受强制性开放获取政策约束的文章 - Xiuqian Mu了解详情
无法在其他位置公开访问的文章:1 篇
Onecut 转录因子: 调节视网膜发育和退变中的多种细胞命运
D Sapkota, X Mu
中国神经再生研究 (英文版) 10 (6), 899, 2015
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可在其他位置公开访问的文章:28 篇
The succinate receptor GPR91 in neurons has a major role in retinal angiogenesis
P Sapieha, M Sirinyan, D Hamel, K Zaniolo, JS Joyal, JH Cho, JC Honoré, ...
Nature medicine 14 (10), 1067-1076, 2008
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Gene-regulation logic in retinal ganglion cell development: Isl1 defines a critical branch distinct from but overlapping with Pou4f2
X Mu, X Fu, PD Beremand, TL Thomas, WH Klein
Proceedings of the National Academy of Sciences 105 (19), 6942-6947, 2008
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Onecut1 and Onecut2 redundantly regulate early retinal cell fates during development
D Sapkota, H Chintala, F Wu, SJ Fliesler, Z Hu, X Mu
Proceedings of the National Academy of Sciences 111 (39), E4086-E4095, 2014
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Two transcription factors, Pou4f2 and Isl1, are sufficient to specify the retinal ganglion cell fate
F Wu, TJ Kaczynski, S Sethuramanujam, R Li, V Jain, M Slaughter, X Mu
Proceedings of the National Academy of Sciences, 2015
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The LIM homeobox gene Isl1 is required for the correct development of the striatonigral pathway in the mouse
LA Ehrman, X Mu, RR Waclaw, Y Yoshida, CV Vorhees, WH Klein, ...
Proceedings of the National Academy of Sciences 110 (42), E4026-E4035, 2013
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Onecut1 is essential for horizontal cell genesis and retinal integrity
F Wu, R Li, Y Umino, TJ Kaczynski, D Sapkota, S Li, M Xiang, SJ Fliesler, ...
Journal of Neuroscience 33 (32), 13053-13065, 2013
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Onecut 1 and Onecut 2 are potential regulators of mouse retinal development
F Wu, D Sapkota, R Li, X Mu
Journal of Comparative Neurology 520 (5), 952-969, 2012
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The deletion of Math5 disrupts retinal blood vessel and glial development in mice
MM Edwards, DS McLeod, R Li, R Grebe, I Bhutto, X Mu, GA Lutty
Experimental eye research 96 (1), 147-156, 2012
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Single cell transcriptomics reveals lineage trajectory of retinal ganglion cells in wild-type and Atoh7-null retinas
F Wu, JE Bard, J Kann, D Yergeau, D Sapkota, Y Ge, Z Hu, J Wang, T Liu, ...
Nature Communications 12 (1), 1465, 2021
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Isl1 and Pou4f2 form a complex to regulate target genes in developing retinal ganglion cells
R Li, F Wu, R Ruonala, D Sapkota, Z Hu, X Mu
PloS one 9 (3), e92105, 2014
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Reprogramming amacrine and photoreceptor progenitors into retinal ganglion cells by replacing Neurod1 with Atoh7
CA Mao, JH Cho, J Wang, Z Gao, P Pan, WW Tsai, LJ Frishman, WH Klein
Development 140 (3), 541-551, 2013
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Reprogramming Müller glia to regenerate ganglion-like cells in adult mouse retina with developmental transcription factors
L Todd, W Jenkins, C Finkbeiner, MJ Hooper, PC Donaldson, M Pavlou, ...
Science advances 8 (47), eabq7219, 2022
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Genetic interactions between Brn3 transcription factors in retinal ganglion cell type specification
M Shi, SR Kumar, O Motajo, F Kretschmer, X Mu, TC Badea
PloS one 8 (10), e76347, 2013
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Regulation of Brn3b by DLX1 and DLX2 is required for retinal ganglion cell differentiation in the vertebrate retina
Q Zhang, J Zagozewski, S Cheng, R Dixit, S Zhang, J de Melo, X Mu, ...
Development 144 (9), 1698-1711, 2017
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Transcriptome of Atoh7 retinal progenitor cells identifies new Atoh7‐dependent regulatory genes for retinal ganglion cell formation
Z Gao, CA Mao, P Pan, X Mu, WH Klein
Developmental neurobiology 74 (11), 1123-1140, 2014
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Overlapping spatiotemporal patterns of regulatory gene expression are required for neuronal progenitors to specify retinal ganglion cell fate
T Kiyama, CA Mao, JH Cho, X Fu, P Pan, X Mu, WH Klein
Vision research 51 (2), 251-259, 2011
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Epitope‐tagging Math5 and Pou4f2: New tools to study retinal ganglion cell development in the mouse
X Fu, T Kiyama, R Li, M Russell, WH Klein, X Mu
Developmental dynamics: an official publication of the American Association …, 2009
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Genetic control of retinal ganglion cell genesis
J Lyu, X Mu
Cellular and Molecular Life Sciences 78, 4417-4433, 2021
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Key transcription factors influence the epigenetic landscape to regulate retinal cell differentiation
Y Ge, X Chen, N Nan, J Bard, F Wu, D Yergeau, T Liu, J Wang, X Mu
Nucleic acids research 51 (5), 2151-2176, 2023
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