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SUMO4(一种新的IκBα修饰因子)的功能性变体与1型糖尿病相关。

A functional variant of SUMO4, a new I kappa B alpha modifier, is associated with type 1 diabetes.

作者信息

Guo Dehuang, Li Manyu, Zhang Yan, Yang Ping, Eckenrode Sarah, Hopkins Diane, Zheng Weipeng, Purohit Sharad, Podolsky Robert H, Muir Andrew, Wang Jinzhao, Dong Zheng, Brusko Todd, Atkinson Mark, Pozzilli Paolo, Zeidler Adina, Raffel Leslie J, Jacob Chaim O, Park Yongsoo, Serrano-Rios Manuel, Larrad Maria T Martinez, Zhang Zixin, Garchon Henri-Jean, Bach Jean-Francois, Rotter Jerome I, She Jin-Xiong, Wang Cong-Yi

机构信息

Center for Biotechnology and Genomic Medicine, Medical College of Georgia, 1120 15th Street, CA4098, Augusta, Georgia 30912, USA.

出版信息

Nat Genet. 2004 Aug;36(8):837-41. doi: 10.1038/ng1391. Epub 2004 Jul 11.

Abstract

Previous studies have suggested more than 20 genetic intervals that are associated with susceptibility to type 1 diabetes (T1D), but identification of specific genes has been challenging and largely limited to known candidate genes. Here, we report evidence for an association between T1D and multiple single-nucleotide polymorphisms in 197 kb of genomic DNA in the IDDM5 interval. We cloned a new gene (SUMO4), encoding small ubiquitin-like modifier 4 protein, in the interval. A substitution (M55V) at an evolutionarily conserved residue of the crucial CUE domain of SUMO4 was strongly associated with T1D (P = 1.9 x 10(-7)). SUMO4 conjugates to I kappa B alpha and negatively regulates NF kappa B transcriptional activity. The M55V substitution resulted in 5.5 times greater NF kappa B transcriptional activity and approximately 2 times greater expression of IL12B, an NF kappa B-dependent gene. These findings suggest a new pathway that may be implicated in the pathogenesis of T1D.

摘要

先前的研究表明,有20多个基因区间与1型糖尿病(T1D)易感性相关,但具体基因的鉴定颇具挑战性,且很大程度上局限于已知的候选基因。在此,我们报告了T1D与IDDM5区间197 kb基因组DNA中的多个单核苷酸多态性之间存在关联的证据。我们在该区间克隆了一个新基因(SUMO4),其编码小泛素样修饰物4蛋白。SUMO4关键CUE结构域一个进化保守残基处的替代(M55V)与T1D强烈相关(P = 1.9×10⁻⁷)。SUMO4与IκBα结合并负向调节NF-κB转录活性。M55V替代导致NF-κB转录活性增加5.5倍,且NF-κB依赖性基因IL12B的表达增加约2倍。这些发现提示了一条可能与T1D发病机制有关的新途径。

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