Search Results - "Dang, Yanna"

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  1. 1

    Base editing in bovine embryos reveals a species-specific role of SOX2 in regulation of pluripotency by Luo, Lei, Shi, Yan, Wang, Huanan, Wang, Zizengchen, Dang, Yanna, Li, Shuang, Wang, Shaohua, Zhang, Kun

    Published in PLoS genetics (05-07-2022)
    “…The emergence of the first three lineages during development is orchestrated by a network of transcription factors, which are best characterized in mice…”
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    Journal Article
  2. 2

    Overlapping functions of RBBP4 and RBBP7 in regulating cell proliferation and histone H3.3 deposition during mouse preimplantation development by Xiao, Lieying, Dang, Yanna, Hu, Bingjie, Luo, Lei, Zhao, Panpan, Wang, Shaohua, Zhang, Kun

    Published in Epigenetics (03-10-2022)
    “…Preimplantation development is critical for reproductive successes in mammals. Thus, it is important to understand how preimplantation embryogenesis is…”
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  3. 3

    Evolutionary and Molecular Characterization of liver-enriched gene 1 by Dang, Yanna, Wang, Jin-Yang, Liu, Chen, Zhang, Kun, Jinrong, Peng, He, Jin

    Published in Scientific reports (06-03-2020)
    “…Liver-enriched gene 1 ( Leg1 ) is a newly identified gene with little available functional information. To evolutionarily and molecularly characterize Leg1…”
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  4. 4

    Essential roles of HDAC1 and 2 in lineage development and genome-wide DNA methylation during mouse preimplantation development by Zhao, Panpan, Wang, Huanan, Wang, Han, Dang, Yanna, Luo, Lei, Li, Shuang, Shi, Yan, Wang, Lefeng, Wang, Shaohua, Mager, Jesse, Zhang, Kun

    Published in Epigenetics (02-04-2020)
    “…Epigenetic modifications, including DNA methylation and histone modifications, are reprogrammed considerably following fertilization during mammalian early…”
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  5. 5

    Factors affecting early embryonic development in cattle: relevance for bovine cloning by DANG, Yanna, ZHANG, Kun

    “…Female infertility represents a major challenge for improving the production efficiency in the dairy industry. Historically, fertility has declined whereas…”
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    Journal Article
  6. 6

    SIN3A Regulates Porcine Early Embryonic Development by Modulating CCNB1 Expression by Luo, Lei, Dang, Yanna, Shi, Yan, Zhao, Panpan, Zhang, Yunhai, Zhang, Kun

    “…SIN3A is the central scaffold protein of the SIN3/histone deacetylase (HDAC) transcriptional repressor complex. SIN3A participates in the mouse preimplantation…”
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  7. 7

    NOTCH signaling pathway is required for bovine early embryonic development by Li, Shuang, Shi, Yan, Dang, Yanna, Luo, Lei, Hu, Bingjie, Wang, Shaohua, Wang, Huanan, Zhang, Kun

    Published in Biology of reproduction (03-08-2021)
    “…The NOTCH signaling pathway plays an important role in regulating various biological processes, including lineage specification and apoptosis. Multiple…”
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  8. 8

    The nucleolar protein NOP2 is required for nucleolar maturation and ribosome biogenesis during preimplantation development in mammals by Wang, Huanan, Wang, Lefeng, Wang, Zizengchen, Dang, Yanna, Shi, Yan, Zhao, Panpan, Zhang, Kun

    Published in The FASEB journal (01-02-2020)
    “…The maternal nucleolus plays an indispensable role in zygotic genome activation (ZGA) and early embryonic development in mice. During oocyte‐to‐embryo…”
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  9. 9

    Linker histone H1FOO is required for bovine preimplantation development by regulating lineage specification and chromatin structure by Li, Shuang, Shi, Yan, Dang, Yanna, Hu, Bingjie, Xiao, Lieying, Zhao, Panpan, Wang, Shaohua, Zhang, Kun

    Published in Biology of reproduction (10-12-2022)
    “…Linker histone H1 binds to the nucleosome and is implicated in the regulation of the chromatin structure and function. The H1 variant H1FOO is heavily…”
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  10. 10

    The lysine deacetylase activity of histone deacetylases 1 and 2 is required to safeguard zygotic genome activation in mice and cattle by Dang, Yanna, Li, Shuang, Zhao, Panpan, Xiao, Lieying, Wang, Lefeng, Shi, Yan, Luo, Lei, Wang, Shaohua, Wang, Huanan, Zhang, Kun

    Published in Development (Cambridge) (01-06-2022)
    “…The genome is transcriptionally inert at fertilization and must be activated through a remarkable developmental process called zygotic genome activation (ZGA)…”
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    Journal Article
  11. 11

