首页> 外文期刊>Journal of Biomolecular Structure and Dynamics >Conformational changes induced in the human protein translin and in the single-stranded oligodeoxynucleotides d(GT)(12) and d(TTAGGG)(5) upon binding of these oligodeoxynucleotides by translin.
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Conformational changes induced in the human protein translin and in the single-stranded oligodeoxynucleotides d(GT)(12) and d(TTAGGG)(5) upon binding of these oligodeoxynucleotides by translin.

机译:当人寡糖结合这些寡聚脱氧核苷酸后,在人蛋白翻译林和单链寡聚脱氧核苷酸d(GT)(12)和d(TTAGGG)(5)中引起的构象变化。

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Translin is a human single-stranded DNA and RNA binding protein that has been highly conserved in eukaryotic evolution. It consists of eight subunits having a highly helical secondary structure that assemble into a ring. The DNA and the RNA are bound inside the ring. Recently, some of us demonstrated that the human translin specifically binds the single-stranded microsatellite repeats, d(GT)(n), the human telomeric repeats, d(TTAGGG)(n), and the Tetrahymena telomeric repeats, d(GGGGTT)(n). These data suggested that translin might be involved in recombination at d(GT)(n).d(AC)(n) microsatellites and in telomere metabolism. Other data indicated that translin might stimulate binding of telomerase to single-stranded telomeric overhangs by unwinding secondary structures formed by the telomeric repeats. Here we present a circular dichroism (CD) analysis of complexes formed between the human translin and the microsatellite and telomeric oligodeoxynucleotides d(GT)(12) and d(TTAGGG)(5). We report that conformational changes occur in both the translin and the oligodeoxynucleotides upon formation of the complexes. In translin octamers bound to the oligodeoxynucleotide d(GT)(12), the fraction of alpha-helices decreases from approximately 67% to approximately 50%, while the fraction of turns and of the unordered structure increases from approximately 11% to approximately 17% and from approximately 19% to approximately 24%, respectively. In the bound oligodeoxynucleotide d(GT)(12), we observed CD shifts which are consistent with a decrease of base stacking and a putative anti-syn switch of some guanines. The oligodeoxynucleotide d(TTAGGG)(5) formed intramolecular quadruplexes under the conditions of our assays and translin was found to unfold the quadruplexes into structures consisting of a single hairpin and three unwound single-stranded d(TTAGGG) repeats. We suggest that such unfolding could account for the stimulation of telomerase activity by translin mentioned above.
机译:Translin是人类单链DNA和RNA结合蛋白,在真核生物进化中一直高度保守。它由八个具有高度螺旋二级结构的亚单元组成,这些二级单元组装成一个环。 DNA和RNA结合在环内。最近,我们中的一些人证明了人translin特异性结合单链微卫星重复序列d(GT)(n),人端粒重复序列d(TTAGGG)(n)和四膜虫端粒重复序列d(GGGGTT) (n)。这些数据表明,translin可能参与d(GT)(n).d(AC)(n)微卫星的重组以及端粒代谢。其他数据表明,translin可能通过解开端粒重复序列形成的二级结构来刺激端粒酶与单链端粒突出端的结合。在这里,我们介绍了人类穿蛋白与微卫星和端粒寡聚脱氧核苷酸d(GT)(12)和d(TTAGGG)(5)之间形成的复合物的圆二色性(CD)分析。我们报告构象变化发生在都柏林和寡脱氧核苷酸形成复合物时。在与寡脱氧核苷酸d(GT)(12)结合的泉林八聚体中,α-螺旋的比例从大约67%降低到大约50%,而匝数和无序结构的比例从大约11%增加到大约17%和分别从大约19%到大约24%。在结合的寡脱氧核苷酸d(GT)(12)中,我们观察到CD移位,这与碱基堆积的减少和某些鸟嘌呤的推定的反syn开关一致。寡聚脱氧核苷酸d(TTAGGG)(5)在我们的测定条件下形成了分子内四链体,发现translin将四链体展开为由单个发夹和三个未缠绕的单链d(TTAGGG)重复序列组成的结构。我们建议这种展开可以解释上述转蛋白对端粒酶活性的刺激作用。

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