Alkaloids of Abuta panurensis Eichler: In silico and in vitro study of acetylcholinesterase inhibition, cytotoxic and immunomodulatory activities.

Natural products obtained from species of the genus Abuta (Menispermaceae) are known as ethnobotanicals that are attracting increasing attention due to a wide range of their pharmacological properties. In this study, the alkaloids stepharine and 5-N-methylmaytenine were first isolated from branches...

Full description

Bibliographic Details
Main Authors: Rochelly da Silva Mesquita, Andrii Kyrylchuk, Regiane Costa de Oliveira, Ingrity Suelen Costa Sá, Gabriel Coutinho Borges Camargo, Gemilson Soares Pontes, Felipe Moura Araújo da Silva, Rita de Cássia Saraiva Nunomura, Andriy Grafov
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2020-01-01
Series:PLoS ONE
Online Access:https://doi.org/10.1371/journal.pone.0239364
id doaj-d3cb14cdb8b540f8b7b79d91ac0afefb
record_format Article
spelling doaj-d3cb14cdb8b540f8b7b79d91ac0afefb2021-03-03T22:06:35ZengPublic Library of Science (PLoS)PLoS ONE1932-62032020-01-01159e023936410.1371/journal.pone.0239364Alkaloids of Abuta panurensis Eichler: In silico and in vitro study of acetylcholinesterase inhibition, cytotoxic and immunomodulatory activities.Rochelly da Silva MesquitaAndrii KyrylchukRegiane Costa de OliveiraIngrity Suelen Costa SáGabriel Coutinho Borges CamargoGemilson Soares PontesFelipe Moura Araújo da SilvaRita de Cássia Saraiva NunomuraAndriy GrafovNatural products obtained from species of the genus Abuta (Menispermaceae) are known as ethnobotanicals that are attracting increasing attention due to a wide range of their pharmacological properties. In this study, the alkaloids stepharine and 5-N-methylmaytenine were first isolated from branches of Abuta panurensis Eichler, an endemic species from the Amazonian rainforest. Structure of the compounds was elucidated by a combination of 1D and 2D NMR spectroscopic and MS and HRMS spectrometric techniques. Interaction of the above-mentioned alkaloids with acetylcholinesterase enzyme and interleukins IL-6 and IL-8 was investigated in silico by molecular docking. The molecules under investigation were able to bind effectively with the active sites of the AChE enzyme, IL-6, and IL-8 showing affinity towards the proteins. Along with the theoretical study, acetylcholinesterase enzyme inhibition, cytotoxic, and immunomodulatory activity of the compounds were assessed by in vitro assays. The data obtained in silico corroborate the results of AChE enzyme inhibition, the IC50 values of 61.24μM for stepharine and 19.55μM for 5-N-methylmaytenine were found. The compounds showed cytotoxic activity against two tumor cell lines (K562 and U937) with IC50 values ranging from 11.77 μM to 28.48 μM. The in vitro assays revealed that both alkaloids were non-toxic to Vero and human PBMC cells. As for the immunomodulatory activity, both compounds inhibited the production of IL-6 at similar levels. Stepharine inhibited considerably the production of IL-8 in comparison to 5-N-methylmaytenine, which showed a dose dependent action (inhibitory at the IC50 dose, and stimulatory at the twofold IC50 one). Such a behavior may possibly be explained by different binding modes of the alkaloids to the interleukin structural fragments. Occurrence of the polyamine alkaloid 5-N-methylmaytenine was reported for the first time for the Menispermaceae family, as well as the presence of stepharine in A. panurensis.https://doi.org/10.1371/journal.pone.0239364
collection DOAJ
language English
format Article
sources DOAJ
author Rochelly da Silva Mesquita
Andrii Kyrylchuk
Regiane Costa de Oliveira
Ingrity Suelen Costa Sá
Gabriel Coutinho Borges Camargo
Gemilson Soares Pontes
Felipe Moura Araújo da Silva
Rita de Cássia Saraiva Nunomura
Andriy Grafov
spellingShingle Rochelly da Silva Mesquita
Andrii Kyrylchuk
Regiane Costa de Oliveira
Ingrity Suelen Costa Sá
Gabriel Coutinho Borges Camargo
Gemilson Soares Pontes
Felipe Moura Araújo da Silva
Rita de Cássia Saraiva Nunomura
Andriy Grafov
Alkaloids of Abuta panurensis Eichler: In silico and in vitro study of acetylcholinesterase inhibition, cytotoxic and immunomodulatory activities.
PLoS ONE
author_facet Rochelly da Silva Mesquita
Andrii Kyrylchuk
Regiane Costa de Oliveira
Ingrity Suelen Costa Sá
Gabriel Coutinho Borges Camargo
Gemilson Soares Pontes
Felipe Moura Araújo da Silva
Rita de Cássia Saraiva Nunomura
Andriy Grafov
author_sort Rochelly da Silva Mesquita
