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Activation of Xist by an evolutionarily conserved function of KDM5C demethylase

Author

Listed:
  • Milan Kumar Samanta

    (University of Michigan Medical School)

  • Srimonta Gayen

    (University of Michigan Medical School
    Indian Institute of Science)

  • Clair Harris

    (University of Michigan Medical School)

  • Emily Maclary

    (University of Michigan Medical School
    University of Utah)

  • Yumie Murata-Nakamura

    (University of Michigan Medical School)

  • Rebecca M. Malcore

    (University of Michigan Medical School)

  • Robert S. Porter

    (University of Michigan Medical School)

  • Patricia M. Garay

    (University of Michigan Medical School
    University of Michigan Medical School)

  • Christina N. Vallianatos

    (University of Michigan Medical School)

  • Paul B. Samollow

    (Texas A&M University)

  • Shigeki Iwase

    (University of Michigan Medical School
    University of Michigan Medical School)

  • Sundeep Kalantry

    (University of Michigan Medical School)

Abstract

XX female and XY male therian mammals equalize X-linked gene expression through the mitotically-stable transcriptional inactivation of one of the two X chromosomes in female somatic cells. Here, we describe an essential function of the X-linked homolog of an ancestral X-Y gene pair, Kdm5c-Kdm5d, in the expression of Xist lncRNA, which is required for stable X-inactivation. Ablation of Kdm5c function in females results in a significant reduction in Xist RNA expression. Kdm5c encodes a demethylase that enhances Xist expression by converting histone H3K4me2/3 modifications into H3K4me1. Ectopic expression of mouse and human KDM5C, but not the Y-linked homolog KDM5D, induces Xist in male mouse embryonic stem cells (mESCs). Similarly, marsupial (opossum) Kdm5c but not Kdm5d also upregulates Xist in male mESCs, despite marsupials lacking Xist, suggesting that the KDM5C function that activates Xist in eutherians is strongly conserved and predates the divergence of eutherian and metatherian mammals. In support, prototherian (platypus) Kdm5c also induces Xist in male mESCs. Together, our data suggest that eutherian mammals co-opted the ancestral demethylase KDM5C during sex chromosome evolution to upregulate Xist for the female-specific induction of X-inactivation.

