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Nanog has been implicated in establishment of pluripotency in mammals and in zygotic genome activation in zebrafish. In this study, we characterize the development of MZ (maternal and zygotic null) mutant zebrafish embryos Without functional Nanog, epiboly is severely affected, embryo axes do not form and massive cell death starts at the end of gastrulation. We show that three independent defects in MZ mutants contribute to epiboly failure: yolk microtubule organization required for epiboly is abnormal, maternal mRNA fails to degrade owing to the absence of miR-430, and actin structure of the yolk syncytial layer does not form properly. We further demonstrate that the cell death in MZ embryos is cell-autonomous. Nanog is necessary for correct spatial expression of the ventral-specifying genes , and , and the neural transcription factor It is also required for the correctly timed activation of endoderm genes and for the degradation of maternal mRNA via miR-430 Our findings suggest that maternal Nanog coordinates several gene regulatory networks that shape the embryo during gastrulation.
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http://dx.doi.org/10.1242/dev.155366 | DOI Listing |
Gene
September 2025
Central Laboratory, Beijing Obstetrics and Gynecology Hospital, Capital Medical University, Beijing Maternal and Child Health Care Hospital, Beijing 100006, China. Electronic address:
Premature ovarian insufficiency (POI) is a severe disease that leads to female infertility. Previous studies have suggested that genetic mutations are one of the causes of POI. In order to explore novel pathogenic genes associated with POI, we performed whole-exome sequencing on 111 patients with POI.
View Article and Find Full Text PDFPLoS Biol
July 2025
Department of Biological Sciences, University of Pittsburgh, Pittsburgh, Pennsylvania, United States of America.
After egg fertilization, an initially silent embryonic genome is transcriptionally activated during the maternal-to-zygotic transition. In zebrafish, maternal vertebrate pluripotency factors Nanog, Pou5f3 (OCT4 homolog), and Sox19b (SOX2 homolog) (NPS) play essential roles in orchestrating embryonic genome activation, acting as "pioneers" that open condensed chromatin and mediate acquisition of activating histone modifications. However, some embryonic gene transcription still occurs in the absence of these factors, suggesting the existence of other mechanisms regulating genome activation.
View Article and Find Full Text PDFBiology (Basel)
June 2025
College of Animal Science and Technology, Tarim University, Alar 843300, China.
Zygotic genome activation (ZGA) marks the critical transition from reliance on maternal transcripts to the initiation of embryonic transcription early in development. Despite extensive characterization in model species, the regulatory framework of ZGA in sheep remains poorly defined. Here, we applied single-cell RNA sequencing (Smart-seq2) to in vivo- and in vitro-derived sheep embryos at the 8-, 16-, and 32-cell stages.
View Article and Find Full Text PDFUp to 30% of acute myeloid leukemia (AML) patients face unfavorable outcomes due to the FMS-like receptor tyrosine kinase-3 (FLT3) internal tandem duplication (ITD) mutation. Although FLT3 inhibitors show encouraging outcomes in treatment, they fail to eliminate leukemia stem cells, the origin of persistent and resistant lesions. Exploration of the mechanism in FLT3-ITD AML maintenance and chemoresistance is crucial for the development of novel therapeutic approaches.
View Article and Find Full Text PDFFASEB J
March 2025
Key Laboratory of Organ Regeneration and Transplantation of Ministry of Education, First Hospital of Jilin University, Jilin University, Changchun, China.
As the first acetylated nucleoside to be discovered, N-acetyltransferase 10 (NAT10)-catalyzed RNA N4-acetylcytidine (acC) modification is involved in the occurrence of various diseases. However, the roles of RNA acC in preimplantation embryo development still need more detailed studies. Here, we analyzed the role of RNA acC in preimplanted embryonic development in mice through Nat10 siRNA microinjection and growing oocyte stage-specific Nat10 knockout (Zp3-Nat10).
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