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人类异质性核糖核蛋白A1重组端粒结合的复制蛋白A。

Human hnRNPA1 reorganizes telomere-bound Replication Protein A.

作者信息

Granger Sophie L, Sharma Richa, Kaushik Vikas, Razzaghi Mortezaali, Honda Masayoshi, Gaur Paras, Bhat Divya S, Labenz Sabryn M, Heinen Jenna E, Williams Blaine A, Tabei S M Ali, Wlodarski Marcin W, Antony Edwin, Spies Maria

出版信息

bioRxiv. 2024 Apr 3:2023.05.09.540056. doi: 10.1101/2023.05.09.540056.

Abstract

UNLABELLED

Human replication protein A (RPA) is a heterotrimeric ssDNA binding protein responsible for many aspects of cellular DNA metabolism. Dynamic interactions of the four RPA DNA binding domains (DBDs) with DNA control replacement of RPA by downstream proteins in various cellular metabolic pathways. RPA plays several important functions at telomeres where it binds to and melts telomeric G-quadruplexes, non-canonical DNA structures formed at the G-rich telomeric ssDNA overhangs. Here, we combine single-molecule total internal reflection fluorescence microscopy (smTIRFM) and mass photometry (MP) with biophysical and biochemical analyses to demonstrate that heterogeneous nuclear ribonucleoprotein A1 (hnRNPA1) specifically remodels RPA bound to telomeric ssDNA by dampening the RPA configurational dynamics and forming a ternary complex. Uniquely, among hnRNPA1 target RNAs, telomeric repeat-containing RNA (TERRA) is selectively capable of releasing hnRNPA1 from the RPA-telomeric DNA complex. We speculate that this telomere specific RPA-DNA-hnRNPA1 complex is an important structure in telomere protection.

ONE SENTENCE SUMMARY

At the single-stranded ends of human telomeres, the heterogeneous nuclear ribonucleoprotein A1 (hnRNPA1) binds to and modulates conformational dynamics of the ssDNA binding protein RPA forming a ternary complex which is controlled by telomeric repeat-containing RNA (TERRA).

摘要

未标记

人复制蛋白A(RPA)是一种异源三聚体单链DNA结合蛋白,负责细胞DNA代谢的许多方面。RPA的四个DNA结合结构域(DBD)与DNA的动态相互作用控制着RPA在各种细胞代谢途径中被下游蛋白取代。RPA在端粒发挥多种重要功能,它结合并解开端粒G-四链体,这是在富含G的端粒单链DNA突出端形成的非经典DNA结构。在这里,我们将单分子全内反射荧光显微镜(smTIRFM)和质量光度法(MP)与生物物理和生化分析相结合,以证明异质性核糖核蛋白A1(hnRNPA1)通过抑制RPA的构象动力学并形成三元复合物,特异性地重塑与端粒单链DNA结合的RPA。独特的是,在hnRNPA1的靶RNA中,含端粒重复序列的RNA(TERRA)能够选择性地从RPA-端粒DNA复合物中释放hnRNPA1。我们推测这种端粒特异性的RPA-DNA-hnRNPA1复合物是端粒保护中的一种重要结构。

一句话总结

在人类端粒的单链末端,异质性核糖核蛋白A1(hnRNPA1)结合并调节单链DNA结合蛋白RPA的构象动力学,形成一种由含端粒重复序列的RNA(TERRA)控制的三元复合物。

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