Suggested Citation

  • Milan Kumar Samanta & Srimonta Gayen & Clair Harris & Emily Maclary & Yumie Murata-Nakamura & Rebecca M. Malcore & Robert S. Porter & Patricia M. Garay & Christina N. Vallianatos & Paul B. Samollow & , 2022. "Activation of Xist by an evolutionarily conserved function of KDM5C demethylase," Nature Communications, Nature, vol. 13(1), pages 1-16, December.
  • Handle: RePEc:nat:natcom:v:13:y:2022:i:1:d:10.1038_s41467-022-30352-1
    DOI: 10.1038/s41467-022-30352-1
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    as
    1. Paul J. Tesar & Josh G. Chenoweth & Frances A. Brook & Timothy J. Davies & Edward P. Evans & David L. Mack & Richard L. Gardner & Ronald D. G. McKay, 2007. "New cell lines from mouse epiblast share defining features with human embryonic stem cells," Nature, Nature, vol. 448(7150), pages 196-199, July.
    2. Colleen A. McHugh & Chun-Kan Chen & Amy Chow & Christine F. Surka & Christina Tran & Patrick McDonel & Amy Pandya-Jones & Mario Blanco & Christina Burghard & Annie Moradian & Michael J. Sweredoski & A, 2015. "The Xist lncRNA interacts directly with SHARP to silence transcription through HDAC3," Nature, Nature, vol. 521(7551), pages 232-236, May.
    3. Karin Jegalian & David C. Page, 1998. "A proposed path by which genes common to mammalian X and Y chromosomes evolve to become X inactivated," Nature, Nature, vol. 394(6695), pages 776-780, August.
    4. Mrinal K. Sarkar & Srimonta Gayen & Surinder Kumar & Emily Maclary & Emily Buttigieg & Michael Hinten & Archana Kumari & Clair Harris & Takashi Sado & Sundeep Kalantry, 2015. "An Xist-activating antisense RNA required for X-chromosome inactivation," Nature Communications, Nature, vol. 6(1), pages 1-13, December.
    5. JongDae Shin & Mary C. Wallingford & Judith Gallant & Chelsea Marcho & Baowei Jiao & Meg Byron & Michael Bossenz & Jeanne B. Lawrence & Stephen N. Jones & Jesse Mager & Ingolf Bach, 2014. "RLIM is dispensable for X-chromosome inactivation in the mouse embryonic epiblast," Nature, Nature, vol. 511(7507), pages 86-89, July.
    6. Cristina Gontan & Eskeatnaf Mulugeta Achame & Jeroen Demmers & Tahsin Stefan Barakat & Eveline Rentmeester & Wilfred van IJcken & J. Anton Grootegoed & Joost Gribnau, 2012. "RNF12 initiates X-chromosome inactivation by targeting REX1 for degradation," Nature, Nature, vol. 485(7398), pages 386-390, May.
    7. Wesley C. Warren & LaDeana W. Hillier & Jennifer A. Marshall Graves & Ewan Birney & Chris P. Ponting & Frank Grützner & Katherine Belov & Webb Miller & Laura Clarke & Asif T. Chinwalla & Shiaw-Pyng Ya, 2008. "Erratum: Genome analysis of the platypus reveals unique signatures of evolution," Nature, Nature, vol. 455(7210), pages 256-256, September.
    8. Emily Maclary & Emily Buttigieg & Michael Hinten & Srimonta Gayen & Clair Harris & Mrinal Kumar Sarkar & Sonya Purushothaman & Sundeep Kalantry, 2014. "Differentiation-dependent requirement of Tsix long non-coding RNA in imprinted X-chromosome inactivation," Nature Communications, Nature, vol. 5(1), pages 1-14, September.
    9. David Brawand & Magali Soumillon & Anamaria Necsulea & Philippe Julien & Gábor Csárdi & Patrick Harrigan & Manuela Weier & Angélica Liechti & Ayinuer Aximu-Petri & Martin Kircher & Frank W. Albert & U, 2011. "The evolution of gene expression levels in mammalian organs," Nature, Nature, vol. 478(7369), pages 343-348, October.
    10. Diego Cortez & Ray Marin & Deborah Toledo-Flores & Laure Froidevaux & Angélica Liechti & Paul D. Waters & Frank Grützner & Henrik Kaessmann, 2014. "Origins and functional evolution of Y chromosomes across mammals," Nature, Nature, vol. 508(7497), pages 488-493, April.
    11. Sundeep Kalantry & Sonya Purushothaman & Randall Bryant Bowen & Joshua Starmer & Terry Magnuson, 2009. "Evidence of Xist RNA-independent initiation of mouse imprinted X-chromosome inactivation," Nature, Nature, vol. 460(7255), pages 647-651, July.
    12. Alvaro Rada-Iglesias & Ruchi Bajpai & Tomek Swigut & Samantha A. Brugmann & Ryan A. Flynn & Joanna Wysocka, 2011. "A unique chromatin signature uncovers early developmental enhancers in humans," Nature, Nature, vol. 470(7333), pages 279-283, February.
    13. JongDae Shin & Michael Bossenz & Young Chung & Hong Ma & Meg Byron & Naoko Taniguchi-Ishigaki & Xiaochun Zhu & Baowei Jiao & Lisa L. Hall & Michael R. Green & Stephen N. Jones & Irm Hermans-Borgmeyer , 2010. "Maternal Rnf12/RLIM is required for imprinted X-chromosome inactivation in mice," Nature, Nature, vol. 467(7318), pages 977-981, October.
    14. Yang Zhou & Linda Shearwin-Whyatt & Jing Li & Zhenzhen Song & Takashi Hayakawa & David Stevens & Jane C. Fenelon & Emma Peel & Yuanyuan Cheng & Filip Pajpach & Natasha Bradley & Hikoyu Suzuki & Masato, 2021. "Platypus and echidna genomes reveal mammalian biology and evolution," Nature, Nature, vol. 592(7856), pages 756-762, April.
    15. Mamta Tahiliani & Pinchao Mei & Rui Fang & Thiago Leonor & Michael Rutenberg & Fumiko Shimizu & Jing Li & Anjana Rao & Yujiang Shi, 2007. "The histone H3K4 demethylase SMCX links REST target genes to X-linked mental retardation," Nature, Nature, vol. 447(7144), pages 601-605, May.
    16. Teresa Robert-Finestra & Beatrice F. Tan & Hegias Mira-Bontenbal & Erika Timmers & Cristina Gontan & Sarra Merzouk & Benedetto Daniele Giaimo & François Dossin & Wilfred F. J. IJcken & John W. M. Mart, 2021. "SPEN is required for Xist upregulation during initiation of X chromosome inactivation," Nature Communications, Nature, vol. 12(1), pages 1-13, December.
    17. François Dossin & Inês Pinheiro & Jan J. Żylicz & Julia Roensch & Samuel Collombet & Agnès Le Saux & Tomasz Chelmicki & Mikaël Attia & Varun Kapoor & Ye Zhan & Florent Dingli & Damarys Loew & Thomas M, 2020. "SPEN integrates transcriptional and epigenetic control of X-inactivation," Nature, Nature, vol. 578(7795), pages 455-460, February.
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