    KDM5-mediated redistribution of H3K4me3 is required for oocyte-to-embryonic transition in cattle by Dang, Yanna, Luo, Lei, Shi, Yan, Li, Shuang, Wang, Shaohua, Zhang, Kun

    Published in Biology of reproduction (13-06-2022)
    “…Reprogramming of histone modifications is critical to safeguard correct gene expression profile during preimplantation development. Of interest, trimethylation…”
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    Journal Article
  12. 12

    Functional roles of the chromatin remodeler SMARCA5 in mouse and bovine preimplantation embryos by Shi, Yan, Zhao, Panpan, Dang, Yanna, Li, Shuang, Luo, Lei, Hu, Bingjie, Wang, Shaohua, Wang, Huanan, Zhang, Kun

    Published in Biology of reproduction (01-08-2021)
    “…Upon fertilization, extensive chromatin reprogramming occurs during preimplantation development. Growing evidence reveals species-dependent regulations of this…”
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    Journal Article
  13. 13

    NOTCH signaling pathway is required for bovine early embryonic development by Li, Shuang, Shi, Yan, Dang, Yanna, Luo, Lei, Hu, Bingjie, Wang, Shaohua, Wang, Huanan, Zhang, Kun

    Published in Biology of reproduction (01-08-2021)
    “…The NOTCH signaling pathway plays an important role in regulating various biological processes, including lineage specification and apoptosis. Multiple…”
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    Journal Article
  14. 14

    Sin3a regulates the developmental progression through morula-to-blastocyst transition via Hdac1 by Zhao, Panpan, Li, Shuang, Wang, Huanan, Dang, Yanna, Wang, Lefeng, Liu, Tong, Wang, Shaohua, Li, Xinhong, Zhang, Kun

    Published in The FASEB journal (01-11-2019)
    “…Suppressor interacting 3a (Sin3a) is a scaffold component of the chromatin repressive complex Sin3/histone deacetylase (Hdac). Sin3a has been shown as a hub…”
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  15. 15

    Sin3a regulates the developmental progression through morula‐to‐blastocyst transition via Hdacl by Zhao, Panpan, Li, Shuang, Wang, Huanan, Dang, Yanna, Wang, Lefeng, Liu, Tong, Wang, Shaohua, Li, Xinhong, Zhang, Kun

    Published in The FASEB journal (01-11-2019)
    “…Suppressor interacting 3a (Sin3a) is a scaffold component of the chromatin repressive complex Sin3/histone deacetylase (Hdac). Sin3a has been shown as a hub…”
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    Journal Article
  16. 16

    Aminopeptidase N-null neonatal piglets are protected from transmissible gastroenteritis virus but not porcine epidemic diarrhea virus by Luo, Lei, Wang, Shaohua, Zhu, Lin, Fan, Baochao, Liu, Tong, Wang, Lefeng, Zhao, Panpan, Dang, Yanna, Sun, Pei, Chen, Jianwen, Zhang, Yunhai, Chang, Xinjian, Yu, Zhengyu, Wang, Huanan, Guo, Rongli, Li, Bin, Zhang, Kun

    Published in Scientific reports (12-09-2019)
    “…Swine enteric diseases have caused significant economic loss and have been considered as the major threat to the global swine industry. Several coronaviruses,…”
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  17. 17

    Identification of ADPKD-Related Genes and Pathways in Cells Overexpressing PKD2 by Zhang, Zhe, Dang, Yanna, Wang, Zizengceng, Wang, Huanan, Pan, Yuchun, He, Jin

    Published in Genes (22-01-2020)
    “…Consistent with the gene dosage effect hypothesis, renal cysts can arise in transgenic murine models overexpressing either or , which are causal genes for…”
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  18. 18

    Transcriptomic Prediction of Pig Liver-Enriched Gene 1 Functions in a Liver Cell Line by Zhang, Zhe, Wang, Zizengchen, Dang, Yanna, Wang, Jinyang, Jayaprakash, Sakthidasan, Wang, Huanan, He, Jin

    Published in Genes (10-04-2020)
    “…The newly identified liver-enriched gene 1 ( ) encodes a protein with a characteristic domain of unknown function 781 (DUF781/LEG1), constituting a protein…”
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  19. 19

    The lysine deacetylase activity of HDAC1/2 is required to safeguard zygotic genome activation in mice and cattle by Dang, Yanna, Li, Shuang, Zhao, Panpan, Xiao, Lieying, Wang, Lefeng, Shi, Yan, Luo, Lei, Wang, Shaohua, Wang, Huanan, Zhang, Kun

    Published in Development (Cambridge) (16-05-2022)
    “…The genome is transcriptionally inert at fertilization and must be activated through a remarkable developmental process called zygotic genome activation (ZGA)…”
    Get full text
    Journal Article