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  4. New Brassinosteroid Analogs With 23,24-Dinorcholan Side Chain, And Benzoate Function At C-22: Synthesis, Assessment Of Bioactivity On Plant Growth, And Molecular Docking Study
 
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New Brassinosteroid Analogs With 23,24-Dinorcholan Side Chain, And Benzoate Function At C-22: Synthesis, Assessment Of Bioactivity On Plant Growth, And Molecular Docking Study

Journal
International Journal of Molecular Sciences
Date Issued
2023-12-28
Author(s)
Vanessa Aitken
Katy Diaz
Mauricio Soto
Andrés F. Olea
Cuellar, Mauricio  
Facultad de Farmacia  
Maria Nuñez
Luis Espinoza-Catalán
DOI
10.3390/ijms25010419
WoS ID
WOS:001140706300001
Abstract
The synthesis and biological evaluation of brassinosteroids (BRs) analogs with chemical modification in the side alkyl chain is a matter of current interest. Recently, a series of BR analogs with phenyl or benzoate groups in the alkyl chain have been reported. The effect of substitution in the aromatic ring on the biological activities of these new analogs has been evaluated, and the results suggest that the bioactivity is enhanced by substitution with an F atom. In this context, we have synthesized, characterized, and evaluated a series of new analogs of 23,24-bisnorcholenic type in which the benzoate group at the C-22 position is substituted with an F atom at “ortho or para” positions. Plant growth-promoting activities were evaluated by using the rice lamina inclination test and bean second internode biotest. The results obtained with both bioassays indicate that the compound with an F atom in the para position on the aromatic ring is the most active BR analog and in some cases is even more active than brassinolide. The docking study confirmed that compounds with an F atom adopt an orientation similar to that predicted for brassinolide, and the F atom in the “para” position generates an extra hydrogen bond in the predicted binding position.
Subjects

Biochemistry And Mole...

Chemistry, Multidisci...

Catalysis

Computer Science Appl...

Inorganic Chemistry

Medicine

Molecular Biology

Organic Chemistry

Physical And Theoreti...

Spectroscopy

OCDE Subjects

Natural Sciences::Oth...

Quartile (Date Issued)
Q2
License
acceso abierto
Open Science Path
https://creativecommons.org/licenses/by/4.0/

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