Inhibition of the morphological transition of Candida spp. by riparins I–IV

Author:

Queiroz da Silva Maria Lucilene1,Ferreira de Sousa Natália2,dos Santos Antonia Thassya Lucas1,de Sousa Gabriela Ribeiro3,Fonseca Victor Juno Alencar1,Douglas Melo Coutinho Henrique1ORCID,Barbosa Filho José Maria3,de Souza Ferrari Jailton4ORCID,Scotti Marcus Tullius2,Ribeiro‐Filho Jaime5,Martins de Lima João Paulo6,da Rocha João Batista Teixeira17,Bezerra Morais‐Braga Maria Flaviana8

Affiliation:

1. Departamento de Química Biológica Universidade Regional do Cariri (URCA) Crato Brazil

2. Laboratório de Quimioinformática, Departamento de Química Universidade Federal da Paraíba (UFPB) São João do Cariri Brazil

3. Departamento de Ciências da Saúde Universidade Federal da Paraiba (UFPB) São João do Cariri Brazil

4. Departamento de Química Universidade Federal da Paraíba (UFPB) São João do Cariri Brazil

5. Oswaldo Cruz Foundation (Fiocruz), Fiocruz Ceará Eusébio Brazil

6. CECAPE College Juazeiro do Norte Brazil

7. Departamento de Bioquímica e Biologia Molecular Universidade Federal de Santa Maria (UFSM) Santa Maria Brazil

8. Departamento de Ciências Biológica Universidade Regional do Cariri (URCA) Crato Brazil

Abstract

AbstractCandida spp. is an opportunistic pathogen capable of causing superficial to invasive infections. Morphological transition is one of the main virulence factors of this genus and, therefore, is an important variable to be considered in pharmacological interventions. Riparins I, II, III, and IV are alkamide‐type alkaloids extracted from the unripe fruit of Aniba riparia, whose remarkable pharmacological properties were previously demonstrated. This work aimed to evaluate in silico and in vitro the inhibitory effects of Riparins on the morphological transition of Candida albicans, Candida tropicalis, and Candida krusei. Molecular docking was applied to analyze the inhibitory effects of riparins against proteins such as N‐acetylglucosamine, CYP‐51, and protein kinase A (PKA) using the Ramachandran plot. The ligands were prepared by MarvinSketch and Spartan software version 14.0, and MolDock Score and Rerank Score were used to analyze the affinity of the compounds. In vitro analyses were performed by culturing the strains in humid chambers in the presence of riparins or fluconazole (FCZ). The morphology was observed through optical microscopy, and the size of the hyphae was determined using the ToupView software. In silico analysis demonstrated that all riparins are likely to interact with the molecular targets: GlcNAc (>50%), PKA (>60%), and CYP‐51 (>70%). Accordingly, in vitro analysis showed that these compounds significantly inhibited the morphological transition of all Candida strains. In conclusion, this study demonstrated that riparins inhibit Candida morphological transition and, therefore, can be used to overcome the pathogenicity of this genus.

Funder

Coordenação de Aperfeiçoamento de Pessoal de Nível Superior

Publisher

Wiley

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