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Zhang, Yi

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Zhang

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Zhang, Yi

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Now showing 1 - 2 of 2
  • Publication

    Ikbkap/Elp1 Deficiency Causes Male Infertility by Disrupting Meiotic Progression

    (Public Library of Science, 2013) Lin, Fu-Jung; Shen, Li; Jang, Chuan-Wei; Falnes, Pål Ø.; Zhang, Yi

    Mouse Ikbkap gene encodes IKAP—one of the core subunits of Elongator—and is thought to be involved in transcription. However, the biological function of IKAP, particularly within the context of an animal model, remains poorly characterized. We used a loss-of-function approach in mice to demonstrate that Ikbkap is essential for meiosis during spermatogenesis. Absence of Ikbkap results in defects in synapsis and meiotic recombination, both of which result in increased apoptosis and complete arrest of gametogenesis. In Ikbkap-mutant testes, a few meiotic genes are down-regulated, suggesting IKAP's role in transcriptional regulation. In addition, Ikbkap-mutant testes exhibit defects in wobble uridine tRNA modification, supporting a conserved tRNA modification function from yeast to mammals. Thus, our study not only reveals a novel function of IKAP in meiosis, but also suggests that IKAP contributes to this process partly by exerting its effect on transcription and tRNA modification.

  • Publication

    Genomic imprinting of Xist by maternal H3K27me3

    (Cold Spring Harbor Laboratory, 2017-10-01) Inoue, Azusa; Jiang, Lan; Lu, Falong; Zhang, Yi

    Maternal imprinting at the Xist gene is essential to achieve paternal allele-specific imprinted X-chromosome inactivation (XCI) in female mammals. However, the mechanism underlying Xist imprinting is unclear. Here we show that the Xist locus is coated with a broad H3K27me3 domain that is established during oocyte growth and persists through preimplantation development in mice. Loss of maternal H3K27me3 induces maternal Xist expression and maternal XCI in preimplantation embryos. Our study thus identifies maternal H3K27me3 as the imprinting mark of Xist.