Cargando…

Biological Activities and Molecular Docking of Brassinosteroids 24-Norcholane Type Analogs

The quest and design of new brassinosteroids analogs is a matter of current interest. Herein, the effect of short alkyl side chains and the configuration at C22 on the growth-promoting activity of a series of new brassinosteroid 24-norcholan-type analogs have been evaluated by the rice leaf inclinat...

Descripción completa

Detalles Bibliográficos
Autores principales: Díaz, Katy, Espinoza, Luis, Carvajal, Rodrigo, Conde-González, Marcos, Niebla, Vladimir, Olea, Andrés F., Coll, Yamilet
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7084776/
https://www.ncbi.nlm.nih.gov/pubmed/32155857
http://dx.doi.org/10.3390/ijms21051832
_version_ 1783508800591888384
author Díaz, Katy
Espinoza, Luis
Carvajal, Rodrigo
Conde-González, Marcos
Niebla, Vladimir
Olea, Andrés F.
Coll, Yamilet
author_facet Díaz, Katy
Espinoza, Luis
Carvajal, Rodrigo
Conde-González, Marcos
Niebla, Vladimir
Olea, Andrés F.
Coll, Yamilet
author_sort Díaz, Katy
collection PubMed
description The quest and design of new brassinosteroids analogs is a matter of current interest. Herein, the effect of short alkyl side chains and the configuration at C22 on the growth-promoting activity of a series of new brassinosteroid 24-norcholan-type analogs have been evaluated by the rice leaf inclination test using brassinolide as positive control. The highest activities were found for triol 3 with a C22(S) configuration and monobenzoylated derivatives. A docking study of these compounds into the active site of the Brassinosteroid Insensitive 1(BRI1)–ligand–BRI1-Associated Receptor Kinase 1 (BAK1) complex was performed using AutoDock Vina, and protein–ligand contacts were analyzed using LigPlot(+). The results suggest that the hydrophobic interactions of ligands with the receptor BRI1(LRR) and hydrogen bonding with BAK1 in the complex are important for ligand recognition. For monobenzoylated derivatives, the absence of the hydrophobic end in the alkyl chain seems to be compensated by the benzoyl group. Thus, it would be interesting to determine if this result depends on the nature of the substituent group. Finally, mixtures of S/R triols 3/4 exhibit activities that are comparable or even better than those found for brassinolide. Thus, these compounds are potential candidates for application in agriculture to improve the growth and yield of plants against various types of biotic and abiotic stress.
format Online
Article
Text
id pubmed-7084776
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-70847762020-03-24 Biological Activities and Molecular Docking of Brassinosteroids 24-Norcholane Type Analogs Díaz, Katy Espinoza, Luis Carvajal, Rodrigo Conde-González, Marcos Niebla, Vladimir Olea, Andrés F. Coll, Yamilet Int J Mol Sci Article The quest and design of new brassinosteroids analogs is a matter of current interest. Herein, the effect of short alkyl side chains and the configuration at C22 on the growth-promoting activity of a series of new brassinosteroid 24-norcholan-type analogs have been evaluated by the rice leaf inclination test using brassinolide as positive control. The highest activities were found for triol 3 with a C22(S) configuration and monobenzoylated derivatives. A docking study of these compounds into the active site of the Brassinosteroid Insensitive 1(BRI1)–ligand–BRI1-Associated Receptor Kinase 1 (BAK1) complex was performed using AutoDock Vina, and protein–ligand contacts were analyzed using LigPlot(+). The results suggest that the hydrophobic interactions of ligands with the receptor BRI1(LRR) and hydrogen bonding with BAK1 in the complex are important for ligand recognition. For monobenzoylated derivatives, the absence of the hydrophobic end in the alkyl chain seems to be compensated by the benzoyl group. Thus, it would be interesting to determine if this result depends on the nature of the substituent group. Finally, mixtures of S/R triols 3/4 exhibit activities that are comparable or even better than those found for brassinolide. Thus, these compounds are potential candidates for application in agriculture to improve the growth and yield of plants against various types of biotic and abiotic stress. MDPI 2020-03-06 /pmc/articles/PMC7084776/ /pubmed/32155857 http://dx.doi.org/10.3390/ijms21051832 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Díaz, Katy
Espinoza, Luis
Carvajal, Rodrigo
Conde-González, Marcos
Niebla, Vladimir
Olea, Andrés F.
Coll, Yamilet
Biological Activities and Molecular Docking of Brassinosteroids 24-Norcholane Type Analogs
title Biological Activities and Molecular Docking of Brassinosteroids 24-Norcholane Type Analogs
title_full Biological Activities and Molecular Docking of Brassinosteroids 24-Norcholane Type Analogs
title_fullStr Biological Activities and Molecular Docking of Brassinosteroids 24-Norcholane Type Analogs
title_full_unstemmed Biological Activities and Molecular Docking of Brassinosteroids 24-Norcholane Type Analogs
title_short Biological Activities and Molecular Docking of Brassinosteroids 24-Norcholane Type Analogs
title_sort biological activities and molecular docking of brassinosteroids 24-norcholane type analogs
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7084776/
https://www.ncbi.nlm.nih.gov/pubmed/32155857
http://dx.doi.org/10.3390/ijms21051832
work_keys_str_mv AT diazkaty biologicalactivitiesandmoleculardockingofbrassinosteroids24norcholanetypeanalogs
AT espinozaluis biologicalactivitiesandmoleculardockingofbrassinosteroids24norcholanetypeanalogs
AT carvajalrodrigo biologicalactivitiesandmoleculardockingofbrassinosteroids24norcholanetypeanalogs
AT condegonzalezmarcos biologicalactivitiesandmoleculardockingofbrassinosteroids24norcholanetypeanalogs
AT nieblavladimir biologicalactivitiesandmoleculardockingofbrassinosteroids24norcholanetypeanalogs
AT oleaandresf biologicalactivitiesandmoleculardockingofbrassinosteroids24norcholanetypeanalogs
AT collyamilet biologicalactivitiesandmoleculardockingofbrassinosteroids24norcholanetypeanalogs