The exploitation of methionine-depleting enzyme methionine γ-lyase (MGL) is a promising strategy against specific cancer cells that are strongly dependent on methionine. To identify MGL from different sources with high catalytic activity and efficient anticancer action, we have expressed and characterized MGL from Clostridium novyi and compared its catalytic efficiency with the previously studied MGL from Citrobacter freundii. The purified recombinant MGL exhibits kcat and kcat/Km for methionine γ-elimination reaction that are 2.4- and 1.36-fold higher than C. freundii enzyme, respectively, whereas absorption, fluorescence, and circular dichroism spectra are very similar, as expected on the basis of 87% sequence identity and high conservation of active site residues. The reactivity of cysteine residues with DTNB and iodoacetamide was investigated as well as the impact of their chemical modification on catalytic activity. This information is relevant because for increasing bioavailability and reducing immunogenity, MGL should be decorated with polyethylene glycol (PEG). It was found that Cys118 is a faster reacting residue, which results in a significant decrease in the γ-elimination activity. Thus, the protection of Cys118 before conjugation with cysteine-reacting PEG represents a valuable strategy to preserve MGL activity. The anticancer action of C. novyi MGL, evaluated in vitro against prostate (PC-3), chronic myelogenous leucemia (K562), and breast (MDA-MB-231 and MCF7) cancer cells, exhibits IC50 of 1.3 U mL−1, 4.4 U mL−1, 1.2 U mL−1, and 3.4 U mL−1, respectively. A higher cytotoxicity of C. novyi MGL was found against cancer cells with respect to C. freundii MGL, with the exception of PC-3, where a lower cytotoxicity was observed. © 2017 IUBMB Life, 69(9):668–676, 2017. © 2017 International Union of Biochemistry and Molecular Biology

Gene cloning, characterization, and cytotoxic activity of methionine ?-lyase from Clostridium novyi

Gabellieri E;Cioni P;
2017

Abstract

The exploitation of methionine-depleting enzyme methionine γ-lyase (MGL) is a promising strategy against specific cancer cells that are strongly dependent on methionine. To identify MGL from different sources with high catalytic activity and efficient anticancer action, we have expressed and characterized MGL from Clostridium novyi and compared its catalytic efficiency with the previously studied MGL from Citrobacter freundii. The purified recombinant MGL exhibits kcat and kcat/Km for methionine γ-elimination reaction that are 2.4- and 1.36-fold higher than C. freundii enzyme, respectively, whereas absorption, fluorescence, and circular dichroism spectra are very similar, as expected on the basis of 87% sequence identity and high conservation of active site residues. The reactivity of cysteine residues with DTNB and iodoacetamide was investigated as well as the impact of their chemical modification on catalytic activity. This information is relevant because for increasing bioavailability and reducing immunogenity, MGL should be decorated with polyethylene glycol (PEG). It was found that Cys118 is a faster reacting residue, which results in a significant decrease in the γ-elimination activity. Thus, the protection of Cys118 before conjugation with cysteine-reacting PEG represents a valuable strategy to preserve MGL activity. The anticancer action of C. novyi MGL, evaluated in vitro against prostate (PC-3), chronic myelogenous leucemia (K562), and breast (MDA-MB-231 and MCF7) cancer cells, exhibits IC50 of 1.3 U mL−1, 4.4 U mL−1, 1.2 U mL−1, and 3.4 U mL−1, respectively. A higher cytotoxicity of C. novyi MGL was found against cancer cells with respect to C. freundii MGL, with the exception of PC-3, where a lower cytotoxicity was observed. © 2017 IUBMB Life, 69(9):668–676, 2017. © 2017 International Union of Biochemistry and Molecular Biology
2017
Istituto di Biofisica - IBF
asparaginase
bacterial enzyme
cytotoxic agent
methionine gamma lyase
antineoplastic agent
L-methionine gamma-lyase
lyase
recombinant protein
antineoplastic activity
Article
bacterial strain
catalytic efficiency
chemical modification
circular dichroism
Citrobacter freundii
Clostridium novyi
controlled study
dissociation constant
drug bioavailability
drug structure
elimination reaction
EMBL Nucleotide Sequence Database
enzyme analysis
enzyme inactivation
fluorescence spectroscopy
human
human cell
hydrogen bond
IC50
in vitro study
Michaelis Menten kinetics
molecular cloning
nonhuman
nucleotide sequence
protein expression
sequence analysis
steady state
tautomer
cell proliferation
chemistry
Clostridium
drug effect
enzymology
genetics
molecular cloning
neoplasm
pathology
tumor cell line
Antineoplastic Agents
Carbon-Sulfur Lyases
Cell Line
Tumor
Cell Proliferation
Cloning
Molecular
Clostridium
Humans
Neoplasms
Recombinant Proteins
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/420989
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