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The CDC13-STN1-TEN1 complex stimulates Pol alpha activity by promoting RNA priming and primase-to-polymerase switch

机译:CDC13-STN1-TEN1复合物通过促进RNA引发和引发酶向聚合酶的转换来刺激Polα活性

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摘要

Emerging evidence suggests that Cdc13-Stn1-Ten1 (CST), an RPA-like ssDNA-binding complex, may regulate primase-Pol alpha (PP) activity at telomeres constitutively, and at other genomic locations under conditions of replication stress. Here we examine the mechanisms of PP stimulation by CST using purified complexes derived from Candida glabrata. While CST does not enhance isolated DNA polymerase activity, it substantially augments both primase activity and primase-to-polymerase switching. CSTalso simultaneously shortens the RNA and lengthens the DNA in the chimeric products. Stn1, the most conserved subunit of CST, is alone capable of PP stimulation. Both the N-terminal OB fold and the C-terminal winged-helix domains of Stn1 can bind to the Pol12 subunit of the PP complex and stimulate PP activity. Our findings provide mechanistic insights on a well-conserved pathway of PP regulation that is critical for genome stability.
机译:新兴证据表明,类似于RPA的ssDNA结合复合物Cdc13-Stn1-Ten1(CST)可能在复制压力条件下端粒和其他基因组位置组成型地调控启动酶-Polα(PP)活性。在这里,我们研究了使用源自光滑念珠菌的纯化复合物通过CST刺激PP的机制。尽管CST不会增强分离的DNA聚合酶的活性,但它会大大增强引发酶的活性和引发酶与聚合酶​​的转换。 CST还可以同时缩短嵌合产物中的RNA和延长DNA。 Stn1是CST最保守的亚基,仅能刺激PP。 Stn1的N端OB折叠和C端有翼螺旋结构域都可以与PP复合物的Pol12亚基结合并刺激PP活性。我们的发现为对基因组稳定性至关重要的PP调节的保守途径提供了机械方面的见解。

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