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

High-sensitivity in situ detection of Sox21 reveals transcript asymmetry from the zygote stage

利用高灵敏度原位检测Sox21揭示了合子阶段的转录本不对称性

Sanchez-Vasquez, Estefania; Nawarungruang, Gyda; Meglicki, Maciej; Bronner, Marianne E; Zernicka-Goetz, Magdalena

Fertilization triggers early proteomic symmetry breaking in mammalian embryos.

受精会引发哺乳动物胚胎早期蛋白质组对称性的破坏。

Iwamoto-Stohl Lisa K, Petelski Aleksandra A, Quan Baiyi, Meglicki Maciej, Fu Audrey, Nakagawa Shoma, McMahon Breanna, Wang Ting-Yu, Khan Saad, Specht Harrison, Huffman Gray, Derks Jason, Junyent Sergi, Weatherbee Bailey A T, Weberling Antonia, Gantner Carlos W, Mandelbaum Rachel S, Paulson Richard J, Lam Lisa, Chou Tsui-Fen, Slavov Nikolai, Zernicka-Goetz Magdalena

Role of CEBPa in trophectoderm competence installment

CEBPa在滋养外胚层发育能力建立中的作用

Xiao Wei ,Irepan Salvador-Martinez ,Maciej Meglicki ,Marcos Plana-Carmona ,Antonios Klonizakis ,Barbara Pernaute ,Manuel Irimia ,Gregoire Stik ,Mina Popovic ,Guillem Torcal Garcia ,Holger Heyn ,Magdalena Zernicka-Goetz ,Thomas Graf

Asynchronous mouse embryo polarization leads to heterogeneity in cell fate specification

小鼠胚胎极化异步性导致细胞命运决定异质性。

Lamba, Adiyant; Zhu, Meng; Meglicki, Maciej; Czukiewska, Sylwia; Balasubramaniam, Lakshmi; Hadas, Ron; Weishaupt, Nina; Patel, Ekta M; Kavanagh, Yu Hua; Wang, Ran; Jing, Naihe; Zernicka-Goetz, Magdalena

Asynchronous mouse embryo polarization leads to heterogeneity in cell fate specification

小鼠胚胎极化异步性导致细胞命运决定异质性。

Lamba, Adiyant; Zhu, Meng; Meglicki, Maciej; Czukiewska, Sylwia; Balasubramaniam, Lakshmi; Hadas, Ron; Weishaupt, Nina; Patel, Ekta M; Kavanagh, Yu Hua; Wang, Ran; Jing, Naihe; Zernicka-Goetz, Magdalena

Tead4 and Tfap2c generate bipotency and a bistable switch in totipotent embryos to promote robust lineage diversification

Tead4 和 Tfap2c 在全能胚胎中产生双能性和双稳态开关,以促进强大的谱系多样化

Meng Zhu, Maciej Meglicki, Adiyant Lamba, Peizhe Wang, Christophe Royer, Karen Turner, Muhammad Abdullah Jauhar, Celine Jones, Tim Child, Kevin Coward, Jie Na, Magdalena Zernicka-Goetz

Blastomere size in the human 2-cell embryo predicts the division order that leads to imbalanced lineage contribution to the future body

人类双细胞胚胎中卵裂球的大小可以预测细胞分裂顺序,从而导致未来身体各谱系贡献的不平衡。

Zernicki-Glover, Simon; Stanislawska, Nicola; Patel, Ekta M; Kavanagh, Yu Hua; Meglicki, Maciej

Importance of the pluripotency factor LIN28 in the mammalian nucleolus during early embryonic development

多能性因子 LIN28 在哺乳动物核仁早期胚胎发育过程中的重要性

Edgar J Vogt, Maciej Meglicki, Kristina Ilka Hartung, Ewa Borsuk, Rüdiger Behr

Appearance and heterochromatin localization of HP1α in early mouse embryos depends on cytoplasmic clock and H3S10 phosphorylation

小鼠早期胚胎中 HP1α 的出现和异染色质定位取决于细胞质时钟和 H3S10 磷酸化

Maciej Meglicki, Marta Teperek-Tkacz, Ewa Borsuk