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Synthesis and Biological Activity of New Brassinosteroid Analogs of Type 24-Nor-5β-Cholane and 23-Benzoate Function in the Side Chain

Brassinosteroids are polyhydroxysteroids that are involved in different plants’ biological functions, such as growth, development and resistance to biotic and external stresses. Because of its low abundance in plants, much effort has been dedicated to the synthesis and characterization of brassinost...

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Autores principales: Soto, Nitza, Ferrer, Karoll, Díaz, Katy, González, César, Taborga, Lautaro, Olea, Andrés F., Carrasco, Héctor, Espinoza, Luis
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8124218/
https://www.ncbi.nlm.nih.gov/pubmed/34062717
http://dx.doi.org/10.3390/ijms22094808
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author Soto, Nitza
Ferrer, Karoll
Díaz, Katy
González, César
Taborga, Lautaro
Olea, Andrés F.
Carrasco, Héctor
Espinoza, Luis
author_facet Soto, Nitza
Ferrer, Karoll
Díaz, Katy
González, César
Taborga, Lautaro
Olea, Andrés F.
Carrasco, Héctor
Espinoza, Luis
author_sort Soto, Nitza
collection PubMed
description Brassinosteroids are polyhydroxysteroids that are involved in different plants’ biological functions, such as growth, development and resistance to biotic and external stresses. Because of its low abundance in plants, much effort has been dedicated to the synthesis and characterization of brassinosteroids analogs. Herein, we report the synthesis of brassinosteroid 24-nor-5β-cholane type analogs with 23-benzoate function and 22,23-benzoate groups. The synthesis was accomplished with high reaction yields in a four-step synthesis route and using hyodeoxycholic acid as starting material. All synthesized analogs were tested using the rice lamina inclination test to assess their growth-promoting activity and compare it with those obtained for brassinolide, which was used as a positive control. The results indicate that the diasteroisomeric mixture of monobenzoylated derivatives exhibit the highest activity at the lowest tested concentrations (1 × 10(−8) and 1 × 10(−7) M), being even more active than brassinolide. Therefore, a simple synthetic procedure with high reaction yields that use a very accessible starting material provides brassinosteroid synthetic analogs with promising effects on plant growth. This exploratory study suggests that brassinosteroid analogs with similar chemical structures could be a good alternative to natural brassinosteroids.
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spelling pubmed-81242182021-05-17 Synthesis and Biological Activity of New Brassinosteroid Analogs of Type 24-Nor-5β-Cholane and 23-Benzoate Function in the Side Chain Soto, Nitza Ferrer, Karoll Díaz, Katy González, César Taborga, Lautaro Olea, Andrés F. Carrasco, Héctor Espinoza, Luis Int J Mol Sci Article Brassinosteroids are polyhydroxysteroids that are involved in different plants’ biological functions, such as growth, development and resistance to biotic and external stresses. Because of its low abundance in plants, much effort has been dedicated to the synthesis and characterization of brassinosteroids analogs. Herein, we report the synthesis of brassinosteroid 24-nor-5β-cholane type analogs with 23-benzoate function and 22,23-benzoate groups. The synthesis was accomplished with high reaction yields in a four-step synthesis route and using hyodeoxycholic acid as starting material. All synthesized analogs were tested using the rice lamina inclination test to assess their growth-promoting activity and compare it with those obtained for brassinolide, which was used as a positive control. The results indicate that the diasteroisomeric mixture of monobenzoylated derivatives exhibit the highest activity at the lowest tested concentrations (1 × 10(−8) and 1 × 10(−7) M), being even more active than brassinolide. Therefore, a simple synthetic procedure with high reaction yields that use a very accessible starting material provides brassinosteroid synthetic analogs with promising effects on plant growth. This exploratory study suggests that brassinosteroid analogs with similar chemical structures could be a good alternative to natural brassinosteroids. MDPI 2021-05-01 /pmc/articles/PMC8124218/ /pubmed/34062717 http://dx.doi.org/10.3390/ijms22094808 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/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 (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Soto, Nitza
Ferrer, Karoll
Díaz, Katy
González, César
Taborga, Lautaro
Olea, Andrés F.
Carrasco, Héctor
Espinoza, Luis
Synthesis and Biological Activity of New Brassinosteroid Analogs of Type 24-Nor-5β-Cholane and 23-Benzoate Function in the Side Chain
title Synthesis and Biological Activity of New Brassinosteroid Analogs of Type 24-Nor-5β-Cholane and 23-Benzoate Function in the Side Chain
title_full Synthesis and Biological Activity of New Brassinosteroid Analogs of Type 24-Nor-5β-Cholane and 23-Benzoate Function in the Side Chain
title_fullStr Synthesis and Biological Activity of New Brassinosteroid Analogs of Type 24-Nor-5β-Cholane and 23-Benzoate Function in the Side Chain
title_full_unstemmed Synthesis and Biological Activity of New Brassinosteroid Analogs of Type 24-Nor-5β-Cholane and 23-Benzoate Function in the Side Chain
title_short Synthesis and Biological Activity of New Brassinosteroid Analogs of Type 24-Nor-5β-Cholane and 23-Benzoate Function in the Side Chain
title_sort synthesis and biological activity of new brassinosteroid analogs of type 24-nor-5β-cholane and 23-benzoate function in the side chain
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8124218/
https://www.ncbi.nlm.nih.gov/pubmed/34062717
http://dx.doi.org/10.3390/ijms22094808
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