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

Elevated MSH2 MSH3 expression interferes with DNA metabolism in vivo

MSH2 MSH3 表达升高会干扰体内 DNA 代谢

Melisa Medina-Rivera, Samantha Phelps, Madhumita Sridharan, Jordan Becker, Natalie A Lamb, Charanya Kumar, Mark D Sutton, Anja Bielinsky, Lata Balakrishnan, Jennifer A Surtees

During Translesion Synthesis, Escherichia coli DinB89 (T120P) Alters Interactions of DinB (Pol IV) with Pol III Subunit Assemblies and SSB, but Not with the β Clamp

在跨损伤合成过程中,大肠杆菌 DinB89 (T120P) 会改变 DinB (Pol IV) 与 Pol III 亚基组装体和 SSB 的相互作用,但不改变与 β 夹的相互作用

Michelle K Scotland, Caleb Homiski, Mark D Sutton

Role of the SOS Response in the Generation of Antibiotic Resistance In Vivo

SOS 反应在体内抗生素耐药性产生中的作用

John K Crane, Cassandra L Alvarado, Mark D Sutton

Elevated Levels of the Escherichia coli nrdAB-Encoded Ribonucleotide Reductase Counteract the Toxicity Caused by an Increased Abundance of the β Clamp

大肠杆菌 nrdAB 编码的核苷酸还原酶水平升高可抵消 β 钳丰度增加引起的毒性

Vignesh M P Babu, Caleb Homiski #, Michelle K Scotland #, Sundari Chodavarapu, Jon M Kaguni, Mark D Sutton

The Mutant βE202K Sliding Clamp Protein Impairs DNA Polymerase III Replication Activity

突变的βE202K滑动夹蛋白会损害DNA聚合酶III的复制活性

Caleb Homiski #, Michelle K Scotland #, Vignesh M P Babu, Sundari Chodavarapu, Robert W Maul, Jon M Kaguni, Mark D Sutton

Zinc blocks SOS-induced antibiotic resistance via inhibition of RecA in Escherichia coli

锌通过抑制大肠杆菌中的 RecA 来阻断 SOS 诱导的抗生素耐药性

Bryan E Bunnell, Jillian F Escobar, Kirsten L Bair, Mark D Sutton, John K Crane

Evidence for roles of the Escherichia coli Hda protein beyond regulatory inactivation of DnaA

大肠杆菌 Hda 蛋白除了调节 DnaA 失活之外的作用的证据

Jamie C Baxter, Mark D Sutton

Contributions of the individual hydrophobic clefts of the Escherichia coli beta sliding clamp to clamp loading, DNA replication and clamp recycling

大肠杆菌β滑动夹的各个疏水裂缝对夹钳负载、DNA复制和夹钳回收的贡献

Sarah K Scouten Ponticelli, Jill M Duzen, Mark D Sutton

Sliding clamp-DNA interactions are required for viability and contribute to DNA polymerase management in Escherichia coli

滑动夹-DNA 相互作用是大肠杆菌生存所必需的,并有助于 DNA 聚合酶的管理

Justin M H Heltzel, Sarah K Scouten Ponticelli, Laurie H Sanders, Jill M Duzen, Vivian Cody, James Pace, Edward H Snell, Mark D Sutton

A model for DNA polymerase switching involving a single cleft and the rim of the sliding clamp

涉及单个裂缝和滑动夹边缘的 DNA 聚合酶转换模型

Justin M H Heltzel, Robert W Maul, Sarah K Scouten Ponticelli, Mark D Sutton