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

Orthogonal chemical genomics approaches reveal genomic targets for increasing anaerobic chemical tolerance in Zymomonas mobilis

正交化学基因组学方法揭示了提高运动发酵单胞菌厌氧化学耐受性的基因组靶点

Eckmann, Jacob B; Enright Steinberger, Amy L; Davies, Morgan; Whelan, Elizabeth; Myers, Kevin S; Robinson, Margaret L; Banta, Amy B; Lal, Piyush B; Coon, Joshua J; Sato, Trey K; Kiley, Patricia J; Peters, Jason M

The promise of CRISPR-associated transposons for bacterial functional genomics

CRISPR相关转座子在细菌功能基因组学中的应用前景

Banta, Amy B; Cuellar, Rodrigo A; Nadig, Nischala; Davis, Bryce C; Peters, Jason M

Physiological roles of an Acinetobacter-specific σ factor.

不动杆菌特异性 σ 因子的生理作用

Bacon Emily E, Myers Kevin S, Iruegas-López Rubén, Banta Amy B, Place Michael, Ebersberger Ingo, Peters Jason M

Comprehensive genetic interaction analysis of the Bacillus subtilis envelope using double-CRISPRi

利用双重CRISPRi技术对枯草芽孢杆菌包膜进行全面的遗传互作分析

Koo, Byoung-Mo; Todor, Horia; Sun, Jiawei; van Gestel, Jordi; Hawkins, John S; Hearne, Cameron C; Banta, Amy B; Huang, Kerwyn Casey; Peters, Jason M; Gross, Carol A

Orthogonal chemical genomics approaches reveal genomic targets for increasing anaerobic chemical tolerance in Zymomonas mobilis.

正交化学基因组学方法揭示了提高运动发酵单胞菌厌氧化学耐受性的基因组靶点

Eckmann Jacob B, Enright Steinberger Amy L, Davies Morgan, Whelan Elizabeth, Myers Kevin S, Robinson Margaret L, Banta Amy B, Lal Piyush B, Coon Joshua J, Sato Trey K, Kiley Patricia J, Peters Jason M

Investigating Pseudomonas aeruginosa Gene Function During Pathogenesis Using Mobile-CRISPRi.

利用 Mobile-CRISPRi 研究铜绿假单胞菌致病过程中的基因功能

Yu Michelle A, Banta Amy B, Ward Ryan D, Prasad Neha K, Kwon Michael S, Rosenberg Oren S, Peters Jason M

Structural basis for transcription activation by Crl through tethering of σ(S) and RNA polymerase

Crl通过与σ(S)和RNA聚合酶的连接激活转录的结构基础

Cartagena, Alexis Jaramillo; Banta, Amy B; Sathyan, Nikhil; Ross, Wilma; Gourse, Richard L; Campbell, Elizabeth A; Darst, Seth A

Structure of the RNA polymerase assembly factor Crl and identification of its interaction surface with sigma S

RNA聚合酶组装因子Crl的结构及其与σS相互作用表面的鉴定

Banta, Amy B; Cuff, Marianne E; Lin, Hueylie; Myers, Angela R; Ross, Wilma; Joachimiak, Andrzej; Gourse, Richard L

Key features of σS required for specific recognition by Crl, a transcription factor promoting assembly of RNA polymerase holoenzyme

σS 的关键特征是 Crl(一种促进 RNA 聚合酶全酶组装的转录因子)特异性识别所必需的。

Banta, Amy B; Chumanov, Robert S; Yuan, Andy H; Lin, Hueylie; Campbell, Elizabeth A; Burgess, Richard R; Gourse, Richard L