| Literature DB >> 28252183 |
Jolanta Brzezinska1, Agnieszka Witkowska1, Tomasz P Kaczyński1, Dominika Krygier1, Tomasz Ratajczak1, Marcin K Chmielewski1.
Abstract
Application of 2-pyridinyl thermolabile protecting groups (2-PyTPGs) for protection of hydroxyl, phosphate, and carboxyl functions is presented in this unit. Their characteristic feature is a unique removal process following the intramolecular cyclization mechanism and induced only by temperature rise. Deprotection rate of 2-PyTPGs is dependent on certain parameters, such as solvent (aqueous or non-aqueous medium), pH values, and electron distribution in a pyridine ring. The presented approach pertains not only to protecting groups but also to an advanced system of controlling certain properties of 2-pyridinyl derivatives. We improved the "chemical switch" method, allowing us to regulate the protecting group stability by inversing the electron distribution in 2-PyTPG. Together with pH values manipulation, this allows us to regulate the protecting group stability. Moreover, phosphite cyclization to oxazaphospholidine provides a very stable but easily reversible tool for phosphate protection/modifications. For all TPGs we confirmed their utility in a system of protecting groups. This concept can contribute to designing the general protecting group that could be useful in bioorganic chemistry. © 2017 by John Wiley & Sons, Inc.Entities:
Keywords: chemical switch; intramolecular cyclisation; nucleosides; protecting groups; thermal lability; “click-clack”
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Year: 2017 PMID: 28252183 DOI: 10.1002/cpnc.26
Source DB: PubMed Journal: Curr Protoc Nucleic Acid Chem ISSN: 1934-9270