bromide) at the recommended concentration during cell lysis to aid in solubility at 37 °C. The use of additives resulted in the increased solubility of the recombinant glutathione
S
-transferase-linked human IRF-1, with
l
-arginine being most effective. Here, we developed an efficient process for the manufacturing of soluble IRF-1 with the aid of minimizing the formation of degradation products and optimizing protein purification conditions. This result was further confirmed by western blot with anti-GST and anti-IRF-1 polyclonal antibodies. The functionality of GST-huIRF-1 was attained by elerophoretic mobility shift assay study as a clear band shifting showed with virus response element-Interferon beta (VRE-IFN
β)
promoter region. Taken together, the biological activity of purified GST-huIRF-1 was also optimized and confirmed by supershift assay concluded that GST-huIRF-1 interacts with the VRE motif of IFN
β
promoter that reflected to require for IFN
β
gene regulation. We describe a straightforward approach for the production of absolutely soluble and biologically active IRF-1 in
E
.
coli
. This method can be further used for the study of other recombinant proteins and this study will pave way for the analysis of IRF-1 function in vitro. |
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ISSN: | 0301-4851 1573-4978 |
DOI: | 10.1007/s11033-021-06260-w |