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

Foxi2 and Sox3 are master transcription regulators that control ectoderm germ layer specification in Xenopus

Foxi2 和 Sox3 是控制非洲爪蟾外胚层生殖层分化的关键转录调控因子。

Hendrickson, Clark L; Blitz, Ira L; Hussein, Amina; Paraiso, Kitt D; Cho, Jin S; Klymkowsky, Michael W; Kofron, Matthew J; Cho, Ken W Y

Maternal and zygotic contributions to H3K4me1 chromatin marking during germ layer formation

母体和合子对胚层形成过程中H3K4me1染色质标记的贡献

Paraiso, Kitt D; Blitz, Ira L; Cho, Ken W Y

Foxh1 is a locus-specific PRC2 recruiter governing germ layer silencing.

Foxh1 是一个位点特异性的 PRC2 招募因子,控制着胚层沉默。

Cho Jin, Hendrickson Clark L, Mar Nathan, Blitz Ira L, Fish Margaret, Wang Wenqi, Cho Ken W Y

Foxi2 and Sox3 are master regulators controlling ectoderm germ layer specification.

Foxi2 和 Sox3 是控制外胚层胚层分化的主调控因子

Hendrickson Clark L, Blitz Ira L, Hussein Amina, Paraiso Kitt D, Cho Jin, Klymkowsky Michael W, Kofron Matthew J, Cho Ken W Y

Uncovering the mesendoderm gene regulatory network through multi-omic data integration.

通过多组学数据整合揭示中内胚层基因调控网络

Jansen Camden, Paraiso Kitt D, Zhou Jeff J, Blitz Ira L, Fish Margaret B, Charney Rebekah M, Cho Jin Sun, Yasuoka Yuuri, Sudou Norihiro, Bright Ann Rose, Wlizla Marcin, Veenstra Gert Jan C, Taira Masanori, Zorn Aaron M, Mortazavi Ali, Cho Ken W Y

Epigenomic dynamics of early Xenopus Embryos

早期非洲爪蟾胚胎的表观基因组动态

Zhou, Jeff Jiajing; Cho, Ken W Y

A multiscale model via single-cell transcriptomics reveals robust patterning mechanisms during early mammalian embryo development

基于单细胞转录组学的多尺度模型揭示了哺乳动物早期胚胎发育过程中稳健的模式形成机制

Cang, Zixuan; Wang, Yangyang; Wang, Qixuan; Cho, Ken W Y; Holmes, William; Nie, Qing

Control of zygotic genome activation in Xenopus

非洲爪蟾合子基因组激活的控制

Blitz, Ira L; Cho, Ken W Y

Genomics Methods for Xenopus Embryos and Tissues

非洲爪蟾胚胎和组织的基因组学方法

Gilchrist, Michael J; Cho, Ken W Y; Veenstra, Gert Jan C

Transcriptomics and Proteomics Methods for Xenopus Embryos and Tissues

非洲爪蟾胚胎和组织的转录组学和蛋白质组学方法

Gilchrist, Michael J; Veenstra, Gert Jan C; Cho, Ken W Y