Histone H3 Lysine 27 demethylases Jmjd3 and Utx are required for T-cell differentiation

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作者
Sugata Manna
Jong Kyong Kim
Catherine Baugé
Margaret Cam
Yongmei Zhao
Jyoti Shetty
Melanie S. Vacchio
Ehydel Castro
Bao Tran
Lino Tessarollo
Rémy Bosselut
机构
[1] Laboratory of Immune Cell Biology,
[2] Center for Cancer Research,undefined
[3] National Cancer Institute,undefined
[4] National Institutes of Health,undefined
[5] Collaborative Bioinformatics Resource,undefined
[6] Center for Cancer Research,undefined
[7] National Cancer Institute,undefined
[8] National Institutes of Health,undefined
[9] Leidos Biomedical Research,undefined
[10] Frederick National Laboratory for Cancer Research,undefined
[11] Mouse Cancer Genetics Program,undefined
[12] Center for Cancer Research,undefined
[13] National Cancer Institute,undefined
[14] National Institutes of Health,undefined
[15] Present address: State Key Laboratory of Ophthalmology,undefined
[16] Zhongshan Ophthalmic Center,undefined
[17] Sun Yat-Sen University,undefined
[18] Guangzhou,undefined
[19] China,undefined
[20] Present address: EA4652 Microenvironnement Cellulaire et Pathologies,undefined
[21] UFR de médecine,undefined
[22] Université de Caen Basse-Normandie,undefined
[23] Caen,undefined
[24] France,undefined
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Although histone H3 lysine 27 trimethylation (H3K27Me3) is associated with gene silencing, whether H3K27Me3 demethylation affects transcription and cell differentiation in vivo has remained elusive. To investigate this, we conditionally inactivated the two H3K27Me3 demethylases, Jmjd3 and Utx, in non-dividing intrathymic CD4+ T-cell precursors. Here we show that both enzymes redundantly promote H3K27Me3 removal at, and expression of, a specific subset of genes involved in terminal thymocyte differentiation, especially S1pr1, encoding a sphingosine-phosphate receptor required for thymocyte egress. Thymocyte expression of S1pr1 was not rescued in Jmjd3- and Utx-deficient male mice, which carry the catalytically inactive Utx homolog Uty, supporting the conclusion that it requires H3K27Me3 demethylase activity. These findings demonstrate that Jmjd3 and Utx are required for T-cell development, and point to a requirement for their H3K27Me3 demethylase activity in cell differentiation.
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