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首页> 外文期刊>Nucleic Acids Research >Pif1 regulates telomere length by preferentially removing telomerase from long telomere ends
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Pif1 regulates telomere length by preferentially removing telomerase from long telomere ends

机译:Pif1通过优先从端粒长末端去除端粒酶来调节端粒长度

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摘要

Telomerase, a ribonucleoprotein complex, is responsible for maintaining the telomere length at chromosome ends. Using its RNA component as a template, telomerase uses its reverse transcriptase activity to extend the 3'-end single-stranded, repetitive telomeric DNA sequence. Pif1, a 5'-to-3' helicase, has been suggested to regulate telomerase activity. We used single-molecule experiments to directly show that Pif1 helicase regulates telomerase activity by removing telomerase from telomere ends, allowing the cycling of the telomerase for additional extension processes. This telomerase removal efficiency increases at longer ssDNA gaps and at higher Pif1 concentrations. The enhanced telomerase removal efficiency by Pif1 at the longer single-stranded telomeric DNA suggests a way of how Pif1 regulates telomerase activity and maintains telomere length
机译:端粒酶是一种核糖核蛋白复合物,负责维持染色体末端的端粒长度。端粒酶以其RNA成分为模板,利用其逆转录酶活性来扩展3'端单链重复端粒DNA序列。 Pif1,5'到3'解旋酶,已建议调节端粒酶活性。我们使用单分子实验直接显示Pif1解旋酶通过从端粒末端去除端粒酶来调节端粒酶活性,从而允许端粒酶循环进行其他延伸过程。在更长的ssDNA缺口和更高的Pif1浓度下,端粒酶去除效率会提高。 Pif1在较长的单链端粒DNA上增强的端粒酶去除效率表明了Pif1如何调节端粒酶活性并维持端粒长度的一种方式

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