論文 - 詳細
| RRC ID | 60801 |
|---|---|
| 著者 | Nakatake Y, Ko SBH, Sharov AA, Wakabayashi S, Murakami M, Sakota M, Chikazawa N, Ookura C, Sato S, Ito N, Ishikawa-Hirayama M, Mak SS, Jakt LM, Ueno T, Hiratsuka K, Matsushita M, Goparaju SK, Akiyama T, Ishiguro KI, Oda M, Gouda N, Umezawa A, Akutsu H, Nishimura K, Matoba R, Ohara O, Ko MSH. |
| タイトル | Generation and Profiling of 2,135 Human ESC Lines for the Systematic Analyses of Cell States Perturbed by Inducing Single Transcription Factors. |
| ジャーナル | Cell Rep |
| Abstract |
Transcription factors (TFs) play a pivotal role in determining cell states, yet our understanding of the causative relationship between TFs and cell states is limited. Here, we systematically examine the state changes of human pluripotent embryonic stem cells (hESCs) by the large-scale manipulation of single TFs. We establish 2,135 hESC lines, representing three clones each of 714 doxycycline (Dox)-inducible genes including 481 TFs, and obtain 26,998 microscopic cell images and 2,174 transcriptome datasets-RNA sequencing (RNA-seq) or microarrays-48 h after the presence or absence of Dox. Interestingly, the expression of essentially all the genes, including genes located in heterochromatin regions, are perturbed by these TFs. TFs are also characterized by their ability to induce differentiation of hESCs into specific cell lineages. These analyses help to provide a way of classifying TFs and identifying specific sets of TFs for directing hESC differentiation into desired cell types. |
| 巻・号 | 31(7) |
| ページ | 107655 |
| 公開日 | 2020-5-19 |
| DOI | 10.1016/j.celrep.2020.107655 |
| PII | S2211-1247(20)30608-2 |
| PMID | 32433964 |
| MeSH | Cell Differentiation / physiology Cell Line Human Embryonic Stem Cells / cytology Human Embryonic Stem Cells / metabolism* Humans Single-Cell Analysis / methods Transcription Factors / metabolism* |
| IF | 8.109 |
| 引用数 | 0 |
| オルトメトリクス指標 |
オルトメトリクス指標項目
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| 最多言及媒体 | X(Twitter) |
| 各媒体での言及数の合計 | 43 |
| 過去6か月間でのオルトメトリクス指標の変動値 | 0.0 |
| リソース情報 | |
| 遺伝子材料 | Genome Network Project Human cDNA clone (RDB07566) |