Levis J T, Miller P S
Department of Biochemistry, School of Hygiene and Public Health, Johns Hopkins University, Baltimore, Maryland 21205.
Antisense Res Dev. 1994 Winter;4(4):223-30. doi: 10.1089/ard.1994.4.223.
The ability of oligonucleotides to interact selectively with their targets is an important consideration in the design of antisense oligonucleotides. This is especially important in the case of antisense oligomers, such as psoralen-derivatized oligomers, which can irreversibly bind to their targets. We have studied the interactions of a series of psoralen-derivatized antisense oligonucleoside methylphosphonates with the mRNAs of vesicular stomatitis virus (VSV), mRNAs that have a high degree of sequence homology. Cross-linking reactions were carried out under conditions of low ionic strength in order to reduce mRNA secondary structure. A 12-mer, whose sequence was complementary to VSV M-mRNA and partially complementary to sequences found in N, NS, and G mRNA cross-linked extensively to N-message. On the other hand, 16-mers whose sequences were uniquely complementary to binding sites on N- or M-mRNA specifically and efficiently cross-linked to their targeted mRNAs over the temperature range 0 degree to 37 degrees C. A reverse transcriptase-catalyzed primer extension assay was used to show that one of the N-specific oligomers cross-linked at the expected site on N-mRNA and to estimate the extent of cross-linking. The results demonstrate that psoralen-derivatized oligonucleoside methylphosphonates can cross-link in a sequence-specific manner if the sequences of these oligomers are chosen carefully so as to avoid extensive partial complementarity with other mRNA sequences.
在反义寡核苷酸的设计中,寡核苷酸与靶标选择性相互作用的能力是一个重要的考量因素。这在反义寡聚物的情况下尤为重要,比如补骨脂素衍生的寡聚物,它们能与其靶标不可逆地结合。我们研究了一系列补骨脂素衍生的反义寡核苷甲基膦酸酯与水疱性口炎病毒(VSV)的mRNA之间的相互作用,这些mRNA具有高度的序列同源性。交联反应在低离子强度条件下进行,以减少mRNA的二级结构。一个12聚体,其序列与VSV M-mRNA互补且与N、NS和G mRNA中的序列部分互补,它与N-信使RNA广泛交联。另一方面,序列与N-或M-mRNA上的结合位点唯一互补的16聚体,在0摄氏度至37摄氏度的温度范围内能特异性且高效地与其靶向mRNA交联。一种逆转录酶催化的引物延伸测定法被用于表明一种N特异性寡聚物在N-mRNA上的预期位点交联,并估计交联程度。结果表明,如果仔细选择这些寡聚物的序列以避免与其他mRNA序列存在广泛的部分互补性,补骨脂素衍生的寡核苷甲基膦酸酯可以以序列特异性的方式交联。