1,25D3 prevents CD8+Tc2 skewing and asthma development through VDR binding changes to the Cyp11a1 promoter

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作者
Michaela Schedel
Yi Jia
Sven Michel
Katsuyuki Takeda
Joanne Domenico
Anthony Joetham
Fangkun Ning
Matthew Strand
Junyan Han
Meiqin Wang
Joseph J. Lucas
Christian Vogelberg
Michael Kabesch
Brian P. O’Connor
Erwin W. Gelfand
机构
[1] National Jewish Health,Division of Cell Biology, Department of Pediatrics
[2] University Children’s Hospital Regensburg (KUNO),Department of Pediatric Pneumology and Allergy
[3] Allergy and Neonatology,Department of Pediatric Pneumology
[4] Hannover Medical School,Division of Biostatistics and Bioinformatics
[5] National Jewish Health,Department of Pediatrics
[6] University Children’s Hospital,Department of Immunology and Microbiology
[7] Technical University,undefined
[8] Center for Genes,undefined
[9] Environment and Health,undefined
[10] National Jewish Health,undefined
[11] University of Colorado AMC,undefined
[12] Present address: Asia and Emerging Markets iMed,undefined
[13] AstraZeneca Innovative Medicines and Early Development,undefined
[14] Shanghai 201203,undefined
[15] China.,undefined
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摘要
Effector CD8+ T cells convert from IFN-γ+ (Tc1) to IL-13+ (Tc2) cells in the presence of IL-4. Underlying regulatory mechanisms are not fully defined. Here, we show that addition of 1,25D3, the active form of vitamin D3, during CD8+ T-cell differentiation prevents IL-4-induced conversion to IL-13-producers. Transfer of 1,25D3-treated CD8+ T cells into sensitized and challenged CD8+-deficient recipients fails to restore development of lung allergic responses. 1,25D3 alters vitamin D receptor (VDR) recruitment to the Cyp11a1 promoter in vitro and in vivo in the presence of IL-4. As a result, protein levels and enzymatic activity of CYP11A1, a steroidogenic enzyme regulating CD8+ T-cell conversion, are decreased. An epistatic effect between CYP11A1 and VDR polymorphisms may contribute to the predisposition to childhood asthma. These data identify a role for 1,25D3 in the molecular programming of CD8+ T-cell conversion to an IL-13-secreting phenotype through regulation of steroidogenesis, potentially governing asthma susceptibility.
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  • [1] 1,25d3 Prevents Cd8+tc2 Skewing And Asthma Development Through Vdr Binding Changes To The Cyp11a1 Promoter
    Schedel, M.
    Jia, Y.
    Michel, S.
    Takeda, K.
    Domenico, J.
    Joetham, A.
    Strand, M.
    Han, J.
    Wang, M.
    Lucas, J. L.
    Vogelberg, C.
    Gelfand, E. W.
    Kabesch, M.
    O'Connor, B. P.
    [J]. AMERICAN JOURNAL OF RESPIRATORY AND CRITICAL CARE MEDICINE, 2016, 193
  • [2] 1,25D3 prevents CD8+ Tc2 skewing and asthma development through VDR binding changes to the Cyp11a1 promoter
    Schedel, Michaela
    Jia, Yi
    Michel, Sven
    Takeda, Katsuyuki
    Domenico, Joanne
    Joetham, Anthony
    Ning, Fangkun
    Strand, Matthew
    Han, Junyan
    Wang, Meiqin
    Lucas, Joseph J.
    Vogelberg, Christian
    Kabesch, Michael
    O'Connor, Brian P.
    Gelfand, Erwin W.
    [J]. NATURE COMMUNICATIONS, 2016, 7
  • [3] The Steroidogenic Enzyme Cyp11a1 Is Essential for CD8+Tc2 Conversion to Enhance Allergen-Induced Airway Hyperresponsiveness and Inflammation
    Jia, Yi
    Domenico, Joanne
    Takeda, Katsuyuki
    Han, Junyan
    Wang, Meiqin
    Armstrong, Michael
    Reisdorph, Nichole
    O'Connor, Brian P.
    Lucas, Joseph J.
    Gelfand, Erwin W.
    [J]. JOURNAL OF ALLERGY AND CLINICAL IMMUNOLOGY, 2013, 131 (02) : AB192 - AB192
  • [4] Steroidogenic enzyme Cyp11a1 regulates Type 2 CD8+ T cell skewing in allergic lung disease
    Jia, Yi
    Domenico, Joanne
    Takeda, Katsuyuki
    Han, Junyan
    Wang, Meiqin
    Armstrong, Michael
    Reisdorph, Nichole
    O'Connor, Brian P.
    Lucas, Joseph J.
    Gelfand, Erwin W.
    [J]. PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2013, 110 (20) : 8152 - 8157
  • [5] PTH/forskolin induces selective VDR DNA binding to the osteopontin gene promoter in the absence of 1,25(OH)2D3 and suppresses the gene's transcriptional output.
    Kim, S
    Shevde, NK
    Pike, JW
    [J]. JOURNAL OF BONE AND MINERAL RESEARCH, 2005, 20 (09) : S31 - S31