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

Active removal of inhibitory components drives the flagellar Type III Secretion Specificity Switch

主动去除抑制性成分驱动鞭毛III型分泌特异性转换

Chevance, Fabienne F V; Niketic, Dara; Wu, DingBang; Mellor, Carl Ty; Blair, David F; Casjens, Sherwood R; Kinoshita, Miki; Namba, Keiichi; Minamino, Tohru; Hughes, Kelly T

Nanopore sequencing reveals operon-specific ribosome remodeling accompanying naphthyridone resistance in Staphylococcus aureus

纳米孔测序揭示金黄色葡萄球菌萘啶酮耐药性伴随的操纵子特异性核糖体重塑

Copoulos, Dionysius W; Hughes, Kelly T; Chevance, Fabienne F; Burrows, Cynthia J; Fleming, Aaron M; Looper, Ryan E

Mutations in the C-terminal region of the bacteriophage exclusion protein PglX can selectively inactivate restriction in Salmonella

噬菌体排斥蛋白 PglX C 端区域的突变可选择性地使沙门氏菌的限制作用失活。

Wozniak, Christopher E; Hughes, Kelly T; Liou, Theodore G

Targeting early proximal-rod component substrate FlgB to FlhB for flagellar-type III secretion in Salmonella

靶向沙门氏菌鞭毛III型分泌的早期近端杆状体组分底物FlgB至FlhB

Qu, Daofeng; Jiang, Mengxue; Duffin, Calder; Hughes, Kelly T; Chevance, Fabienne F V

Genetic Analysis of the Salmonella FliE Protein That Forms the Base of the Flagellar Axial Structure

构成鞭毛轴向结构基部的沙门氏菌FliE蛋白的基因分析

Hendriksen, Jordan J; Lee, Hee Jung; Bradshaw, Alexander J; Namba, Keiichi; Chevance, Fabienne F V; Minamino, Tohru; Hughes, Kelly T

Type 1 interferon-dependent repression of NLRC4 and iPLA2 licenses down-regulation of Salmonella flagellin inside macrophages

I型干扰素依赖性抑制NLRC4和iPLA2可导致巨噬细胞内沙门氏菌鞭毛蛋白下调。

Akhade, Ajay Suresh; Atif, Shaikh M; Lakshmi, Bhavana S; Dikshit, Neha; Hughes, Kelly T; Qadri, Ayub; Subramanian, Naeha

Thailandamide, a Fatty Acid Synthesis Antibiotic That Is Coexpressed with a Resistant Target Gene

泰国酰胺是一种脂肪酸合成抗生素,它与耐药靶基因共表达

Wozniak, Christopher E; Lin, Zhenjian; Schmidt, Eric W; Hughes, Kelly T; Liou, Theodore G

Type-III secretion pore formed by flagellar protein FliP

由鞭毛蛋白FliP形成的III型分泌孔

Ward, Elizabeth; Renault, Thibaud T; Kim, Eun A; Erhardt, Marc; Hughes, Kelly T; Blair, David F

Nanoscale-length control of the flagellar driveshaft requires hitting the tethered outer membrane

对鞭毛驱动轴进行纳米级长度控制需要击中系绳外膜。

Cohen, Eli J; Ferreira, Josie L; Ladinsky, Mark S; Beeby, Morgan; Hughes, Kelly T

Identical folds used for distinct mechanical functions of the bacterial flagellar rod and hook

细菌鞭毛杆和钩的相同褶皱用于不同的机械功能。

Fujii, Takashi; Kato, Takayuki; Hiraoka, Koichi D; Miyata, Tomoko; Minamino, Tohru; Chevance, Fabienne F V; Hughes, Kelly T; Namba, Keiichi