Daidzein-directed methionine γ-lyase in enzyme prodrug therapy against breast cancer

Thiosulfinates in situ formed by “pharmacological pair” C115H methionine γ-lyase/S-(allyl/alkyl)-l-cysteine sulfoxides possess cytotoxic activity against various malignant cell lines. To investigate in vivo antitumor activity of thiosulfinates generated directly at the surface of tumor cells, a chemical conjugate between Clostridium novyi C115H methionine γ-lyase (C115H MGL) and isoflavone daidzein was prepared. The binding of conjugate (C115H-Dz) to various breast cancer cell lines was demonstrated, as well as its cytotoxicity in the presence of S-(allyl/alkyl)-l-cysteine sulfoxides. The most promising among thiosulfinates was dipropyl thiosulfinate (IC50 < 0.53 μM). The pharmacokinetic parameters of C115H MGL and C115H-Dz were obtained. Plasma half-lives of the enzyme and conjugated enzyme were 4.4 and 7.2 h, respectively. In vivo antitumor effect of pharmacological pairs on SKBR-3 xenografts was demonstrated. Treatment of tumor-bearing mice with a pair of C115H-Dz/propiin inhibited tumor growth by 85%.

Authors
Morozova E.1 , Abo Qoura L. 2 , Anufrieva N.1 , Koval V.1 , Lesnova E.3 , Kushch A.3 , Kulikova V.1 , Revtovich S.1 , Pokrovsky V.S. 2, 4 , Demidkina T.1
Journal
Publisher
Elsevier B.V.
Language
English
Pages
177-183
Status
Published
Volume
201
Year
2022
Organizations
  • 1 Engelhardt Institute of Molecular Biology of the Russian Academy of Sciences
  • 2 Department of Biochemistry, RUDN University
  • 3 Gamaleya National Research Center of Epidemiology and Microbiology
  • 4 N.N. Blokhin National Medical Research Center of Oncology
Keywords
Methionine γ-lyase; Enzyme prodrug therapy; Targeted delivery; Thiosulfinates; Breast carcinoma; Xenografts; Daidzein
Date of creation
20.01.2023
Date of change
20.01.2023
Short link
https://repository.rudn.ru/en/records/article/record/93235/
Share

Other records

Machulkin Aleksei E., Nimenko Ekaterina A., Zyk Nikolay U., Uspenskaia Anastasiia A., Smirnova Galina B., Khan Irina I., Pokrovsky Vadim S., Vaneev Alexander N., Timoshenko Roman V., Mamed-Nabizade Vugara V., Zavertkina Maria V., Erofeev Alexander, Gorelkin Petr, Majouga Alexander G., Zyk Nikolay V., Khazanova Elena S., Beloglazkina Elena K.
Molecules. MDPI AG. Vol. 27. 2022. 8795 p.