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2 D QSAR and docking of novel N-substitutedAryl amine derivatives as potential inhibitors of lumazine synthase

Bhatia, Manish S. et al · SEDICI UNLP · 2010

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Fungi play a predominant role in microbial infections with serious health risk to immunocompromised individuals, including AIDS, cancer, diabetics, newborns and elderly patients. Fungi specific riboflavin metabolism involves lumazine synthase catalyzed synthesis of 6,7-dimethyl-8-D-ribityl lumazine which is converted to riboflavin by a riboflavin synthase. Therefore lumazine synthase has been targeted for design of newer antifungal agents. 32 novel N-substituted aryl amine derivatives have been designed, synthesized, characterized and screened as antifungals. Molecular modelling and docking studies with fungal lumazine synthase using the 32 inhibitors have elucidated unique binding areas within the active site of the enzyme. Amongst the selected 2-D QSAR descriptors, chiV3Cluster and Most +ve Potential show positive correlation with antifungal activity while XX Polarizability, XY Polarizability, Heat of Formation and Quadruple 3 show negative correlation with antifungal activity. Colegio de Farmacéuticos de la Provincia de Buenos Aires

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APA 7

Bhatia, M. S. E. A. (2010). 2 D QSAR and docking of novel N-substitutedAryl amine derivatives as potential inhibitors of lumazine synthase. http://sedici.unlp.edu.ar/handle/10915/7919

MLA

Bhatia, Manish S. et al. "2 D QSAR and docking of novel N-substitutedAryl amine derivatives as potential inhibitors of lumazine synthase." 2010. http://sedici.unlp.edu.ar/handle/10915/7919.

Chicago

Bhatia, Manish S. et al. 2010. "2 D QSAR and docking of novel N-substitutedAryl amine derivatives as potential inhibitors of lumazine synthase.". http://sedici.unlp.edu.ar/handle/10915/7919.

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Bhatia, M. S. E. A. 2010, 2 D QSAR and docking of novel N-substitutedAryl amine derivatives as potential inhibitors of lumazine synthase, SEDICI UNLP, available at: http://sedici.unlp.edu.ar/handle/10915/7919 [Accessed 28 Jun. 2026].

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Título
2 D QSAR and docking of novel N-substitutedAryl amine derivatives as potential inhibitors of lumazine synthase
Autor / colaboradores
Bhatia, Manish S. et al
Editorial
SEDICI UNLP
Año de publicación
2010
Idioma
en

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