| Literature DB >> 33671806 |
Karoll Ferrer1,2,3, Katy Díaz1, Miroslav Kvasnica2,3, Andrés F Olea4, Mauricio Cuellar5, Luis Espinoza1.
Abstract
The metabolism of brassinosteroid leads to structural modifications in the ring skeleton or the side alkyl chain. The esterification and glycosylation at C-3 are the most common metabolic pathways, and it has been suggested that conjugate brassinosteroids are less active or inactive. In this way, plants regulate the content of active brassinosteroids. In this work, the synthesis of brassinosteroid 24-norcholane type analogs conjugated at C-3 with benzoate groups, carrying electron donor and electron attractant substituents on the aromatic ring, is described. Additionally, their growth-promoting activities were evaluated using the Rice Lamina Inclination Test (RLIT) and compared with that exhibited by brassinolide (used as positive control) and non-conjugated analogs. The results indicate that at the lowest tested concentrations (10-8-10-7 M), all analogs conjugated at C-3 exhibit similar or higher activities than brassinolide, and the diasteroisomers with S configuration at C-22 are the more active ones. Increasing concentration (10-6 M) reduces the biological activities of analogs as compared to brassinolide.Entities:
Keywords: 24-norcholane; Rice Lamina Inclination Test; analogs; benzoate esters; brassinosteroids; conjugated in C-3; synthesis
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Year: 2021 PMID: 33671806 PMCID: PMC7927124 DOI: 10.3390/molecules26041173
Source DB: PubMed Journal: Molecules ISSN: 1420-3049 Impact factor: 4.411