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Research Paper

Mechanistic and biological characterisation of novel N5-substituted paullones targeting the biosynthesis of trypanothione in Leishmania

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Pages 1345-1358 | Received 10 Apr 2020, Accepted 02 Jun 2020, Published online: 26 Jun 2020

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Diego Benítez, Jaime Franco, Florencia Sardi, Alejandro Leyva, Rosario Durán, Gahee Choi, Gyongseon Yang, Taehee Kim, Namyoul Kim, Jinyeong Heo, Kideok Kim, Honggun Lee, Inhee Choi, Constantin Radu, David Shum, Joo Hwan No & Marcelo A. Comini. (2022) Drug-like molecules with anti-trypanothione synthetase activity identified by high throughput screening. Journal of Enzyme Inhibition and Medicinal Chemistry 37:1, pages 912-929.
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Irina Ihnatenko, Marco J. Müller, Oliver C. F. Orban, Jens C. Lindhof, Diego Benítez, Cecilia Ortíz, Estefanía Dibello, Leonardo L. Seidl, Marcelo A. Comini & Conrad Kunick. (2023) The indole motif is essential for the antitrypanosomal activity of N5-substituted paullones. PLOS ONE 18:11, pages e0292946.
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Kaio M. Santiago-Silva, Priscila G. Camargo & Marcelle L.F. Bispo. (2023) Promising Molecular Targets Related to Polyamine Biosynthesis in Drug Discovery against Leishmaniasis. Medicinal Chemistry 19:1, pages 2-9.
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Trong-Nhat Phan, Kyuho Paul Park, Diego Benítez, Marcelo A. Comini, David Shum & Joo Hwan No. (2022) Discovery of novel Leishmania major trypanothione synthetase inhibitors by high-throughput screening. Biochemical and Biophysical Research Communications 637, pages 308-313.
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