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TLR recognition of self nucleic acids hampers glucocorticoid activity in lupus

机译:TLR对自身核酸的识别阻碍了狼疮的糖皮质激素活性

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摘要

Glucocorticoids are widely used to treat patients with autoimmune diseases such as systemic lupus erythematosus (SLE). However, regimens used to treat many such conditions cannot maintain disease control in the majority of SLE patients and more aggressive approaches such as high-dose methylprednisolone pulse therapy are used to provide transient reductions in disease activity. The primary anti-inflammatory mechanism of glucocorticoids is thought to be NF-κB inhibition. Recognition of self nucleic acids by toll-like receptors TLR7 and TLR9 on B cells and plasmacytoid dendritic cells (PDCs) is an important step in the pathogenesis of SLE, promoting anti-nuclear antibodies and the production of type I interferon (IFN), both correlated with the severity of disease. Following their activation by self-nucleic acid-associated immune complexes, PDCs migrate to the tissues. We demonstrate, in vitro and in vivo, that stimulation of PDCs through TLR7 and 9 can account for the reduced activity of glucocorticoids to inhibit the IFN pathway in SLE patients and in two lupus-prone mouse strains. The triggering of PDCs through TLR7 and 9 by nucleic acid-containing immune complexes or by synthetic ligands activates the NF-κB pathway essential for PDC survival. Glucocorticoids do not affect NF-κB activation in PDCs, preventing glucocorticoid induction of PDC death and the consequent reduction of systemic IFN-α levels. These findings unveil a new role for self nucleic acid recognition by TLRs and indicate that inhibitors of TLR7 and 9 signalling could prove to be effective corticosteroid-sparing drugs.
机译:糖皮质激素被广泛用于治疗自身免疫性疾病,例如系统性红斑狼疮(SLE)。但是,在大多数SLE患者中,用于治疗许多此类疾病的方案无法维持疾病控制,因此,使用更具侵略性的方法(例如大剂量甲基强的松龙脉搏疗法)来暂时降低疾病活动。糖皮质激素的主要抗炎机制被认为是抑制NF-κB。 B细胞和浆细胞样树突状细胞(PDC)上的Toll样受体TLR7和TLR9识别自身核酸是SLE发病机理中的重要一步,它促进了抗核抗体的产生和I型干扰素(IFN)的产生。与疾病的严重程度有关。在被自身核酸相关的免疫复合物激活后,PDC迁移到组织中。我们证明,在体外和体内,通过TLR7和9刺激PDC可以解释糖皮质激素抑制SLE患者和两种狼疮易感小鼠品系中IFN途径的活性降低。含核酸的免疫复合物或合成配体通过TLR7和9触发PDC激活了PDC生存所必需的NF-κB途径。糖皮质激素不会影响PDC中的NF-κB活化,不会阻止糖皮质激素诱导PDC死亡并因此降低全身性IFN-α水平。这些发现揭示了TLRs自身核酸识别的新作用,并表明TLR7和9信号转导的抑制剂可能被证明是有效的糖皮质激素保护药物。

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  • 来源
    《Nature》 |2010年第7300期|P.v937-941|共6页
  • 作者单位

    Dynavax Technologies Corporation, 2929 Seventh Street, Suite 100, Berkeley, California 94710, USA;

    rnDynavax Technologies Corporation, 2929 Seventh Street, Suite 100, Berkeley, California 94710, USA;

    rnBaylor Institute for Immunology Research, Dallas, Texas 75204, USA;

    rnBaylor Institute for Immunology Research, Dallas, Texas 75204, USA;

    rnBaylor Institute for Immunology Research, Dallas, Texas 75204, USA University of Texas, Southwestern Medical Center, Dallas, Texas 75235, USA;

    rnDynavax Technologies Corporation, 2929 Seventh Street, Suite 100, Berkeley, California 94710, USA;

    rnDynavax Technologies Corporation, 2929 Seventh Street, Suite 100, Berkeley, California 94710, USA;

    rnTexas Scottish Rite Hospital, Dallas, Texas 75219, USArnUniversity of Texas, Southwestern Medical Center and Children's Medical Center, Dallas, Texas 75235, USA;

    rnTexas Scottish Rite Hospital, Dallas, Texas 75219, USArnUniversity of Texas, Southwestern Medical Center and Children's Medical Center, Dallas, Texas 75235, USA;

    rnLaboratory of Immunogenetics, National Institute of Allergy and Infectious Diseases, National Institutes of Health, Rockville, Maryland 20852, USA, USA;

    rnInstitut Curie, Department of Immunology, 26 rue d'Ulm, 75005 Paris, France;

    rnBaylor Institute for Immunology Research, Dallas, Texas 75204, USA;

    Dynavax Technologies Corporation, 2929 Seventh Street, Suite 100, Berkeley, California 94710, USA;

    Baylor Institute for Immunology Research, Dallas, Texas 75204, USA Texas Scottish Rite Hospital, Dallas, Texas 75219, USA;

    rnDynavax Technologies Corporation, 2929 Seventh Street, Suite 100, Berkeley, California 94710, USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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