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

Mechanism and reconstitution of circadian transcription in cyanobacteria

蓝细菌昼夜节律转录的机制和重建

Fang, Mingxu; Gu, Yajie; Leanca, Miron; Matyszewski, Mariusz; LiWang, Andy; Yuzenkova, Yulia; Corbett, Kevin D; Golden, Susan S

Canonical transcription termination mechanisms explain a minority of operons in cyanobacteria

典型的转录终止机制只能解释蓝细菌中少数操纵子。

Cascino, Jennifer A; Dierksheide, K Julia; Vishwakarma, Rishi K; Yuzenkova, Yulia; Babitzke, Paul; Murakami, Katsuhiko S; Li, Gene-Wei

Stochastic nature and physiological implications of 5'-NAD RNA cap in bacteria.

细菌中 5'-NAD RNA 帽的随机性和生理意义

Wiedermannová Jana, Babu Ravishankar, Yuzenkova Yulia

Structure and function of the Si3 insertion integrated into the trigger loop/helix of cyanobacterial RNA polymerase

Si3插入序列整合到蓝细菌RNA聚合酶的触发环/螺旋中的结构和功能

Qayyum, M Zuhaib; Imashimizu, Masahiko; Leanca, Miron; Vishwakarma, Rishi K; Riaz-Bradley, Amber; Yuzenkova, Yulia; Murakami, Katsuhiko S

An SI3-σ arch stabilizes cyanobacteria transcription initiation complex

SI3-σ拱形结构稳定蓝细菌转录起始复合物

Shen, Liqiang; Lai, Giorgio; You, Linlin; Shi, Jing; Wu, Xiaoxian; Puiu, Maria; Gu, Zhanxi; Feng, Yu; Yuzenkova, Yulia; Zhang, Yu

The expanding field of non-canonical RNA capping: new enzymes and mechanisms

非经典RNA加帽领域的发展:新型酶和机制

Wiedermannová, Jana; Julius, Christina; Yuzenkova, Yulia

High intrinsic hydrolytic activity of cyanobacterial RNA polymerase compensates for the absence of transcription proofreading factors

蓝细菌RNA聚合酶的高固有水解活性弥补了转录校正因子的缺失。

Riaz-Bradley, Amber; James, Katherine; Yuzenkova, Yulia

Metabolic cofactors NADH and FAD act as non-canonical initiating substrates for a primase and affect replication primer processing in vitro

代谢辅因子NADH和FAD作为引物酶的非经典起始底物,在体外影响复制引物的加工。

Julius, Christina; Salgado, Paula S; Yuzenkova, Yulia

RNA capping by mitochondrial and multi-subunit RNA polymerases

线粒体和多亚基RNA聚合酶对RNA的加帽作用

Julius, Christina; Riaz-Bradley, Amber; Yuzenkova, Yulia

Ribonucleoprotein particles of bacterial small non-coding RNA IsrA (IS61 or McaS) and its interaction with RNA polymerase core may link transcription to mRNA fate.

细菌小非编码 RNA IsrA(IS61 或 McaS)的核糖核蛋白颗粒及其与 RNA 聚合酶核心的相互作用可能将转录与 mRNA 的命运联系起来

van Nues Rob W, Castro-Roa Daniel, Yuzenkova Yulia, Zenkin Nikolay