Down-regulation of ATF1 leads to early neuroectoderm differentiation of human embryonic stem cells by increasing the expression level of SOX2
Journal
FASEB Journal
Journal Volume
33
Journal Issue
9
Pages
10577-10592
Date Issued
2019
Author(s)
Yang, Shang-Chih
Liu, Jan-Jan
Wang, Cheng-Kai
Lin, Yu-Tsen
Tsai, Su-Yi
Chen, Wei-Ju
Huang, Wei-Kai
Tu, Po-Wen A.
Lin, Yu-Chen
Chang, Ching-Fang
Cheng, Chih-Lun
Lin, Hsuan
Lai, Chien-Ying
Lin, Chun-Yu
Lee, Yi-Hsuan
Chiu, Yen-Chun
Hsu, Chiao-Ching
Hsu, Shu-Ching
Hsiao, Michael
Schuyler, Scott C.
Lu, Jean
Abstract
gene expression. A novel function of ATF1 was discovered, and these findings contribute to a broader understanding of the very first steps in regulating NE differentiation in hESCs.-Yang, S.-C., Liu, J.-J., Wang, C.-K., Lin, Y.-T., Tsai, S.-Y., Chen, W.-J., Huang, W.-K., Tu, P.-W. A., Lin, Y.-C., Chang, C.-F., Cheng, C.-L., Lin, H., Lai, C.-Y., Lin, C.-Y., Lee, Y.-H., Chiu, Y.-C., Hsu, C.-C., Hsu, S.-C., Hsiao, M., Schuyler, S. C., Lu, F. L., Lu, J. Down-regulation of ATF1 leads to early neuroectoderm differentiation of human embryonic stem cells by increasing the expression level of SOX2.
SDGs
Publisher
John Wiley and Sons Inc.
Type
journal article
