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两个 Sle2 狼疮易感性基因座与 Cdkn2c 缺失导致 B6.Fas(lpr) 小鼠的 T 细胞介导的病理。

The combination of two Sle2 lupus-susceptibility loci and Cdkn2c deficiency leads to T-cell-mediated pathology in B6.Fas(lpr) mice.

机构信息

Department of Pathology, Immunology and Laboratory Medicine, University of Florida, Gainesville, FL 32610-0275, USA.

出版信息

Genes Immun. 2013 Sep;14(6):373-9. doi: 10.1038/gene.2013.28. Epub 2013 May 23.

Abstract

The NZM2410 Sle2c1 lupus susceptibility locus is responsible for the expansion of the B1a cell compartment, and for the induction of T-cell induced renal and skin pathology on a CD95-deficient (Fas(lpr)) background. We have previously shown that deficiency in the cyclin-dependent kinase inhibitor p18(INK4c) (p18) was responsible for the B1a cell expansion but was not sufficient to account for the pathology in B6.lpr mice. This study was designed to map the additional Sle2c1 loci responsible for autoimmune pathology when co-expressed with CD95 deficiency. The production, fine-mapping and phenotypic characterization of five recombinant intervals indicated that three interacting subloci were responsive for inducting autoimmune pathogenesis in B6.lpr mice. One of these subloci corresponds most likely to p18 deficiency. Another major locus mapping to a 2-Mb region at the telomeric end of Sle2c1 is necessary to both renal and skin pathology. Finally, a third locus centromeric to p18 enhances the severity of lupus nephritis. These results provide new insights into the genetic interactions leading to systemic lupus erythematosus disease presentation, and represent a major step towards the identification of novel susceptibility genes involved in T-cell-mediated organ damage.

摘要

NZM2410Sle2c1 狼疮易感性位点负责 B1a 细胞区室的扩张,并在 CD95 缺陷(Fas(lpr))背景下诱导 T 细胞诱导的肾和皮肤病理学。我们之前已经表明,细胞周期蛋白依赖性激酶抑制剂 p18(INK4c)(p18)的缺乏负责 B1a 细胞的扩张,但不足以解释 B6.lpr 小鼠中的病理学。这项研究旨在绘制与 CD95 缺乏共表达时负责自身免疫病理学的其他 Sle2c1 基因座。五个重组间隔的产生、精细映射和表型特征表明,三个相互作用的亚基因座负责诱导 B6.lpr 小鼠的自身免疫发病机制。其中一个亚基因座很可能对应于 p18 缺乏。另一个主要基因座定位于 Sle2c1 端粒末端的 2-Mb 区域,对于肾和皮肤病理学都是必需的。最后,位于 p18 中心的第三个基因座增强了狼疮肾炎的严重程度。这些结果为导致系统性红斑狼疮疾病表现的遗传相互作用提供了新的见解,并代表着朝着鉴定涉及 T 细胞介导的器官损伤的新型易感性基因迈出的重要一步。

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