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

Functional analyses of bacterial NanoRNase B proteins reveals defining features of this enzyme family

细菌NanoRNase B蛋白的功能分析揭示了该酶家族的特征。

Myers, Tanner M; Burnim, Andrew A; Jermain, Madison D; Sondermann, Holger; Lee, Vincent T; Jiang, Xiaofang; Winkler, Wade C

Structural and bioinformatics analyses identify deoxydinucleotide-specific nucleases and their association with genomic islands in gram-positive bacteria

结构和生物信息学分析鉴定了脱氧二核苷酸特异性核酸酶及其与革兰氏阳性菌基因组岛的关联。

Mortensen, Sofia; Kuncová, Stanislava; Lormand, Justin D; Myers, Tanner M; Kim, Soo-Kyoung; Lee, Vincent T; Winkler, Wade C; Sondermann, Holger

Bacillus velezensis LoaP promotes antitermination by antagonizing NusA

贝莱斯芽孢杆菌LoaP通过拮抗NusA促进抗终止作用

Jermain, Madison D; Tran, Thao; Jenkins, Conor C; Nasisi, Benjamin H; Winkler, Wade C

Nano-RNases: oligo- or dinucleases?

纳米核糖核酸酶:寡核苷酸酶还是双核苷酸酶?

Lee, Vincent T; Sondermann, Holger; Winkler, Wade C

Correction: Structural characterization of NrnC identifies unifying features of dinucleases

更正:NrnC的结构表征揭示了二核酸酶的统一特征

Lormand, Justin D; Kim, Soo-Kyoung; Walters-Marrah, George A; Brownfield, Bryce A; Fromme, J Christopher; Winkler, Wade C; Goodson, Jonathan R; Lee, Vincent T; Sondermann, Holger

Correction: A dedicated diribonuclease resolves a key bottleneck for the terminal step of RNA degradation

更正:一种专门的双核糖核酸酶解决了RNA降解末端步骤的关键瓶颈。

Kim, Soo-Kyoung; Lormand, Justin D; Weiss, Cordelia A; Eger, Karin A; Turdiev, Husan; Turdiev, Asan; Winkler, Wade C; Sondermann, Holger; Lee, Vincent T

Chemical probing provides insight into the native assembly state of a bacterial microcompartment.

化学探测可以深入了解细菌微区室的天然组装状态

Trettel Daniel S, Resager William, Ueberheide Beatrix M, Jenkins Conor C, Winkler Wade C

An autoinhibitory mechanism controls RNA-binding activity of the nitrate-sensing protein NasR

自身抑制机制控制硝酸盐感应蛋白NasR的RNA结合活性

Goodson, Jonathan R; Zhang, Christopher; Trettel, Daniel; Ailinger, Heather E; Lee, Priscilla E; Spirito, Catherine M; Winkler, Wade C

A dedicated diribonucleotidase resolves a key bottleneck for the terminal step of RNA degradation.

专门的双核糖核苷酸酶解决了 RNA 降解最后一步的关键瓶颈

Kim Soo-Kyoung, Lormand Justin D, Weiss Cordelia A, Eger Karin A, Turdiev Husan, Turdiev Asan, Winkler Wade C, Sondermann Holger, Lee Vincent T

Processive Antitermination

渐进式反终止

Goodson, Jonathan R; Winkler, Wade C