蛋氨酸
生物化学
甲基化
乙硫氨酸
酶
生物
分子生物学
化学
氨基酸
基因
作者
D. Machover,Luigia Rossi,J. HAMELIN,Christophe Desterke,Emma Goldschmidt,Bernadette Chadefaux-Vekemans,Pascal Bonnarme,Pierre Briozzo,David Kopečný,Francesca Pierigè,Mauro Magnani,Rosella Mollicone,Farhad Haghighi-Rad,Yann Gaston‐Mathé,Julien Dairou,Claude Boucheix,Raphaël Saffroy
标识
DOI:10.1124/jpet.119.256537
摘要
Methionine deprivation induces growth arrest and death of cancer cells. To eliminate l-methionine we produced, purified, and characterized the recombinant pyridoxal 5′-phosphate (PLP)-dependent l-methionine γ-lyase (MGL) BL929 from the cheese-ripening Brevibacterium aurantiacum. Transformation of an Escherichia coli strain with the gene BL929 from B. aurantiacum optimized for E. coli expression led to production of the MGL-BL929. Elimination of l-methionine and cytotoxicity in vitro were assessed, and methylation-sensitive epigenetics was explored for changes resulting from exposure of cancer cells to the enzyme. A bioreactor was built by encapsulation of the protein in human erythrocytes to achieve sustained elimination of l-methionine in extracellular fluids. Catalysis was limited to α,γ-elimination of l-methionine and l-homocysteine. The enzyme had no activity on other sulfur-containing amino acids. Enzyme activity decreased in presence of serum albumin or plasma resulting from reduction of PLP availability. Elimination of l-methionine induced cytotoxicity on a vast panel of human cancer cell lines and spared normal cells. Exposure of colorectal carcinoma cells to the MGL-BL929 reduced methyl-CpG levels of hypermethylated gene promoters including that of CDKN2A, whose mRNA expression was increased, together with a decrease in global histone H3 dimethyl lysine 9. The MGL-erythrocyte bioreactor durably preserves enzyme activity in vitro and strongly eliminates l-methionine from medium.
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