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Allosteric inhibitors of telomerase: oligonucleotide N3' → P5' phosphoramidates

机译:端粒酶的变构抑制剂:寡核苷酸N3'→P5'氨基磷酸酯

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Telomerase is a ribonucleoprotein responsible for maintaining telomeres in nearly all eukaryotic cells. The enzyme is able to utilize a short segment of its RNA subunit as the template for the reverse transcription of d(TTAGGG) repeats onto the ends of human chromosomes. Transfection with telomerase was shown to confer immortality on several types of human cells. Moreover, telomerase activation appears to be one of the key evens required for malignant transformation of normal cells. Inhibition of telomerase activity in transformed cells results in the cessation of cell proliferation in cultures and provides the rationale for the selection of telomerase as a target for anticancer therapy. Using oligonucleotide N3' → P5' phosphoramidates (NPs) we have identified a region of the human telomerase RNA subunit (hTR) ~100 nt downstream from the template region whose structural integrity appears crucial for telomerase enzymatic activity. The oligonucleotides targeted to this segment of hTR are potent and specific inhibitors of telomerase activity in biochemical assays. Mutant telomerase, in which 3 not of hTR were not complementary to a 15 nt NP, was found to be refractory to inhibition by that oligonucleotide. We also demonstrated that the binding of NP, oligonucleotides to this hTR allosteric site results in a marked decrease in the affinity of a telomerase substrate (single-stranded DNA primer) for the enzyme.
机译:端粒酶是一种核糖核蛋白,负责维持几乎所有真核细胞中的端粒。该酶能够利用其RNA亚基的一小段作为模板,将d(TTAGGG)的逆转录重复到人类染色体末端。端粒酶的转染被证明可以赋予几种类型的人类细胞永生。此外,端粒酶激活似乎是正常细胞恶性转化所需的关键因素之一。转化细胞中端粒酶活性的抑制导致培养物中细胞增殖的停止,并为选择端粒酶作为抗癌治疗的靶标提供了理论依据。使用寡核苷酸N3'→P5'氨基磷酸酯(NPs),我们已经确定了人端粒酶RNA亚基(hTR)约100 nt的模板区域下游区域,其结构完整性对于端粒酶的酶活性至关重要。在生化分析中,靶向hTR此片段的寡核苷酸是端粒酶活性的有效和特异性抑制剂。发现其中3个不是hTR与15 nt NP不互补的突变端粒酶对这种寡核苷酸的抑制作用是难治的。我们还证明了NP寡核苷酸与该hTR变构位点的结合导致端粒酶底物(单链DNA引物)对该酶的亲和力显着降低。

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