title Alkaloids of Abuta panurensis Eichler: In silico and in vitro study of acetylcholinesterase inhibition, cytotoxic and immunomodulatory activities.
title_short Alkaloids of Abuta panurensis Eichler: In silico and in vitro study of acetylcholinesterase inhibition, cytotoxic and immunomodulatory activities.
title_full Alkaloids of Abuta panurensis Eichler: In silico and in vitro study of acetylcholinesterase inhibition, cytotoxic and immunomodulatory activities.
title_fullStr Alkaloids of Abuta panurensis Eichler: In silico and in vitro study of acetylcholinesterase inhibition, cytotoxic and immunomodulatory activities.
title_full_unstemmed Alkaloids of Abuta panurensis Eichler: In silico and in vitro study of acetylcholinesterase inhibition, cytotoxic and immunomodulatory activities.
title_sort alkaloids of abuta panurensis eichler: in silico and in vitro study of acetylcholinesterase inhibition, cytotoxic and immunomodulatory activities.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2020-01-01
description Natural products obtained from species of the genus Abuta (Menispermaceae) are known as ethnobotanicals that are attracting increasing attention due to a wide range of their pharmacological properties. In this study, the alkaloids stepharine and 5-N-methylmaytenine were first isolated from branches of Abuta panurensis Eichler, an endemic species from the Amazonian rainforest. Structure of the compounds was elucidated by a combination of 1D and 2D NMR spectroscopic and MS and HRMS spectrometric techniques. Interaction of the above-mentioned alkaloids with acetylcholinesterase enzyme and interleukins IL-6 and IL-8 was investigated in silico by molecular docking. The molecules under investigation were able to bind effectively with the active sites of the AChE enzyme, IL-6, and IL-8 showing affinity towards the proteins. Along with the theoretical study, acetylcholinesterase enzyme inhibition, cytotoxic, and immunomodulatory activity of the compounds were assessed by in vitro assays. The data obtained in silico corroborate the results of AChE enzyme inhibition, the IC50 values of 61.24μM for stepharine and 19.55μM for 5-N-methylmaytenine were found. The compounds showed cytotoxic activity against two tumor cell lines (K562 and U937) with IC50 values ranging from 11.77 μM to 28.48 μM. The in vitro assays revealed that both alkaloids were non-toxic to Vero and human PBMC cells. As for the immunomodulatory activity, both compounds inhibited the production of IL-6 at similar levels. Stepharine inhibited considerably the production of IL-8 in comparison to 5-N-methylmaytenine, which showed a dose dependent action (inhibitory at the IC50 dose, and stimulatory at the twofold IC50 one). Such a behavior may possibly be explained by different binding modes of the alkaloids to the interleukin structural fragments. Occurrence of the polyamine alkaloid 5-N-methylmaytenine was reported for the first time for the Menispermaceae family, as well as the presence of stepharine in A. panurensis.
url https://doi.org/10.1371/journal.pone.0239364
work_keys_str_mv AT rochellydasilvamesquita alkaloidsofabutapanurensiseichlerinsilicoandinvitrostudyofacetylcholinesteraseinhibitioncytotoxicandimmunomodulatoryactivities
AT andriikyrylchuk alkaloidsofabutapanurensiseichlerinsilicoandinvitrostudyofacetylcholinesteraseinhibitioncytotoxicandimmunomodulatoryactivities
AT regianecostadeoliveira alkaloidsofabutapanurensiseichlerinsilicoandinvitrostudyofacetylcholinesteraseinhibitioncytotoxicandimmunomodulatoryactivities
AT ingritysuelencostasa alkaloidsofabutapanurensiseichlerinsilicoandinvitrostudyofacetylcholinesteraseinhibitioncytotoxicandimmunomodulatoryactivities
AT gabrielcoutinhoborgescamargo alkaloidsofabutapanurensiseichlerinsilicoandinvitrostudyofacetylcholinesteraseinhibitioncytotoxicandimmunomodulatoryactivities
AT gemilsonsoarespontes alkaloidsofabutapanurensiseichlerinsilicoandinvitrostudyofacetylcholinesteraseinhibitioncytotoxicandimmunomodulatoryactivities
AT felipemouraaraujodasilva alkaloidsofabutapanurensiseichlerinsilicoandinvitrostudyofacetylcholinesteraseinhibitioncytotoxicandimmunomodulatoryactivities
AT ritadecassiasaraivanunomura alkaloidsofabutapanurensiseichlerinsilicoandinvitrostudyofacetylcholinesteraseinhibitioncytotoxicandimmunomodulatoryactivities
AT andriygrafov alkaloidsofabutapanurensiseichlerinsilicoandinvitrostudyofacetylcholinesteraseinhibitioncytotoxicandimmunomodulatoryactivities
_version_ 1714813396412530688