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Distinct Peculiarities of In Planta Synthesis of Isoprenoid and Aromatic Cytokinins

The biosynthesis of aromatic cytokinins in planta, unlike isoprenoid cytokinins, is still unknown. To compare the final steps of biosynthesis pathways of aromatic and isoprenoid cytokinins, we synthesized a series of nucleoside derivatives of natural cytokinins starting from acyl-protected ribofuran...

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Autores principales: Oslovsky, Vladimir E., Savelieva, Ekaterina M., Drenichev, Mikhail S., Romanov, Georgy A., Mikhailov, Sergey N.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7022850/
https://www.ncbi.nlm.nih.gov/pubmed/31948077
http://dx.doi.org/10.3390/biom10010086
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author Oslovsky, Vladimir E.
Savelieva, Ekaterina M.
Drenichev, Mikhail S.
Romanov, Georgy A.
Mikhailov, Sergey N.
author_facet Oslovsky, Vladimir E.
Savelieva, Ekaterina M.
Drenichev, Mikhail S.
Romanov, Georgy A.
Mikhailov, Sergey N.
author_sort Oslovsky, Vladimir E.
collection PubMed
description The biosynthesis of aromatic cytokinins in planta, unlike isoprenoid cytokinins, is still unknown. To compare the final steps of biosynthesis pathways of aromatic and isoprenoid cytokinins, we synthesized a series of nucleoside derivatives of natural cytokinins starting from acyl-protected ribofuranosyl-, 2′-deoxyribofuranosyl- and 5′-deoxyribofuranosyladenine derivatives using stereoselective alkylation with further deblocking. Their cytokinin activity was determined in two bioassays based on model plants Arabidopsis thaliana and Amaranthus caudatus. Unlike active cytokinins-bases, cytokinin nucleosides lack the hormonal activity until the ribose moiety is removed. According to our experiments, ribo-, 2′-deoxyribo- and 5′-deoxyribo-derivatives of isoprenoid cytokinin N(6)-isopentenyladenine turned in planta into active cytokinins with clear hormonal activity. As for aromatic cytokinins, both 2′-deoxyribo- and 5′-deoxyribo-derivatives did not exhibit analogous activity in Arabidopsis. The 5′-deoxyribo-derivatives cannot be phosphorylated enzymatically in vivo; therefore, they cannot be “activated” by the direct LOG-mediated cleavage, largely occurring with cytokinin ribonucleotides in plant cells. The contrasting effects exerted by deoxyribonucleosides of isoprenoid (true hormonal activity) and aromatic (almost no activity) cytokinins indicate a significant difference in the biosynthesis of these compounds.
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spelling pubmed-70228502020-03-12 Distinct Peculiarities of In Planta Synthesis of Isoprenoid and Aromatic Cytokinins Oslovsky, Vladimir E. Savelieva, Ekaterina M. Drenichev, Mikhail S. Romanov, Georgy A. Mikhailov, Sergey N. Biomolecules Article The biosynthesis of aromatic cytokinins in planta, unlike isoprenoid cytokinins, is still unknown. To compare the final steps of biosynthesis pathways of aromatic and isoprenoid cytokinins, we synthesized a series of nucleoside derivatives of natural cytokinins starting from acyl-protected ribofuranosyl-, 2′-deoxyribofuranosyl- and 5′-deoxyribofuranosyladenine derivatives using stereoselective alkylation with further deblocking. Their cytokinin activity was determined in two bioassays based on model plants Arabidopsis thaliana and Amaranthus caudatus. Unlike active cytokinins-bases, cytokinin nucleosides lack the hormonal activity until the ribose moiety is removed. According to our experiments, ribo-, 2′-deoxyribo- and 5′-deoxyribo-derivatives of isoprenoid cytokinin N(6)-isopentenyladenine turned in planta into active cytokinins with clear hormonal activity. As for aromatic cytokinins, both 2′-deoxyribo- and 5′-deoxyribo-derivatives did not exhibit analogous activity in Arabidopsis. The 5′-deoxyribo-derivatives cannot be phosphorylated enzymatically in vivo; therefore, they cannot be “activated” by the direct LOG-mediated cleavage, largely occurring with cytokinin ribonucleotides in plant cells. The contrasting effects exerted by deoxyribonucleosides of isoprenoid (true hormonal activity) and aromatic (almost no activity) cytokinins indicate a significant difference in the biosynthesis of these compounds. MDPI 2020-01-05 /pmc/articles/PMC7022850/ /pubmed/31948077 http://dx.doi.org/10.3390/biom10010086 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
Oslovsky, Vladimir E.
Savelieva, Ekaterina M.
Drenichev, Mikhail S.
Romanov, Georgy A.
Mikhailov, Sergey N.
Distinct Peculiarities of In Planta Synthesis of Isoprenoid and Aromatic Cytokinins
title Distinct Peculiarities of In Planta Synthesis of Isoprenoid and Aromatic Cytokinins
title_full Distinct Peculiarities of In Planta Synthesis of Isoprenoid and Aromatic Cytokinins
title_fullStr Distinct Peculiarities of In Planta Synthesis of Isoprenoid and Aromatic Cytokinins
title_full_unstemmed Distinct Peculiarities of In Planta Synthesis of Isoprenoid and Aromatic Cytokinins
title_short Distinct Peculiarities of In Planta Synthesis of Isoprenoid and Aromatic Cytokinins
title_sort distinct peculiarities of in planta synthesis of isoprenoid and aromatic cytokinins
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7022850/
https://www.ncbi.nlm.nih.gov/pubmed/31948077
http://dx.doi.org/10.3390/biom10010086
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