日期:
2020 年 — 2026 年
2020
2021
2022
2023
2024
2025
2026
影响因子:

PCNA encircling primer/template junctions is eliminated by exchange of RPA for Rad51: implications for the interplay between human DNA damage tolerance pathways

通过用Rad51替换RPA,可以消除PCNA环绕引物/模板连接处:这对人类DNA损伤耐受通路之间的相互作用具有重要意义

Norris, Jessica L; Rogers, Lindsey O; Young, Grace; Pytko, Kara G; Dannenberg, Rachel L; Perreault, Samuel; Kaushik, Vikas; Antony, Edwin; Hedglin, Mark

PCNA encircling primer/template junctions is eliminated by exchange of RPA for Rad51: Implications for the interplay between human DNA damage tolerance pathways

通过用Rad51替换RPA,可以消除PCNA环绕引物/模板连接处:这对人类DNA损伤耐受通路之间的相互作用具有重要意义

Norris, Jessica L; Rogers, Lindsey O; Young, Grace; Pytko, Kara G; Dannenberg, Rachel L; Perreault, Samuel; Kaushik, Vikas; Antony, Edwin; Hedglin, Mark

Replication protein A dynamically re-organizes on primer/template junctions to permit DNA polymerase δ holoenzyme assembly and initiation of DNA synthesis

复制蛋白A在引物/模板连接处动态重组,以允许DNA聚合酶δ全酶组装并启动DNA合成。

Norris, Jessica L; Rogers, Lindsey O; Pytko, Kara G; Dannenberg, Rachel L; Perreault, Samuel; Kaushik, Vikas; Kuppa, Sahiti; Antony, Edwin; Hedglin, Mark

Direct, ensemble FRET approaches to monitor transient state kinetics of human DNA polymerase δ holoenzyme assembly and initiation of DNA synthesis.

采用直接的、整体的 FRET 方法监测人类 DNA 聚合酶 δ 全酶组装和 DNA 合成起始的瞬态动力学

Norris Jessica L, Hedglin Mark

Interplay of macromolecular interactions during assembly of human DNA polymerase δ holoenzymes and initiation of DNA synthesis

人类DNA聚合酶δ全酶组装和DNA合成起始过程中大分子相互作用的相互作用

Norris, Jessica L; Rogers, Lindsey O; Pytko, Kara G; Dannenberg, Rachel L; Perreault, Samuel; Kaushik, Vikas; Kuppa, Sahiti; Antony, Edwin; Hedglin, Mark