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

Mechanisms of cilia regeneration in Xenopus multiciliated epithelium in vivo.

非洲爪蟾多纤毛上皮细胞体内纤毛再生的机制

Rao Venkatramanan G, Subramanianbalachandar Vignesh A, Magaj Magdalena M, Redemann Stefanie, Kulkarni Saurabh S

Accurate and fast segmentation of filaments and membranes in micrographs and tomograms with TARDIS

利用TARDIS技术对显微照片和断层扫描图中的丝状物和膜进行精确快速的分割

Kiewisz, Robert; Fabig, Gunar; Conway, Will; Johnston, Jake; Kostyuchenko, Victor A; Tan, Aaron; Bařinka, Cyril; Clarke, Oliver; Magaj, Magdalena; Yazdkhasti, Hossein; Vallese, Francesca; Lok, Shee-Mei; Redemann, Stefanie; Müller-Reichert, Thomas; Bepler, Tristan

iNOS is necessary for GBP-mediated T. gondii clearance in murine macrophages via vacuole nitration and intravacuolar network collapse

iNOS对于GBP介导的小鼠巨噬细胞中弓形虫的清除是必需的,其机制是通过液泡硝化和液泡内网络崩解。

Xiao-Yu Zhao ,Samantha L Lempke ,Jan C Urbán Arroyo ,Isabel G Brown ,Bocheng Yin ,Magdalena M Magaj ,Nadia K Holness ,Jamison Smiley ,Stefanie Redemann ,Sarah E Ewald

Collapse of late endosomal pH elicits a rapid Rab7 response via the V-ATPase and RILP.

晚期内体 pH 值的崩溃通过 V-ATPase 和 RILP 引发 Rab7 的快速反应

Mulligan Ryan J, Magaj Magdalena M, Digilio Laura, Redemann Stefanie, Yap Chan Choo, Winckler Bettina

Mechanisms of cilia regeneration in Xenopus multiciliated epithelium in vivo

非洲爪蟾多纤毛上皮细胞体内纤毛再生的机制

Rao, Venkatramanan G; Subramanianbalachandar, Vignesharavind; Magaj, Magdalena M; Redemann, Stefanie; Kulkarni, Saurabh S

Collapse of late endosomal pH elicits a rapid Rab7 response via V-ATPase and RILP

晚期内体 pH 值的崩溃通过 V-ATPase 和 RILP 引发快速的 Rab7 反应

R J Mulligan, M M Magaj, L Digilio, S Redemann, C C Yap, B Winckler

Lack of chromokinesin Klp-19 creates a more rigid midzone and affects force transmission during anaphase in C. elegans

缺乏染色质驱动蛋白 Klp-19 会导致中区更加僵硬,并影响秀丽隐杆线虫后期的力量传递

Vitaly Zimyanin, Magdalena Magaj, Che-Hang Yu, Theresa Gibney, Basaran Mustafa, Xavier Horton, Karsten Siller, Louis Cueff, Hélène Bouvrais, Jacques Pécréaux, Daniel Needleman, Stefanie Redemann

Ndc1 drives nuclear pore complex assembly independent of membrane biogenesis to promote nuclear formation and growth

Ndc1 驱动核孔复合物组装,不依赖于膜生物发生,从而促进核形成和生长

Michael Sean Mauro, Gunta Celma, Vitaly Zimyanin, Magdalena M Magaj, Kimberley H Gibson, Stefanie Redemann, Shirin Bahmanyar