Grajkowski Andrzej, Cieślak Jacek, Kauffman Jon S, Duff Robert J, Norris Scott, Freedberg Darón I, Beaucage Serge L
Division of Therapeutic Proteins, Center for Drug Evaluation and Research, Food and Drug Administration, 8800 Rockville Pike, Bethesda, Maryland 20892, USA.
Bioconjug Chem. 2008 Aug;19(8):1696-706. doi: 10.1021/bc800189e. Epub 2008 Jul 23.
The functionalization of long chain alkylamine controlled-pore glass (CPG) with a 3-hydroxypropyl-(2-cyanoethyl)thiophosphoryl linker and its conversion to the support 7 has led to the synthesis of DNA oligonucleotides and their 3'- or (3',5')-conjugates. Indeed, CPG support 7 has been successfully employed in the synthesis of both native and fully phosphorothioated DNA 20-mers. Unlike conventional succinylated CPG supports, this distinctively functionalized support allows oligonucleotide deprotection and removal of the deprotection side products to proceed without releasing the oligonucleotide into the aqueous milieu. When freed from deprotection side products, the DNA oligonucleotide is thermolytically released from the support within 2 h under nearly neutral conditions (pH 7.2, 90 degrees C). The quality of these oligonucleotides is comparable to that of identical oligonucleotides synthesized from succinylated CPG supports in terms of shorter than full length oligonucleotide contaminants and overall yields. The versatility of the thermolytic CPG support 7 is further demonstrated by the synthesis of a DNA oligonucleotide (20-mer) and its conjugation with an azido and alkynyl groups at both 5'-and 3'-termini, respectively. The functionality of the (3',5')-heteroconjugated oligonucleotide 18 is verified by its circularization to the DNA oligonucleotide 19 under "click" chemistry conditions.
用3-羟丙基-(2-氰基乙基)硫代磷酰基连接体对长链烷基胺控制孔径玻璃(CPG)进行功能化,并将其转化为载体7,已实现了DNA寡核苷酸及其3'-或(3',5')-缀合物的合成。实际上,CPG载体7已成功用于天然和完全硫代磷酸化的20聚体DNA的合成。与传统的琥珀酰化CPG载体不同,这种独特功能化的载体能使寡核苷酸脱保护以及脱保护副产物的去除过程中,寡核苷酸不会释放到水相中。当从脱保护副产物中游离出来后,DNA寡核苷酸在接近中性的条件下(pH 7.2,90℃)2小时内从载体上热解吸下来。就短于全长寡核苷酸污染物和总产率而言,这些寡核苷酸的质量与从琥珀酰化CPG载体合成的相同寡核苷酸相当。热解CPG载体7的多功能性通过合成一种DNA寡核苷酸(20聚体)并分别在其5'-和3'-末端与叠氮基和炔基缀合得到进一步证明。(3',5')-杂缀合寡核苷酸18的功能通过在“点击”化学条件下环化形成DNA寡核苷酸19得到验证。