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Fecha de publicación:
2022-11-01
Tipo:
Article
Número de artículo:
7262
Identificación:
SCOPUS_ID:85141629021
eID:
2-s2.0-85141629021
Nombre de la revista:
Molecules
Título del artículo:

Site-Directed Mutants of Parasporin PS2Aa1 with Enhanced Cytotoxic Activity in Colorectal Cancer Cell Lines

Parasporin 2 has cytotoxic effects against numerous colon cancer cell lines, making it a viable alternative to traditional treatments. However, its mechanism of action and receptors remain unknown. In this study, site-directed mutagenesis was used to obtain PS2Aa1 mutants with variation in domain I at positions 256 and 257. Variants 015, 002, 3-3, 3-35, and 3-45 presented G256A, G256E, G257A, G257V, and G257E substitutions, respectively. Cytotoxicity tests were performed for the cell viability of cell lines SW480, SW620, and CaCo-2. Mutants 3-3, 3-35, and 3-45 efficiently killed the cell lines. It was found that the activated forms of caspase-3 and PARP were in higher abundance as well as increased production of γH2AX when 3-35 was used to treat CaCo-2 and SW480. To assess possible membrane-binding receptors involved in the interaction, an APN receptor blocking assay showed reduced activity of some parasporins. Hence, we performed molecular docking and molecular dynamics simulations to analyze the stability of possible interactions and identify the residues that could be involved in the protein–protein interaction of PS2Aa1 and APN. We found that residues 256 and 257 facilitate the interaction. Parasporin 3-35 is promising because it has higher cytotoxicity than PS2Aa1.

Autor(es) UDES:
Suárez-Barrera M.O., Pinzón-Reyes E.H., Rondón Villarreal P., Alarcón-Aldana J.S., Rueda-Forero N.J.
Otros Autores:
Visser L.
Autor Principal:
Suárez-Barrera M.O.
Áreas del conocimiento:
Analytical Chemistry, Chemistry (miscellaneous), Molecular Medicine, Pharmaceutical Science, Drug Discovery, Physical and Theoretical Chemistry, Organic Chemistry
Acerca de la revista donde se publicó este artículo:

Molecules

Cuartil Q1
Ranking
7059
Tipo
Journal
eISSN
14203049
Región
Western Europe
País
Switzerland
Volumen
27
Cobertura
1996-2022
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