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Pld4thss/thss 模型中小鼠狼疮的发病需要 TLR9。

Disease in the Pld4thss/thss Model of Murine Lupus Requires TLR9.

机构信息

Department of Immunology and Microbiology, The Scripps Research Institute, La Jolla, CA.

University of California, Merced, Merced, CA.

出版信息

Immunohorizons. 2023 Aug 1;7(8):577-586. doi: 10.4049/immunohorizons.2300058.

Abstract

Phospholipase D4 (PLD4) is an endolysosomal exonuclease of ssRNA and ssDNA, rather than a phospholipase as its name suggests. Human polymorphisms in the PLD4 gene have been linked by genome-wide association studies to systemic sclerosis, rheumatoid arthritis, and systemic lupus erythematosus. However, B6.129 Pld4-/- mice develop features of a distinct disease, macrophage activation syndrome, which is reversed in mice mutated in TLR9. In this article, we compare a Pld4 null mutant identified on the BALB/c background, Pld4thss/thss, which has distinct phenotypes: short stature, thin hair, and features of systemic lupus erythematosus. All phenotypes analyzed were largely normalized in Pld4thss/thssTlr9-/- mice. Thus, Pld4thss/thss represents a rare model in which mouse lupus etiology is TLR9 dependent. Compared with PLD4-deficient B6 mice, Pld4thss/thss mice had elevated levels of serum IgG, IgG anti-dsDNA autoantibodies, BAFF, and IFN-γ and elevated B cell numbers. Overall, the data suggest that PLD4 deficiency can lead to a diverse array of rheumatological abnormalities depending upon background-modifying genes, and that these diseases of PLD4 deficiency are largely driven by TLR9 recognition of ssDNA.

摘要

磷脂酶 D4(PLD4)是一种溶酶体内切核酸酶,可以降解 ssRNA 和 ssDNA,而不是其名称所暗示的磷脂酶。全基因组关联研究表明,人类 PLD4 基因的多态性与系统性硬化症、类风湿关节炎和系统性红斑狼疮有关。然而,B6.129 Pld4-/- 小鼠会发展出一种独特疾病的特征,即巨噬细胞活化综合征,而 TLR9 突变的小鼠则会逆转这种疾病。在本文中,我们比较了在 BALB/c 背景下发现的一种 Pld4 缺失突变体,Pld4thss/thss,它具有不同的表型:身材矮小、毛发稀疏和系统性红斑狼疮的特征。在 Pld4thss/thssTlr9-/- 小鼠中,分析的所有表型都得到了很大程度的正常化。因此,Pld4thss/thss 代表了一种罕见的模型,其中小鼠狼疮的病因依赖于 TLR9。与 PLD4 缺陷的 B6 小鼠相比,Pld4thss/thss 小鼠的血清 IgG、IgG 抗 dsDNA 自身抗体、BAFF 和 IFN-γ 水平升高,B 细胞数量增加。总的来说,这些数据表明,PLD4 缺乏会导致一系列不同的风湿性异常,这取决于背景修饰基因,而这些 PLD4 缺乏症主要是由 TLR9 识别 ssDNA 驱动的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b5e0/10587506/da92b8bd6748/ih2300058f1.jpg

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