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VGLL1 cooperates with TEAD4 to control human trophectoderm lineage specification

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科学数据银行2025-03-27 更新2026-04-23 收录
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Placenta abnormality is one of the key reasons for early pregnancy loss but the regulatory mechanisms underlying placenta formation are largely unknown. Here, we applied a human naïve pluripotent stem cell (PSC) derived TE model to explore the driven regulatory machinery. We demonstrate that VGLL1 (vestigial like family member 1) is crucial for TE self-renewal and TE-specific gene expression, thus suppressing VGLL1 leads to severely impaired cell proliferation and skewed TE induction. VGLL1 exerts its function through interacting with TEAD4 (TEA domain transcription factor 4) and colocalize at target gene promoters and enhancers. Further investigation uncovers the enrichment of H3K27ac active histone marks at genomic regions occupied by VGLL1-TEAD4 complex, indicates a close association between them. Overall, our data reveals the critical function model of VGLL1-TEAD4 in human TE derivation, highlighting a potential interspecies difference between human and mouse TE induction.
提供机构:
"Laboratory of Integrative Biology, Guangzhou Institutes of Biomedicine and Health, Chinese Academy of Sciences, Guangzhou, China."; BGI Research, Shenzhen, China; Yongli Shan; Zhiwei Luo; Yiwei Lai; Haiwei Li; Yueli Yang; Lixin Fu; Babangida Jabir Saeed; Md. Abdul Mazid*; "Department of Systems Biology, School of Life Sciences, Southern University of Science and Technology, Shenzhen, China."; Jinxiu Li; Wenqi Jia; LiangWu; Yunpan Li; Wenjuan Li*; StemCell Research Facility, Sloan Kettering Institute, NewYork, NY, USA; Chuanyu Liu; Longqi Liu; Junjian Lai; "State Key Laboratory for Diagnosis and Treatment of Severe Zoonotic Infectious Diseases, Key Laboratory for Zoonosis Research of theMinistry of Education, Institute of Zoonosis, and College of Veterinary Medicine, Jilin University, Changchun, China."
创建时间:
2025-03-26
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