Publisher Correction: Tet2 and Tet3 in B cells are required to repress CD86 and prevent autoimmunity

被引:0
|
作者
Shinya Tanaka
Wataru Ise
Takeshi Inoue
Ayako Ito
Chisato Ono
Yoshihito Shima
Shuhei Sakakibara
Manabu Nakayama
Kentaro Fujii
Ikuo Miura
Jafar Sharif
Haruhiko Koseki
Pandelakis A. Koni
Indu Raman
Quan-Zhen Li
Masato Kubo
Katsunori Fujiki
Ryuichiro Nakato
Katsuhiko Shirahige
Hiromitsu Araki
Fumihito Miura
Takashi Ito
Eiryo Kawakami
Yoshihiro Baba
Tomohiro Kurosaki
机构
[1] Osaka University,Laboratory of Lymphocyte Differentiation, WPI Immunology Frontier Research Center
[2] Kyushu University,Division of Immunology and Genome Biology, Medical Institute of Bioregulation
[3] Tokyo University of Science,Division of Molecular Pathology, Research Institute for Biomedical Science
[4] Osaka University,Laboratory of Thermo
[5] Osaka University,Therapeutics for Vascular Dysfunction
[6] Kazusa DNA Research Institute,Laboratory of Immune Regulation, WPI Immunology Frontier Research Center
[7] RIKEN BioResource Research Center,Laboratory of Medical Omics Research
[8] RIKEN Center for Integrative Medical Sciences,Technology and Development Team for Mouse Phenotype Analysis
[9] Chiba University,Laboratory of Developmental Genetics
[10] Augusta University,Advanced Research Departments, Graduate School of Medicine
[11] University of Texas Southwestern Medical Center,Georgia Cancer Center
[12] RIKEN Center for Integrative Medical Sciences,Microarray Core Facility, Department of Immunology
[13] The University of Tokyo,Laboratory for Cytokine Regulation
[14] Kyushu University Graduate School of Medical Sciences,Institute of Quantitative Biosciences
[15] Kyushu University,Department of Biochemistry
[16] Medical Sciences Innovation Hub Program,Department of Artificial Intelligence Medicine, Graduate School of Medicine
[17] RIKEN,Laboratory of Lymphocyte Differentiation
[18] Chiba University,undefined
[19] RIKEN Center for Integrative Medical Sciences,undefined
来源
Nature Immunology | 2020年 / 21卷
关键词
D O I
暂无
中图分类号
学科分类号
摘要
An amendment to this paper has been published and can be accessed via a link at the top of the paper.
引用
收藏
页码:1611 / 1612
页数:1
相关论文
共 50 条
  • [21] Concomitant loss of TET2 and TET3 results in T cell expansion and genomic instability in mice
    Gioulbasani, Marianthi
    Aijo, Tarmo
    Liu, Siyao
    Montgomery, Stephanie A.
    Montgomery, Nathan D.
    Corcoran, David
    Tsagaratou, Ageliki
    COMMUNICATIONS BIOLOGY, 2024, 7 (01)
  • [22] Concomitant loss of TET2 and TET3 results in oligoclonal T cell expansion and genomic instability
    Gioulbasani, Marianthi
    Aijo, Tarmo
    Montgomery, Stephanie
    Montgomenry, Nathan
    Tsagaratou, Ageliki
    JOURNAL OF IMMUNOLOGY, 2024, 212 (01):
  • [23] TET2 and TET3 play essential roles in Treg-specific DNA demethylation and Treg stability
    Nakatsukasa, H.
    Yoshimura, A.
    EUROPEAN JOURNAL OF IMMUNOLOGY, 2016, 46 : 740 - 740
  • [24] DOUBLE INACTIVATION OF TET2 AND TET3 INDUCES HYPOMETHYLATING AGENT-SENSITIVE ACUTE MYELOID LEUKEMIA
    Maie, K.
    Sakata-Yanagimoto, M.
    Oshima, M.
    Kato, T.
    Muto, H.
    Mouly, E.
    Bernard, O. A.
    Koseki, H.
    Iwama, A.
    Chiba, S.
    HAEMATOLOGICA, 2016, 101 : 212 - 212
  • [25] Reduced Expression of TET1, TET2, TET3 and TDG mRNAs Are Associated with Poor Prognosis of Patients with Early Breast Cancer
    Yang, Liu
    Yu, San-Jian
    Hong, Qi
    Yang, Yu
    Shao, Zhi-Ming
    PLOS ONE, 2015, 10 (07):
  • [26] Residual Wild-Type Tet2/Tet3 Allele Is the Savior Preventing Mouse Hematopoietic Progenitor Cells from Leukemia Development
    Shrestha, Raksha
    Koichiro, Maie
    Sakata-Yanagimoto, Mamiko
    Bernard, Olivier
    Matsui, Hirotaka
    Nakajima-Takagi, Yaeko
    Kato, Takayasu
    Koseki, Haruhiko
    Iwama, Atsushi
    Chiba, Shigeru
    BLOOD, 2018, 132
  • [27] Tet2 and Tet3 Mediated Active Cytosine Hydroxymethylation in Six2 Progenitor Cells Is Critical for Nephron Progenitor Differentiation and Nephron Endowment
    Liang, Xiujie
    Aranyi, Tamas
    Zhou, Jianfu
    Guan, Yuting
    Hu, Hailong
    Liu, Hongbo
    Susztak, Katalin
    JOURNAL OF THE AMERICAN SOCIETY OF NEPHROLOGY, 2022, 33 (11): : 429 - 429
  • [28] Publisher Correction: TET2 is required to suppress mTORC1 signaling through urea cycle with therapeutic potential
    Jing He
    Mingen Lin
    Xinchao Zhang
    Ruonan Zhang
    Tongguan Tian
    Yuefan Zhou
    Wenjing Dong
    Yajing Yang
    Xue Sun
    Yue Dai
    Yue Xu
    Zhenru Zhang
    Ming Xu
    Qun-Ying Lei
    Yanping Xu
    Lei Lv
    Cell Discovery, 9
  • [29] ROLE OF TET2 AND TET3 IN FERTILITY: FIRST EVIDENCE FOR LINK BETWEEN 5-CYTOSINE-HYDROXYMETHYLATION AND PROPER SPERMATOGENESIS
    Dansranjavin, Temuujin
    Steger, Klaus
    Deuker, Johanna
    Weidner, Wolfgang
    Spiess, Andrej
    Schorsch, Martin
    Schagdarsurengin, Undraga
    JOURNAL OF UROLOGY, 2013, 189 (04): : E834 - E834
  • [30] DNMT3A AND TET2 COOPERATE AND COMPETE TO PREVENT LEUKEMOGENESIS
    Goodell, Margaret A.
    EXPERIMENTAL HEMATOLOGY, 2015, 43 (09) : S25 - S25