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

Basal stem cell progeny establish their apical surface in a junctional niche during turnover of an adult barrier epithelium

基底干细胞后代在成人屏障上皮细胞的周转过程中,在连接微环境内建立其顶端表面

Anthony Galenza #, Paola Moreno-Roman #, Yu-Han Su, Lehi Acosta-Alvarez, Alain Debec, Antoine Guichet, Jon-Michael Knapp, Caroline Kizilyaprak, Bruno M Humbel, Irina Kolotuev, Lucy Erin O'Brien

The Enigma of Centriole Loss in the 1182-4 Cell Line

1182-4细胞系中心粒丢失之谜

Debec, Alain; Loppin, Benjamin; Zheng, Chunfeng; Liu, Xiuwen; Megraw, Timothy L

Mechanisms of Horizontal Cell-to-Cell Transfer of Wolbachia spp. in Drosophila melanogaster

果蝇体内沃尔巴克氏体水平细胞间转移的机制

White, Pamela M; Pietri, Jose E; Debec, Alain; Russell, Shelbi; Patel, Bhavin; Sullivan, William

Reliance of Wolbachia on High Rates of Host Proteolysis Revealed by a Genome-Wide RNAi Screen of Drosophila Cells

果蝇细胞全基因组 RNAi 筛选揭示沃尔巴克氏体对宿主高蛋白水解率的依赖

Pamela M White, Laura R Serbus, Alain Debec, Adan Codina, Walter Bray, Antoine Guichet, R Scott Lokey, William Sullivan

Establishment and mitotic characterization of new Drosophila acentriolar cell lines from DSas-4 mutant

从DSas-4突变体中建立和有丝分裂表征新的果蝇无中心粒细胞系

Lecland, Nicolas; Debec, Alain; Delmas, Audrey; Moutinho-Pereira, Sara; Malmanche, Nicolas; Bouissou, Anais; Dupré, Clémence; Jourdan, Aimie; Raynaud-Messina, Brigitte; Maiato, Helder; Guichet, Antoine

A cell-based screen reveals that the albendazole metabolite, albendazole sulfone, targets Wolbachia

一项基于细胞的筛选表明,阿苯达唑代谢物阿苯达唑砜靶向沃尔巴克氏体。

Serbus, Laura R; Landmann, Frederic; Bray, Walter M; White, Pamela M; Ruybal, Jordan; Lokey, R Scott; Debec, Alain; Sullivan, William

Centrioles: active players or passengers during mitosis?

中心粒:有丝分裂过程中的积极参与者还是乘客?

Debec, Alain; Sullivan, William; Bettencourt-Dias, Monica

Microtubule cytoskeleton remodeling by acentriolar microtubule-organizing centers at the entry and exit from mitosis in Drosophila somatic cells

果蝇体细胞有丝分裂进入和退出阶段,无中心粒微管组织中心介导的微管细胞骨架重塑

Moutinho-Pereira, Sara; Debec, Alain; Maiato, Helder

Metallothionein genes in Drosophila melanogaster constitute a dual system

果蝇中的金属硫蛋白基因构成了一个双重系统

Mokdad, R; Debec, A; Wegnez, M