Oh Dennis H, Suzara Vincent, Krishnan Rajagopal
Department of Dermatology, University of California, San Francisco, and Dermatology Research Unit, San Francisco VA Medical Center, San Francisco, CA, USA.
Photochem Photobiol. 2008 May-Jun;84(3):727-33. doi: 10.1111/j.1751-1097.2007.00243.x.
A triplex-forming oligonucleotide (TFO), HPRT3, conjugated to a psoralen derivative, was designed to target a psoralen reaction site within the HPRT gene. HPRT3 bound with high affinity to a synthetic duplex target sequence. At a uniform UVA radiation dose, the ratio of psoralen monoadducts (MA) to interstrand crosslinks decreased and inverted with increasing TFO concentration. As the TFO concentration increased from 10 nm to 10 microm, the efficiency of psoralen MA formation remained relatively constant but the efficiency of interstrand crosslink formation increased several-fold. Neither shortening the TFO to reduce its dissociation constant nor altering the DNA sequences flanking the TFO binding site altered the concentration dependence of MA and crosslink yields. The psoralen photokinetics associated with 10 nm HPRT3 converted to those associated with 10 microm HPRT3 with the addition of other unrelated TFOs at 10 microm that do not specifically interact with the HPRT3 target sequence. Glycerol at concentrations of 0.5% (vol/vol) or higher also mimicked high TFO concentrations in enhancing crosslink formation. These results demonstrate that while psoralen may be targeted to react at a particular sequence by TFOs, photoreactivity associated with triplex formation is also modulated by sequence-independent factors that may affect the local macromolecular environment.
一种与补骨脂素衍生物偶联的三链形成寡核苷酸(TFO),即HPRT3,被设计用于靶向次黄嘌呤磷酸核糖转移酶(HPRT)基因内的一个补骨脂素反应位点。HPRT3与合成双链靶序列具有高亲和力结合。在均匀的紫外线A(UVA)辐射剂量下,补骨脂素单加合物(MA)与链间交联的比例随着TFO浓度的增加而降低并反转。随着TFO浓度从10纳米增加到10微摩尔,补骨脂素MA形成的效率保持相对恒定,但链间交联形成的效率增加了几倍。无论是缩短TFO以降低其解离常数,还是改变TFO结合位点侧翼的DNA序列,都不会改变MA和交联产率的浓度依赖性。与10纳米HPRT3相关的补骨脂素光动力学在添加10微摩尔其他不与HPRT3靶序列特异性相互作用的无关TFO后,转变为与10微摩尔HPRT3相关的光动力学。浓度为0.5%(体积/体积)或更高的甘油在增强交联形成方面也模拟了高TFO浓度。这些结果表明,虽然补骨脂素可以通过TFO靶向在特定序列处发生反应,但与三链形成相关的光反应性也受到可能影响局部大分子环境的序列无关因素的调节。