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

Robust and resource-optimal dynamic pattern formation of Min proteins in vivo.

Min蛋白在体内形成稳健且资源最优的动态模式

Ren Ziyuan, Weyer Henrik, Sandler Michael, Würthner Laeschkir, Fu Haochen, Tangtartharakul Chanin B, Li Dongyang, Sou Cindy, Villarreal Daniel, Kim Judy E, Frey Erwin, Jun Suckjoon

Dispensability of extrinsic DnaA regulators in Escherichia coli cell-cycle control

外源性 DnaA 调节剂在大肠杆菌细胞周期控制中的可有可无

Boesen, Thias Oberg; Charbon, Godefroid; Fu, Haochen; Jensen, Cara; Sandler, Michael; Jun, Suckjoon; Løbner-Olesen, Anders

Replication initiation in bacteria: precision control based on protein counting

细菌复制起始:基于蛋白质计数的精确控制

Fu, Haochen; Xiao, Fangzhou; Jun, Suckjoon

Bacterial Replication Initiation as Precision Control by Protein Counting

利用蛋白质计数精确控制细菌复制起始

Fu, Haochen; Xiao, Fangzhou; Jun, Suckjoon

Quantitative Examination of Five Stochastic Cell-Cycle and Cell-Size Control Models for Escherichia coli and Bacillus subtilis

对大肠杆菌和枯草芽孢杆菌的五种随机细胞周期和细胞大小控制模型进行定量检验

Le Treut, Guillaume; Si, Fangwei; Li, Dongyang; Jun, Suckjoon

Mechanistic Origin of Cell-Size Control and Homeostasis in Bacteria

细菌细胞大小控制和稳态的机制起源

Si, Fangwei; Le Treut, Guillaume; Sauls, John T; Vadia, Stephen; Levin, Petra Anne; Jun, Suckjoon

Cell Boundary Confinement Sets the Size and Position of the E. coli Chromosome

细胞边界限制决定了大肠杆菌染色体的大小和位置

Wu, Fabai; Swain, Pinaki; Kuijpers, Louis; Zheng, Xuan; Felter, Kevin; Guurink, Margot; Solari, Jacopo; Jun, Suckjoon; Shimizu, Thomas S; Chaudhuri, Debasish; Mulder, Bela; Dekker, Cees

Control of Bacillus subtilis Replication Initiation during Physiological Transitions and Perturbations

生理转变和干扰过程中枯草芽孢杆菌复制起始的控制

John T Sauls, Sarah E Cox, Quynh Do, Victoria Castillo, Zulfar Ghulam-Jelani, Suckjoon Jun

Fundamental principles in bacterial physiology-history, recent progress, and the future with focus on cell size control: a review

细菌生理学基本原理——历史、最新进展及未来展望(以细胞大小控制为重点):综述

Jun, Suckjoon; Si, Fangwei; Pugatch, Rami; Scott, Matthew

Synthesis and degradation of FtsZ quantitatively predict the first cell division in starved bacteria

FtsZ 的合成和降解定量预测饥饿细菌的第一次细胞分裂

Karthik Sekar, Roberto Rusconi, John T Sauls, Tobias Fuhrer, Elad Noor, Jen Nguyen, Vicente I Fernandez, Marieke F Buffing, Michael Berney, Suckjoon Jun, Roman Stocker, Uwe Sauer