Novel Methods for Synthesis of High Quality Oligonucleotides

The first part of the work describes a procedure of oligonucleotide purification using a reversed-phase cartridge. The developed method employs a very efficient yet mild oligonucleotide detritylation on the cartridge support allowing fast purification of oligonucleotides regardless of their 5´-modif...

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Main Author: Semenyuk, Andrey
Format: Doctoral Thesis
Language:English
Published: Uppsala universitet, Institutionen för genetik och patologi 2006
Subjects:
Online Access:http://urn.kb.se/resolve?urn=urn:nbn:se:uu:diva-7172
http://nbn-resolving.de/urn:isbn:91-554-6672-9
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spelling ndltd-UPSALLA1-oai-DiVA.org-uu-71722013-01-08T13:04:20ZNovel Methods for Synthesis of High Quality OligonucleotidesengSemenyuk, AndreyUppsala universitet, Institutionen för genetik och patologiUppsala : Acta Universitatis Upsaliensis2006Organic chemistryoligonucleotidesolid-phase synthesisRNA synthesisphosphoramiditeabasic sitesdepurination2'-O-DTMprotecting groupcartridgeconjugatedithiomethyl linkerbase-stable linkeroligonucleotide purificationnucleosideOrganisk kemiThe first part of the work describes a procedure of oligonucleotide purification using a reversed-phase cartridge. The developed method employs a very efficient yet mild oligonucleotide detritylation on the cartridge support allowing fast purification of oligonucleotides regardless of their 5´-modification. Thiol- and amino-modified oligonuc-leotides were detritylated and purified with the same high efficiency as non-modified oligonucleotides. The method enables fast, parallel and automated purification of many oligonucleotide probes that was not possible before. In combination with the method of removal of tritylated failure fragments oligonucleotides were produced with purity superior to that of oligonucleotides purified using RP HPLC. In the second part of the present study a method of solid-phase RNA synthesis using 2´-tert-butyldithiomethyl (2´-O-DTM) is discussed. The stability of the DTM group during oligonucleotide assembly and deprotection in ammonia, together with its ability for rapid deprotection under mild conditions, allowed the synthesis of RNA with the quality similar to that of synthetic DNA oligonucleotides. The advantage of the 2´-O-DTM group is that it is completely orthogonal to all protecting groups used for the traditional solid-phase DNA synthesis. Therefore, the synthesis can be performed using a standard DNA synthesis procedure – no changes are needed for the product assembly. RNA oligonucleotides synthesized with retained 5´-terminal trityl group can be subjected to a cartridge-based purification using the procedure described in the first part of the study. The phosphoramidite synthesis was optimized for a large scale preparation and gives versatility for introduction of other alkyldithiomethyl groups according to the preference to their certain properties. The third part of the thesis describes the synthesis of a dithiomethyl linker and its utility for reversible conjugation of oligonucleotides. A dithiomethyl group, cleavable under mild conditions, was introduced onto 3´-OH of tritylated nucleosides via 3´-O-methylthiomethyl derivatives. The influence of different alkyl substituents on the disulfide bond stability was investigated, and stable analogues were employed in oligosyntheses. Two applications were developed using the present linker: 1) purification of oligonucleotides linked to the solid support; and 2) cartridge-based purification of tritylated oligonucleotides having an additional hydrophobic group on their 3´- terminus. Doctoral thesis, comprehensive summaryinfo:eu-repo/semantics/doctoralThesistexthttp://urn.kb.se/resolve?urn=urn:nbn:se:uu:diva-7172urn:isbn:91-554-6672-9Digital Comprehensive Summaries of Uppsala Dissertations from the Faculty of Medicine, 1651-6206 ; 179application/pdfinfo:eu-repo/semantics/openAccess
collection NDLTD
language English
format Doctoral Thesis
sources NDLTD
topic Organic chemistry
oligonucleotide
solid-phase synthesis
RNA synthesis
phosphoramidite
abasic sites
depurination
2'-O-DTM
protecting group
cartridge
conjugate
dithiomethyl linker
base-stable linker
oligonucleotide purification
nucleoside
Organisk kemi
spellingShingle Organic chemistry
oligonucleotide
solid-phase synthesis
RNA synthesis
phosphoramidite
abasic sites
depurination
2'-O-DTM
protecting group
cartridge
conjugate
dithiomethyl linker
base-stable linker
oligonucleotide purification
nucleoside
Organisk kemi
Semenyuk, Andrey
Novel Methods for Synthesis of High Quality Oligonucleotides
description The first part of the work describes a procedure of oligonucleotide purification using a reversed-phase cartridge. The developed method employs a very efficient yet mild oligonucleotide detritylation on the cartridge support allowing fast purification of oligonucleotides regardless of their 5´-modification. Thiol- and amino-modified oligonuc-leotides were detritylated and purified with the same high efficiency as non-modified oligonucleotides. The method enables fast, parallel and automated purification of many oligonucleotide probes that was not possible before. In combination with the method of removal of tritylated failure fragments oligonucleotides were produced with purity superior to that of oligonucleotides purified using RP HPLC. In the second part of the present study a method of solid-phase RNA synthesis using 2´-tert-butyldithiomethyl (2´-O-DTM) is discussed. The stability of the DTM group during oligonucleotide assembly and deprotection in ammonia, together with its ability for rapid deprotection under mild conditions, allowed the synthesis of RNA with the quality similar to that of synthetic DNA oligonucleotides. The advantage of the 2´-O-DTM group is that it is completely orthogonal to all protecting groups used for the traditional solid-phase DNA synthesis. Therefore, the synthesis can be performed using a standard DNA synthesis procedure – no changes are needed for the product assembly. RNA oligonucleotides synthesized with retained 5´-terminal trityl group can be subjected to a cartridge-based purification using the procedure described in the first part of the study. The phosphoramidite synthesis was optimized for a large scale preparation and gives versatility for introduction of other alkyldithiomethyl groups according to the preference to their certain properties. The third part of the thesis describes the synthesis of a dithiomethyl linker and its utility for reversible conjugation of oligonucleotides. A dithiomethyl group, cleavable under mild conditions, was introduced onto 3´-OH of tritylated nucleosides via 3´-O-methylthiomethyl derivatives. The influence of different alkyl substituents on the disulfide bond stability was investigated, and stable analogues were employed in oligosyntheses. Two applications were developed using the present linker: 1) purification of oligonucleotides linked to the solid support; and 2) cartridge-based purification of tritylated oligonucleotides having an additional hydrophobic group on their 3´- terminus.
author Semenyuk, Andrey
author_facet Semenyuk, Andrey
author_sort Semenyuk, Andrey
title Novel Methods for Synthesis of High Quality Oligonucleotides
title_short Novel Methods for Synthesis of High Quality Oligonucleotides
title_full Novel Methods for Synthesis of High Quality Oligonucleotides
title_fullStr Novel Methods for Synthesis of High Quality Oligonucleotides
title_full_unstemmed Novel Methods for Synthesis of High Quality Oligonucleotides
title_sort novel methods for synthesis of high quality oligonucleotides
publisher Uppsala universitet, Institutionen för genetik och patologi
publishDate 2006
url http://urn.kb.se/resolve?urn=urn:nbn:se:uu:diva-7172
http://nbn-resolving.de/urn:isbn:91-554-6672-9
work_keys_str_mv AT semenyukandrey novelmethodsforsynthesisofhighqualityoligonucleotides
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