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1.
RSC Adv ; 11(4): 1992-1999, 2021 Jan 06.
Artículo en Inglés | MEDLINE | ID: mdl-35424152

RESUMEN

An efficient method of ureido linkage formation during epimerization-free one-pot synthesis of protected hypermodified N 6-threonylcarbamoyladenosine (t6A) and its 2-SMe analog (ms2t6A) was developed. The method is based on a Tf2O-mediated direct conversion of the N-Boc-protecting group of N-Boc-threonine into the isocyanate derivative, followed by reaction with the N 6 exo-amine function of the sugar protected nucleoside (yield 86-94%). Starting from 2',3',5'-tri-O-acetyl protected adenosine or 2-methylthioadenosine, the corresponding 3'-O-phosphoramidite monomers were obtained in 48% and 42% overall yield (5 step synthesis). In an analogous synthesis, using the 2'-O-(tert-butyldimethylsilyl)-3',5'-O-(di-tert-butylsilylene) protection system at the adenosine ribose moiety, the t6A-phosphoramidite monomer was obtained in a less laborious manner and in a remarkably better yield of 74%.

2.
Molecules ; 25(15)2020 Jul 23.
Artículo en Inglés | MEDLINE | ID: mdl-32717917

RESUMEN

The chemical synthesis of modified oligoribonucleotides represents a powerful approach to study the structure, stability, and biological activity of RNAs. Selected RNA modifications have been proven to enhance the drug-like properties of RNA oligomers providing the oligonucleotide-based therapeutic agents in the antisense and siRNA technologies. The important sites of RNA modification/functionalization are the nucleobase residues. Standard phosphoramidite RNA chemistry allows the site-specific incorporation of a large number of functional groups to the nucleobase structure if the building blocks are synthetically obtainable and stable under the conditions of oligonucleotide chemistry and work-up. Otherwise, the chemically modified RNAs are produced by post-synthetic oligoribonucleotide functionalization. This review highlights the post-synthetic RNA modification approach as a convenient and valuable method to introduce a wide variety of nucleobase modifications, including recently discovered native hypermodified functional groups, fluorescent dyes, photoreactive groups, disulfide crosslinks, and nitroxide spin labels.


Asunto(s)
Oligorribonucleótidos/síntesis química , Compuestos Organofosforados/química , ARN/química , Modelos Moleculares , Conformación de Ácido Nucleico , Oligorribonucleótidos/química , Estabilidad del ARN
3.
Chemistry ; 25(58): 13309-13317, 2019 Oct 17.
Artículo en Inglés | MEDLINE | ID: mdl-31328310

RESUMEN

The synthesis of the protected form of 2-methylthio-N6 -threonylcarbamoyl adenosine (ms2 t6 A) was developed starting from adenosine or guanosine by using the optimized carbamate method and, for the first time, an isocyanate route. The hypermodified nucleoside was subsequently transformed into the protected ms2 t6 A-phosphoramidite monomer and used in a large-scale synthesis of the precursor 17nt ms2 t6 A-oligonucleotide (the anticodon stem and loop fragment of tRNALys from T. brucei). Finally, stereochemically secure ms2 t6 A→ms2 ct6 A cyclization at the oligonucleotide level efficiently afforded a tRNA fragment bearing the ms2 ct6 A unit. The applied post-synthetic approach provides two sequentially homologous ms2 t6 A- and ms2 ct6 A-oligonucleotides that are suitable for further comparative structure-activity relationship studies.


Asunto(s)
Adenosina/análogos & derivados , Oligorribonucleótidos/síntesis química , ARN de Transferencia/química , Treonina/análogos & derivados , Adenosina/química , Secuencia de Bases , Carbamatos/química , Ciclización , Guanosina/química , Isocianatos/química , Conformación de Ácido Nucleico , Compuestos Organofosforados/química , Relación Estructura-Actividad , Treonina/síntesis química , Treonina/química
4.
RNA ; 24(10): 1403-1417, 2018 10.
Artículo en Inglés | MEDLINE | ID: mdl-30012570

RESUMEN

Post-transcriptional chemical modifications of (t)RNA molecules are crucial in fundamental biological processes, such as translation. Despite their biological importance and accumulating evidence linking them to various human diseases, technical challenges have limited their detection and accurate quantification. Here, we present a sensitive capillary nanoflow liquid chromatography mass spectrometry (nLC-MS) pipeline for quantitative high-resolution analysis of ribonucleoside modifications from complex biological samples. We evaluated two porous graphitic carbon (PGC) materials and one end-capped C18 reference material as stationary phases for reversed-phase separation. We found that these matrices have complementing retention and separation characteristics, including the capability to separate structural isomers. PGC and C18 matrices yielded excellent signal-to-noise ratios in nLC-MS while differing in the separation capability and sensitivity for various nucleosides. This emphasizes the need for tailored LC-MS setups for optimally detecting as many nucleoside modifications as possible. Detection ranges spanning up to six orders of magnitude enable the analysis of individual ribonucleosides down to femtomol concentrations. Furthermore, normalizing the obtained signal intensities to a stable isotope labeled spike-in enabled direct comparison of ribonucleoside levels between different samples. In conclusion, capillary columns coupled to nLC-MS constitute a powerful and sensitive tool for quantitative analysis of modified ribonucleosides in complex biological samples. This setup will be invaluable for further unraveling the intriguing and multifaceted biological roles of RNA modifications.


Asunto(s)
Cromatografía Liquida , Espectrometría de Masas , Ribonucleósidos/análisis , Ribonucleósidos/química , Cromatografía Liquida/métodos , Grafito/química , Humanos , Espectrometría de Masas/métodos , ARN Bacteriano , ARN de Hongos , ARN de Transferencia/química , Ribonucleósidos/aislamiento & purificación , Espectrometría de Masa por Ionización de Electrospray , Espectrometría de Masas en Tándem
5.
Chem Commun (Camb) ; 53(56): 7945-7948, 2017 Jul 11.
Artículo en Inglés | MEDLINE | ID: mdl-28657616

RESUMEN

A t6A nucleoside was efficiently and stereospecifically transformed into a hydantoin cyclic form of N6-l-threonylcarbamoyladenosine (ct6A) by the use of polymer bounded carbodiimide (EDC-P) and HOBt. The procedure was successfully applied for a post-synthetic conversion of t6A-containing RNA 17-mers (of the sequences of anticodon stem and loop (ASL) fragments of S. pombe tRNAi and E. coli tRNALys) into the products bearing the ct6A unit.


Asunto(s)
Adenosina/análogos & derivados , Hidantoínas/síntesis química , Oligorribonucleótidos/síntesis química , Adenosina/química , Anticodón , Carbodiimidas/química , Ciclización , Escherichia coli , Hidantoínas/química , Concentración de Iones de Hidrógeno , Oligorribonucleótidos/química , Estabilidad del ARN , ARN de Transferencia de Lisina/síntesis química , ARN de Transferencia de Lisina/química , Schizosaccharomyces
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