Purification of active recombinant human histone deacetylase 1 (HDAC1) overexpressed in Escherichia coli

Objective We attempted to overexpress Human Histone Deacetylase 1 (HDAC1) in Escherichia coli . Results A synthetic gene coding for HDAC1, and optimised for E. coli codon usage, was cloned into pBADHisB, generating pBAD-rHDAC1. This construct was used to transform E. coli TOP10, and the target prote...

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Veröffentlicht in:Biotechnology letters 2018-10, Vol.40 (9-10), p.1355-1363
Hauptverfasser: Stefan, Alessandra, Calonghi, Natalia, Schipani, Fabrizio, Dal Piaz, Fabrizio, Sartor, Giorgio, Hochkoeppler, Alejandro
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Sprache:eng
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Zusammenfassung:Objective We attempted to overexpress Human Histone Deacetylase 1 (HDAC1) in Escherichia coli . Results A synthetic gene coding for HDAC1, and optimised for E. coli codon usage, was cloned into pBADHisB, generating pBAD-rHDAC1. This construct was used to transform E. coli TOP10, and the target protein was overexpressed and partially purified. According to its elution volume from a Superdex 200 column, the partially purified rHDAC1 was obtained in aggregated form, i.e., as an octamer. The dissociation of octameric HDAC1 was tested using several agents, among which sodium dodecyl sulfate was competent in partially dissociating rHDAC1 aggregates. When the enzyme activity was tested in vitro using 3 H-acetyl-labelled histones both protein samples, aggregated and dissociated, were active. Hence, our results suggest that E. coli represents an alternative system for the production of the recombinant HDAC1. Conclusions We described a procedure for the overexpression in E. coli of recombinant HDAC1, the purification of which in active form can be successfully performed, although yielding an octameric aggregate.
ISSN:0141-5492
1573-6776
DOI:10.1007/s10529-018-2585-5