Capaldi D C, Reese C B
Department of Chemistry, King's College London, UK.
Nucleic Acids Res. 1994 Jun 25;22(12):2209-16. doi: 10.1093/nar/22.12.2209.
The internucleotide linkage of uridylyl-(3'-->5')-uridine (r[UpU]) does not undergo detectable hydrolytic cleavage or migration in ca. 24 hr in 0.01 mol dm-3 hydrochloric acid (pH 2.0) at 25 degrees C. However, unlike r[UpU] and previously examined relatively high molecular weight oligoribonucleotides, oligouridylic acids are very sensitive to aqueous acid under the latter conditions (pH 2.0, 25 degrees C). Thus when the 1-(2-fluorophenyl)-4-methoxypiperidin-4-yl (Fpmp) group is used to protect the 2'-hydroxy functions in the synthesis of r[(Up)9U] and r[(Up)19U], the final unblocking process must be carried out above pH 3 if hydrolytic cleavage and migration are to be avoided. It is demonstrated that the rate of acid-catalyzed hydrolysis of the internucleotide linkages of oligoribonucleotides is sequence dependent. As Fpmp groups may be virtually completely removed from average partially-protected oligoribonucleotides within ca. 24 hr at pH 3 and 25 degrees C, it is concluded that Fpmp is a suitable 2'-protecting group even in the synthesis of particularly acid-sensitive sequences.
尿苷酰 -(3'→5')- 尿苷(r[UpU])的核苷酸间连接在25℃下于0.01 mol dm⁻³盐酸(pH 2.0)中约24小时内未发生可检测到的水解裂解或迁移。然而,与r[UpU]以及先前检测的相对高分子量的寡核糖核苷酸不同,在后者条件下(pH 2.0,25℃),寡尿苷酸对水相酸非常敏感。因此,当在合成r[(Up)9U]和r[(Up)19U]中使用1 -(2 - 氟苯基)- 4 - 甲氧基哌啶 - 4 - 基(Fpmp)基团保护2'-羟基官能团时,若要避免水解裂解和迁移,最终的去保护过程必须在pH 3以上进行。结果表明,寡核糖核苷酸核苷酸间连接的酸催化水解速率取决于序列。由于在pH 3和25℃下约24小时内Fpmp基团可从平均部分保护的寡核苷酸中几乎完全去除,因此得出结论,即使在合成对酸特别敏感的序列时,Fpmp也是合适的2'-保护基团。