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PLoS One ; 13(7): e0197643, 2018.
Article in English | MEDLINE | ID: mdl-30052638

ABSTRACT

L-Asparaginase is an enzyme successfully being used in the treatment of acute lymphoblastic leukemia, acute myeloid leukemia, and non-Hodgkin's lymphoma. However, some disadvantages still limit its full application potential, e.g., allergic reactions, pancreatitis, and blood clotting impairment. Therefore, much effort has been directed at improving its performance. A popular strategy is to randomly conjugate L-asparaginase with mono-methoxy polyethylene glycol, which became a commercial FDA approved formulation widely used in recent years. To improve this formulation by PEGylation, herein we performed cysteine-directed conjugation of the L-asparaginase subunits to prevent dissociation-induced loss of activity. The recombinant cysteine conjugation sites were introduced by mutagenesis at surface-exposed positions on the protein to avoid affecting the catalytic activity. Three conjugates were obtained using different linear PEGs of 1000, 2000, and 5000 g/mol, with physical properties ranging from a semi-solid gel to a fully soluble state. The soluble-conjugate exhibited higher catalytic activity than the non-conjugated mutant, and the same activity than the native enzyme. The cysteine-directed crosslinking of the L-asparaginase subunits produced a higher molecular weight conjugate compared to the native tetrameric enzyme. This strategy might improve L-asparaginase efficiency for leukemia treatment by reducing glomerular filtration due to the increase in hydrodynamic size thus extending half-live, while at the same time retaining full catalytic activity.


Subject(s)
Antineoplastic Agents/chemistry , Asparaginase/chemistry , Asparagine/chemistry , Cysteine/chemistry , Glycoconjugates/chemistry , Polyethylene Glycols/chemistry , Antineoplastic Agents/metabolism , Asparaginase/genetics , Asparaginase/metabolism , Asparagine/metabolism , Binding Sites , Biocatalysis , Cross-Linking Reagents/chemistry , Gene Expression , Glycoconjugates/genetics , Glycoconjugates/metabolism , Humans , Kinetics , Maleimides/chemistry , Models, Molecular , Mutagenesis, Site-Directed , Protein Binding , Protein Conformation, alpha-Helical , Protein Conformation, beta-Strand , Protein Interaction Domains and Motifs , Protein Multimerization , Recombinant Proteins/chemistry , Recombinant Proteins/genetics , Recombinant Proteins/metabolism , Solubility , Substrate Specificity , Sulfhydryl Compounds/chemistry
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