Tang XinJing, Swaminathan Jyothishmathi, Gewirtz Alan M, Dmochowski Ivan J
The Department of Chemistry, University of Pennsylvania, Philadelphia, PA 19104, USA.
Nucleic Acids Res. 2008 Feb;36(2):559-69. doi: 10.1093/nar/gkm1029. Epub 2007 Dec 1.
Light-activated antisense oligodeoxynucleotides (asODNs) were developed to control the degradation of target mRNA in living cells by RNase H. A 20-mer asODN previously shown to target c-myb, a hematopoietic transcription factor, was covalently attached via a photocleavable linker (PL) to partially complementary 20-mer sense strands (sODNs). In the 'caged' state, the sODN blocked hybridization of the asODN to c-myb mRNA. Six asODN-PL-sODN conjugates, C1-C6, were synthesized. C5, with twelve complementary bases, gave the largest decrease in melting temperature (T(m)) upon UV irradiation (DeltaT(m) = -29 degrees C). The most thermally stable conjugate, C6 (T(m) = 84 degrees C), gave the lowest background RNase H activity, with just 8.6% degradation of an RNA 40-mer after 1 h incubation. In biochemical assays with C6, RNA digestion increased 10-fold 10 min after UV irradiation. Finally, phosphorothioated analogs S-C5 and S-C6 were synthesized to test activity in cultured K562 (human leukemia) cells. No knockdown of c-myb mRNA or protein was observed with intact S-C5 or S-C6, whereas more than half of c-myb mRNA was degraded 24 h after photoactivation. Two-fold photomodulation of c-MYB protein levels was also observed with S-C5. However, no photomodulation of c-MYB protein levels was observed with S-C6, perhaps due to the greater stability of this duplex.
光激活反义寡脱氧核苷酸(asODN)被开发用于通过核糖核酸酶H控制活细胞中靶mRNA的降解。先前已证明一种靶向造血转录因子c-myb的20聚体asODN通过光可裂解接头(PL)与部分互补的20聚体有义链(sODN)共价连接。在“笼闭”状态下,sODN阻止asODN与c-myb mRNA杂交。合成了六种asODN-PL-sODN缀合物C1-C6。具有十二个互补碱基的C5在紫外线照射后熔解温度(T(m))下降幅度最大(ΔT(m)= -29℃)。热稳定性最高的缀合物C6(T(m)= 84℃)背景核糖核酸酶H活性最低,孵育1小时后40聚体RNA的降解率仅为8.6%。在对C6的生化分析中,紫外线照射10分钟后RNA消化增加了10倍。最后,合成了硫代磷酸酯类似物S-C5和S-C6以测试其在培养的K562(人白血病)细胞中的活性。完整的S-C5或S-C6未观察到c-myb mRNA或蛋白的敲低,而光激活后24小时超过一半的c-myb mRNA被降解。S-C5还观察到c-MYB蛋白水平有两倍的光调节。然而,S-C6未观察到c-MYB蛋白水平的光调节,这可能是由于该双链体具有更高的稳定性。