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Telomeric overhang length determines structural dynamics and accessibility to telomerase and ALT associated proteins

机译:端粒突出端的长度决定了端粒酶和ALT相关蛋白的结构动力学和可及性

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摘要

The G-rich single stranded DNA at the 3′ end of human telomeres can self-fold into G-quaduplex (GQ). However, telomere lengthening by telomerase or the recombination-based alternative lengthening of telomere (ALT) mechanism requires protein loading on the overhang. Using single molecule fluorescence spectroscopy we discovered that lengthening the telomeric overhang also increased the rate of dynamic exchanges between structural conformations. Overhangs with five to seven TTAGGG repeats, compared to four repeats, showed much greater dynamics and accessibility to telomerase binding and activity, and loading of the ALT-associated proteins RAD51, WRN and BLM. Although the eight repeats are highly dynamic, they can fold into two GQs, which limited protein accessibility. In contrast, the telomere-specific protein, POT1 is unique in that it binds independently of repeat number. Our results suggest that the telomeric overhang length and dynamics may contribute to the regulation of telomere extension via telomerase action and the ALT mechanism.
机译:人端粒3'端的富含G的单链DNA可以自折叠成G-quaduplex(GQ)。但是,通过端粒酶延长端粒或通过基于重组的端粒延长替代(ALT)机制需要在悬突上加载蛋白质。使用单分子荧光光谱法,我们发现延长端粒突出端也增加了结构构象之间的动态交换速率。与四个重复相比,具有五到七个TTAGGG重复的突出端显示出更大的动力学和端粒酶结合与活性的可及性,以及与ALT相关的蛋白质RAD51,WRN和BLM的负载。尽管八个重复序列是高度动态的,但它们可以折叠成两个GQ,从而限制了蛋白质的可及性。相反,端粒特异性蛋白POT1的独特之处在于它与重复数无关地结合。我们的研究结果表明端粒的突出长度和动力学可能通过端粒酶的作用和ALT机理来调节端粒的延伸。

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