Rational design of a new variant of Reteplase with optimized physicochemical profile and large-scale production in Escherichia coli

(2022) Rational design of a new variant of Reteplase with optimized physicochemical profile and large-scale production in Escherichia coli. WORLD JOURNAL OF MICROBIOLOGY & BIOTECHNOLOGY. ISSN 0959-3993 1573-0972 J9 - WORLD J MICROB BIOT

Full text not available from this repository.

Abstract

Structural engineering of the recombinant thrombolytic drug, Reteplase, and its cost-effective production are important goals in the pharmaceutical industry. In this study, a single-point mutant of the protein was rationally designed and evaluated in terms of physicochemical characteristics, enzymatic activity, as well as large-scale production settings. An accurate homology model of Reteplase was used as the input to appropriate tools to identify the aggregation-prone sites, while considering the structural stability. Selected variants underwent extensive molecular dynamic simulations (total 540 ns) to assess their solvation profile and their thermal stability. The Reteplase-fibrin interaction was investigated by docking. The best variant was expressed in E. coli, and Box-Behnken design was used through response surface methodology to optimize its expression conditions. M72R mutant demonstrated appropriate stability, enhanced enzymatic activity (p < 0.05), and strengthened binding to fibrin, compared to the wild type. The optimal conditions for the variant's production in a bioreactor was shown to be 37 oC, induction with 0.5 mM IPTG, for 2 h of incubation. Under these conditions, the final amount of the produced enzyme was increased by about 23 mg/L compared to the wild type, with an increase in the enzymatic activity by about 2 IU/mL. This study thus offered a new Reteplase variant with nearly all favorable properties, except solubility. The impact of temperature and incubation time on its large-scale production were underlined as well.

Item Type: Article
Keywords: Expression optimization Escherichia coli Molecular dynamic simulation Rational design Reteplase Response surface methodology RESPONSE-SURFACE METHODOLOGY PROTEIN STABILITY WEB-SERVER EXPRESSION SOLUBILITY ELECTROSTATICS TEMPERATURE MUTATIONS TOOL
Journal or Publication Title: WORLD JOURNAL OF MICROBIOLOGY & BIOTECHNOLOGY
Journal Index: ISI
Volume: 38
Number: 2
Identification Number: https://doi.org/10.1007/s11274-021-03204-1
ISSN: 0959-3993 1573-0972 J9 - WORLD J MICROB BIOT
Depositing User: Zahra Otroj
URI: http://eprints.mui.ac.ir/id/eprint/15919

Actions (login required)

View Item View Item